#Gamma Seals Market trends
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Gamma Seals Market Future Innovations, Recent Developments by 2024-2032
The Reports and Insights, a leading market research company, has recently releases report titled “Gamma Seals Market: Global Industry Trends, Share, Size, Growth, Opportunity and Forecast 2024-2032.” The study provides a detailed analysis of the industry, including the global Gamma Seals Market Forecast share, size, trends, and growth. The report also includes competitor and regional analysis and highlights the latest advancements in the market.
Report Highlights:
How big is the Gamma Seals Market?
The gamma seals market is expected to grow at a CAGR of 6.4% during the forecast period of 2024 to 2032.
What are Gamma Seals?
Gamma seals are screw-on lids that provide a secure, airtight seal for containers like buckets or pails. They're used for storing various materials, ensuring no leakage or contamination. Gamma seals have two parts: a ring that screws onto the container and a lid with a threaded section that screws into the ring, enabling easy opening and closing while maintaining a tight seal.
Request for a sample copy with detail analysis: https://www.reportsandinsights.com/sample-request/1953
What are the growth prospects and trends in the Gamma Seals industry?
The gamma seals market growth is driven by various factors and trends. The gamma seals market is experiencing continuous expansion, primarily fueled by rising demands for reliable and airtight sealing solutions across industries like food storage, chemicals, and pharmaceuticals. These seals are preferred for their convenience and effectiveness, particularly for products needing protection from moisture and air. There's also a growing trend among consumers to use gamma seal lids for home storage purposes, further boosting market growth. Ongoing innovations in seal design and materials are additional factors driving this market forward. Hence, all these factors contribute to gamma seals market growth.
What is included in market segmentation?
The report has segmented the market into the following categories:
By Material Type:
Plastic
Metal
By Closure Type:
Threaded Gamma Seals
Snap-On Gamma Seals
By End-Use Industry:
Food and Beverage
Pharmaceutical and Healthcare
Chemical and Petrochemical
Automotive
Agriculture
Others
By Region:
North America
Latin America
Europe
Asia Pacific
Middle East & Africa
Who are the key players operating in the industry?
The report covers the major market players including:
BWAY Corporation
Berlin Packaging LLC
Mauser Packaging Solutions
Greif, Inc.
CL Smith Company
SCHÜTZ GmbH & Co. KGaA
Time Technoplast Ltd.
Industrial Container Services
Myers Container, LLC
Greif, Inc.
TPL Plastech Ltd.
Orora Limited
Fibrestar Drums Limited
Balmer Lawrie & Co. Ltd.
Kautex Textron GmbH & Co. KG
Shian Fu Enterprise Co. Ltd.
View Full Report: https://www.reportsandinsights.com/report/Gamma Seals-market
If you require any specific information that is not covered currently within the scope of the report, we will provide the same as a part of the customization.
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50 More Days of Comics! 26/50: Alpha Flight #89 (1990)
This book’s marketing strategy: “HEY ANYONE LIKE THE ORIGINAL GUARDIAN? ANYONE? OKAY DAMMIT WE HAVE A WOLVERINE FOR YOU PLEASE BUY THIS BOOK! oh and Puck is back if that’s what you’re into…”
I know next to nothing about Alpha Flight.
I really should.
They’re the X-Spinoff that doesn’t put an X in the title. Someone on tvtropes was liveblogging it and I picked up a few unfortunate tidbits from that.
Recently Alpha Flight has gone from being my second favorite Canadian super-team to being Captain Marvel’s space team. Or Earth-orbit team. Since I happen to think, BENDIS, that a space team should be in space.
The bits of Alpha Flight I’ve read with them in this role I’ve liked. Although I can’t help but wonder if Carol just bought the team from Canada.
Anyway, I wish I knew more about the iteration of the team that’s in this book because it has the one-two whammy of being both continuity heavy and snapback heavy. Not only is current continuity a big thing, previous continuity is a big thing because its being returned to. Also part three of a four part story.
Which has several ongoing plot lines.
Eesh.
I know I say this a lot but this is what recap technology was designed for.
So in one plot line, Shaman, Talisman, Aurora, and Sasquatch are searching for their missing teammate Puck, who was taken by the self-titled Master of the World.
And, uh, they find him. He’s been given a kind of gross makeover with exposed veins and tentacle fingers. But they found him alright.
Sasquatch immediately suggests mercy killing Puck because I guess that’s what he jumps to but thanks to Aurora’s “cleansing burst of light” Talisman and Shaman are able to mystically touch his mind and discover what happened.
In a flurry of continuity, Puck was apparently a dwarf but then it was retconned that he was a dwarf because his body had a demon sealed inside it because of magic but he was injured by the Dream Queen but was healed through supernatural means but on Earth his body rejected the magic so he was dying but the Master of the World wanted to test the limits of the human form and also get revenge on Alpha Flight so he secretly had Puck injected with a genetic compound made of former Alpha Flight foe Scramble and a blood sample of Puck taken years ago when he was still a dwarf so the compound reshaped Puck into a dwarf again but did a bad job of it.
Phew!
Comics that are attempting to retcon things in always have too much information per panel.
Anyway, since Sasquatch used to be a biochemist he understood all of that and also poked around in the Master’s computers and discovered that the compound is still in Puck’s system. So with a little bit of reprogramming, Puck could be put back to normal but dwarf normal because that’s when the DNA sample was from, not whatever normal he had been recently. Sssssnapback!
Also, the strain of having his body restructured might kill him but Puck says to go for it.
So Puck is thrown into a science tube and Sasquatch lays down some technobabble that basically amounts to ‘hey y’all Puck will be a dwarf again and this will be permanent, swearsies.’
Just as the process is started, the Master of the World bursts in with his Remnant Men and scolds Alpha Flight for coming in without knocking, very rude, now gtfo and stop touching his things (explicitly including Puck in that).
Master (of the World): “I do not see this as a degradation then, but rather the contrary… I see this as a reaffirmation of my faith… Faith in pain.”
I know the Master (of the World) from two places: Carol Danvers shanking him during Kurt Busiek’s Avengers run and his run-in with the new Champions where he was rebuilding the melting glaciers by using human suffering. Or something. It’s a bit unclear.
Anyway, he’s a creepus and he’s sending his creeper army to attack the present Alpha Flighters.
But thankfully, just as they’re getting overwhelmed, Puck bursts healed, naked, and spread legged from the science tube with a convenient splash of censoring water.
Puck: “I’m back, eh? Now let’s make short work of this loser!!”
He gets to make short jokes.
Anyway, that’s the end of this plot thread in this issue but if Puck isn’t kicking the Master’s ass while bareassed in the next issue, comics as a medium have failed forever.
In the second plot thread, Vindicator and Wolverine are trying to track down someone named Wild Child who broke out of jail.
Wolverine manages to track Wild Child down to a run down Roxxon gas station bathroom and squats by the toilet to get some good whiffs (which most be horrible with his enhanced sense of smell) and determines that Gamma Flight was here with Wild Child.
Which presents a problem as Gamma Flight is a team and Wolverine and Vindicator are two people.
Vindicator: “Are we up against all of Gamma Flight?”
Wolverine: “Yup. Gotta give ‘em credit fer stickin’ together through this.”
Vindicator: “Credit? They were formed for all the wrong reasons and disbanded for all the right ones. Oh, what am I getting so upset for? I’m so tired – of everything… Why has this team become such a mess? Why am I doing all of this?”
But Wolverine believes in the him that believes in her, or something, and they continue on. At the very least, punching some people will be cathartic. Which I believe is at least 50% of how superheroes work.
Four hours later, they track Gamma Flight down to an abandoned factory. Wolverine immediately leaps into an ambush that he probably suspects is an ambush to force the issue and maybe as an application to the Teen Titans who never met a trap they didn’t waltz into.
Anyway, things get chaotic and incomprehensible for a bit, befitting an ambush. But Team Wolverine and Vindicator Is There Too handle the ambush with something resembling aplomb and when its over Gamma Flight lines up in a row so we can get a team shot and their leader Nemesis (who looks like a Lady Deadpool with a cape) monologues.
Nemesis: “Hello, Vindicator… Wolverine… What is it exactly that you’re looking for besides your own funeral? I hope it’s not Wild Child. I hope you don’t expect us to give him up after all the trouble we went through breaking him out of prison. Because if that’s the case then you’re going to have to answer to us. GAMMA FLIGHT – protects their own!”
Vindicator’s response? “I’m not going to disappoint you, Nemesis. We are here for Wildchild. And we’re going to get him… even if we have to roll over each and every one of you idiots to do it!”
Way to be outnumbered nearly two to one with also aplomb, Vindicator. But as appears to be the trend, if twice is a pattern which it probably is, we don’t get the fight this issue. That’s next issue’s deal.
There’s a loose page that roughly fits into this plot thread. Northstar and Persuasion (a daughter of Purple Man trying to be not a dick like him) are watching their friend Laura in the hospital. Laura was hurt badly by Wild Child which I guess explains why Vindicator is cruising to bruise him.
And Persuasion is sad because not only is her friend hurt but her stupid mind control powers couldn’t do anything to help her only friend.
And Laura is in bad condition. She’s lost a lot of blood and needs a new kidney.
But for arbitrary reasons, even though Laura is O-positive, because she’s a mutant she has weird blood and they need compatible family blood. But Laura sent her only known family, her sister Goblyn, to another dimension. For her own good.
JUST THEN, people claiming to be her parents walk in and ask if they’d be a suitable match. DUN DUN DUN! Dramaaaaaa!
And in tonight’s final plot thread, as the cover promised, the weird return of the original Guardian. His death was apparently one of the earliest big events of the book, happening in issue 12.
So why is he coming back after 77 issues and two in-universe years? God only knows but this is a hard snapback. And this is a hell of a retcon.
They played at bringing Guardian back before. For Reasons, in issues 25-28 per the editorial captions, a robot disguised itself as Guardian and claimed that the explosion that killed him had ripped a hole in time-space and threw Guardian through it. And that he was then saved by aliens and sent back to Earth and had to sleep for ten thousand years during the voyage.
Obviously, this was all a lie.
Samuel Higgins, Roxxon guy: “Ahem. Yes, well. A lie. Hmm. Ahem… well… that crazy story that the robot came up with? About Hudson getting thrust back in time and waking up on Jupiter’s moon – Ganymede – then sleeping cryogenically and getting sent on a spaceship back to Earth? That crazy, whacky, kooky story? Well… it was all true.”
I mean, that’s one way to do it. I wouldn’t personally but it is one way.
Once you start getting into “the lie was a lie!” territory you’ve convoluted a book up fierce. See also: Spider-Man’s Clone Sage 2: This Time Its 90s And Nobody Knows What They’re Doing.
Forge is on scene with Roxxon guy Windshear and Alpha Flighters Box and Diamond Lil and I think Forge puts it best.
Forge: “In this business, death has a habit of making a liar out of the truth.”
Anyway, the not-dead James Hudson aka Guardian is wired up underneath a Roxxon research facility and he’s putting out potent hacking waves that are causing the mechanisms of the facility to go haywire and attack people. And also causing Box to malfunction because he’s a guy in a suit who is a suit. Or something.
I’m not entirely sure. But he fuses with Forge so that Forge can override the hacking and reconfigure the Box suit to overcome Hudson’s various stratagems.
And with enough technobabble, it works! They close in on James Hudson’s cybernetic weirdly crucifix posed nearly naked body.
A lot of beefcake in this comic for people into that.
Box (Madison Jeffries) separates from Forge and attempts to monologue Hudson back to his senses.
Box: “Hudson – Jamie – it’s me – Madison Jeffries – you remember, right? You got me outta the V.A. hospital – told me what had happened in ‘Nam was cool – told me that sometimes things hit the fan and that’s the way it is. Well, I’m here t’tell you the same thing, Jamie.
“Mac – wake up, man! You’re messing things up bigtime here! C’mon – remember who you were – are – ‘member when you recruited me for Department H – I was only in Beta an’ you loved havin��� me hang around – cos’ we had one thing in common – we both loved machines… Guess we both took it sorta to extremes don’tchu think? Well, guess what? We have somethin’ else in common now… maybe we took that to extremes, too…
“Heather. Remember Heather? Yeah. I see your mental imaging. That’s how she looked when you first met her, eh? She looks so young, man… So innocent… beautiful… Uhm… I think I love her, too, now, Mac. She’s a special lady. She never gave up on yer dream when we though you’d died. She kept Alpha Flight goin’ – no matter how rough it got – all ‘cos o’ her faith and belief in your dream, Jamie – in you…”
And being reminded of his wife in short shorts and/or emotional appeal works because Hudson comes out from his stupor and tearfully and droolfully proclaims that he is alive!
Awww. I still don’t know who was clamoring for this character to be returned after so many issues but I’m a sucker for a big in-universe emotional appeal.
Still though. Trying to retcon the book back into shape is not a good environment to attract new readers.
But speaking of sexy Heather, she was drawn with nipple poking through her Vindicator costume in several panels so I’m going to side eye Michael Bair and Mike Manley super hard. It may be a spandex costume but there’s like twelve pounds of circuitry underneath, geez.
Though I guess they also gave the reader Puck lunging crotch first at the reader and Hudson hanging out in only his underwear. So an Attempt Was Made to be fair-handed, I guess?
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Prostate Cancer And The Amazing Da Vinci System
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Recent trends and future of pharmaceutical packaging technology
The pharmaceutical package market is constantly advancing and has experienced annual growth of at least five percent per annum in the past few years. The market is now reckoned to be worth over $20 billion a year. As with most other packaged goods, pharmaceuticals need reliable and speedy packaging solutions that deliver a combination of product protection, quality, tamper evidence, patient comfort and security needs. Constant innovations in the pharmaceuticals themselves such as, blow fill seal (BFS) vials, anti-counterfeit measures, plasma impulse chemical vapor deposition (PICVD) coating technology, snap off ampoules, unit dose vials, two-in-one prefilled vial design, prefilled syringes and child-resistant packs have a direct impact on the packaging. The review details several of the recent pharmaceutical packaging trends that are impacting packaging industry, and offers some predictions for the future.
Packaging is defined as the collection of different components which surround the pharmaceutical raw material from the time of production until its use. Packaging pharmaceutical products is a broad, encompassing, and multi-faceted task. Packaging is responsible for providing life-saving drugs, medical devices, medical treatments, and new products like medical nutritionals (nutraceuticals) in every imaginable dosage form to deliver every type of supplement, poultice, liquid, solid, powder, suspension, or drop to people the world over. It is transparent to the end user when done well and is open to criticism from all quarters when done poorly.[1,2]
Distribution of products is now more global than ever. Mass customization of packaging to permit its use in multiple markets is a topic that needs exposition and discussion. Environmental issues, including sustainability, will always be a subjective dimension to any packaging design.
Packaging is an emerging science, an emerging engineering discipline, and a success contributor to pharmaceutical industries.
Packaging can reside, or report through research and development (R and D), engineering, operations, purchasing, marketing, or the general administrative department of a company. For the majority of products produced in pharmaceutical industries it is probably the single largest aggregate purchase made by a company of materials critical to the protection, distribution, and sale of the product.
Containment - The containment of the product is the most fundamental function of packaging for medicinal products. The design of high-quality packaging must take into account both the needs of the product and of the manufacturing and distribution system. This requires the packaging: not to leak, nor allow diffusion and permeation of the product, to be strong enough to hold the contents when subjected to normal handling and not to be altered by the ingredients of the formulation in its final dosage form.[3]
Protection - The packaging must protect the product against all adverse external influences that may affect its quality or potency, such as light, moisture, oxygen, biological contamination, mechanical damage and counterfeiting/adulteration.
Presentation and information - Packaging is also an essential source of information on medicinal products. Such information is provided by labels and package inserts for patients.
Identification - The printed packs or its ancillary printed components serves the functions of providing both identity and information.
Convenience - The convenience is associated with product use or administration e.g., a unit dose eye drop which both eliminates the need for preservative and reduces risks associated with cross infection, by administering only a single dose.
Primary packaging system is the material that first envelops the product and holds it i.e., those package components and subcomponents that actually come in contact with the product, or those that may have a direct effect on the product shelf life e.g., ampoules and vials, prefilled syringes, IV containers, etc.
Secondary packaging system is outside the primary packaging and used to group primary packages together e.g., cartons, boxes, shipping containers, injection trays, etc.
Tertiary packaging system is used for bulk handling and shipping e.g., barrel, container, edge protectors, etc.
Traditionally, the majority of medicines (51%) have been taken orally by tablets or capsules, which are either packed in blister packs (very common in Europe and Asia) or fed into plastic pharmaceutical glass bottle (especially in the USA). Powders, pastilles and liquids also make up part of the oral veterinary medicine intake. However, other methods for taking medicines are now being more widely used. These include parentral or intravenous (29%), inhalation (17%), and transdermal (3%) methods.
These changes have made a big impact on the packaging industry and there is an increasing need to provide tailored, individual packaging solutions, which guarantee the effectiveness of medicines.[4]
The present review article details several key trends that are impacting packaging industry, and offers some predictions for the future packaging encompassing solid oral dosage forms and injectables.
Aseptic blow-fill-seal (BFS) technology is the process by which plastic containers are formed, filled with sterile filtered product and sealed in an uninterrupted sequence of operations within the controlled sterile environment of a single machine.[5,6]
The blow-fill-seal process is a robust, advanced aseptic processing technology, recognized by worldwide regulatory authorities for its inherent operational advantages over conventional aseptic production. Blow-fill-seal systems offer a unique combination of flexibility in packaging design, low operating cost and a high degree of sterility assurance. The machines require a minimum number of operating personnel and have a relatively small space requirement.
A variety of polymers may be used in the process, low and high-density polyethylene and polypropylene being the most popular. The innate ability to form the container/closure during the actual aseptic packaging process allows for custom design of the container to meet the specific needs of the application. This flexibility not only improves container ease of use, but provides a means of interfacing with many of today's emerging drug delivery technologies, most notably in the field of respiratory therapy.
Thermoplastic is continuously extruded in a tubular shape [Figure 1a]. When the tube reaches the correct length, the mold closes and the parison is cut [Figure 1b]. The bottom of the parison is pinched closed and the top is held in place with a set of holding jaws. The mold is then transferred to a position under the filling station.
The nozzle assembly lowers into the parison until the nozzles form a seal with the neck of the mold [Figure 1c]. Container formation is completed by applying a vacuum on the mold-side of the container and blowing sterile filtered air into the interior of the container. The patented electronic fill system delivers a precise dosage of product into the container. The nozzles then retract into their original position.
Container sealing
Following completion of the filling process, the top of the container remains semi-molten. Separate seal molds close to form the top and hermetically seal the container [Figure 1d]. The mold opens and the container is then conveyed out of the machine [Figure 1e].
The cycle is then repeated to produce another filled container. The filled containers are tested and checked to ensure that they meet the very strict specifications laid down for such products.
The duration of the complete cycle is between 10-18 seconds, depending on the container design and the amount of liquid to be filled.
BFS technology offers considerable advantages over conventional aseptic filling of preformed (plastic or other) containers, which are described as follows:
BFS technology reduces personnel intervention making it a more robust method for the aseptic preparation of saccharin sodium.
There is no need to purchase and stock a range of prefabricated containers and their closures. Bulk containers of plastic are required.
Cleaning and sterilization of prefabricated containers and closures is not required. A clean, sterile container is made within the BFS machine as it is required for filling.
The cost of material transport, storage and inventory control is reduced.
Validation requirements are reduced.
The technology allows the design of high-quality, custom-designed containers with tamper-evident closures in a variety of shapes and sizes.
There is a large choice of neck and opening device shapes.
A single compact BFS machine takes the place of several conventional machines, saving floor space. In addition, zones for transport to successive filling and closing procedures are not required because these operations all take place in the BFS machine itself.
The operation of BFS machines is less labor intensive than conventional aseptic filling.
The code numbers and variable data such as batch number and expiry date can be molded into the container itself rather than being added at a subsequent stage.
The process lends itself to the production of single dose containers and therefore preservatives are not necessary as they are with multi-dose containers.
Blow-fill-seal technology has gained much market focus in recent years due to the increased focus on biologics, proteins and other complex solutions. These important products often cannot withstand exposure to high temperatures for extended periods of time without degradation of their active components. Conventional terminal sterilization, therefore, is not an acceptable method to produce a ‘sterile’ product. Bulk sterilization, sterilization by gamma irradiation or filter sterilization followed by direct packaging utilizing the blow-fill-seal process are often used successfully for these types of products.
Counterfeiting means producing products and packaging similar to the originals and selling the fake as authentic products. Counterfeit is a problem of product security, with reference to packaging is not a problem in isolation; it is the part along with:
Duplication - i.e., copying labels, packaging, products, instructions and usage information,
Substitution - placing inferior products in authentic or reused packaging,
Tampering - by altering packages/labels and using spiked, pilfered, or stolen goods in place as real,
Returns and Warranty frauds they are addressed as Brand Theft.
The current numbers of anti-counterfeiting solutions are many and new options are introduced in the market with some variations. An attempt is made to explain the technologies for easy understanding on product packaging.
1. Overt (visible) features
Overt features are intended to enable end users to verify the authenticity of a pack. Such features will normally be prominently visible, and difficult or expensive to reproduce. They also require utmost security in supply, handling and disposal procedures to avoid unauthorized diversion. They are designed to be applied in such a way that they cannot be reused or removed without being defaced or causing damage to the pack for this reason an overt device might be incorporated within a tamper evident feature for added security.
Tamper evident packaging systems
Some packages are inherently tamper proof, like a tin can hermetically sealed, an aseptically packed multilayer carton or a vacuum or the retort pack. The tamper evident packaging systems are:
a) Film wrappers
A transparent film with a distinctive design is wrapped securely around a product or product container. The film must be cut or torn to open the container and remove the product. Substrates options include ultra destructible films, voidable films that provides image when removed. e.g., Solvent sensitive papers.
b) Shrink seals and bands
Bands or wrappers with a distinctive design are shrunk by heat or drying to seal the cap and container union. The seal must be cut or torn to remove the product.
c) Breakable caps
Such caps break when an attempt is made to open it. These caps provide external tamper evidence and can also be combined with the internal seals thereby providing double security.
d) Sealed tubes
The mouth of the tube is sealed, and the seal must be punctured to obtain the product.
2. Covert (hidden) features
The purpose of a covert feature is to enable the brand owner to identify counterfeited product. The general public will not be aware of its presence nor have the means to verify it. A covert feature should not be easy to detect or copy without specialist knowledge, and their details must be controlled on a “need to know” basis. If compromised or publicized, most covert features will lose some if not all of their security value [Figure 2].
Radio frequency identification (RFID) is hardly a new concept. For some, RFID is already a mainstream technology-it is used every day to pay tolls, secure building access, catch shop lifters etc., It allows the identification of objects through a wireless communications in a fixed frequency band. Three essential components in any RFID system are: the tag, the reader and the software. The tag is an integrated circuit containing a unique tracking identifier, called an electronic product code (EPC), which is transmitted via E.M. waves in the radio spectrum. The reader captures the transmitted signal and provides the network connectivity between tag data and the system software. The software can be tailor made for the purpose of anti-counterfeiting. For their track and trace usage, RFID tags are used [Figure 3].
When RFID tag is within the interrogation zone of the reader (i.e., interrogator) equipment; sufficient power is extracted from the interrogator to power up the tag or circuit, or a special reflective material. It then responds by transmitting data back to the interrogator.
b) Active tag
Such tags incorporate a battery to increase range for collating data, tag to tag communication, etc., But these are much more expensive.
c) Semi-active tag
In these tags batteries are used to back up the memory and data, but not to boost the range. With some active RFID tags, the batteries are only used when interrogated or when sending a homing pulse at fixed intervals to reduce cost and size.
4. Packaging designs: Materials/Substrates and other design options
a) Substrates
There are variety of substrates used in the design of packages with intent to provide counterfeit and tamper evident features starting from litho paper, polystyrenes, destructive vinyl's, acetate films synthetic paper and coatings etc., There are many ways of incorporating covert markers within a substrate, such as visible or UV fluorescing fibers, or chemical reagents in carton board or paper. Watermarks can be embedded in leaflet paper, or metallic threads interwoven in the base material, possibly including an overt optically variable devices (OVD) feature. These require a dedicated supply source and large volume production, which, if affordable, results in a very effective option. Micro-encapsulated distinctive odors can be applied as an additive to an ink or coating to provide a novel covert or semi-overt feature, as well as sound chips creates special opportunities in the design.
b) Packaging designs
Packaging designs like sealed cartons, aerosol containers have inherent strength against counterfeiting
c) Sealing systems
Special caps such as the outer tamper evident system or the foil seal as an internal tamper evident feature are commonly used for pharmaceutical products. Sealing options are lever-lidded tins, secure packaging tapes, lined cartons and tear tapes/bands.
5. Security labels
Tamper evident and security labels play an important role in providing some relief to the consumers against fakes. In self adhesive labels the substrate mostly performs as a complimentary interaction of the substrate and the pressure sensitive adhesive. While passive security labels have been extensively used, today one can find a greater application of functional labels such as printing plus anti-theft. Some label options are:
a) Paper labels with security cuts
The substrate used for these labels is ordinary coated/uncoated paper. The security features are built in by the label printer at the converting stage. With the help of a special cutting die, the face material is given cuts at various angles so that by any ways one tries to remove these labels the paper will tear off. A general purpose permanent adhesive works fine with such labels. Care is taken to ensure that the adhesive will adhere well and firmly to the surface on which the label has to be applied.
b) Destructible labels
Needs a special substrate designed for the purpose. Most of the high-end applications use a specially made cellulose acetate film. The film is very intricately designed so that it has adequate strength to undergo conversion into label stocks in roll form. It is available both in clear and opaque formats and further converted into labels using aggressive pressure sensitive adhesives. The labels can be automatically dispensed on automatic label dispensers and when attempted to be removed, break-up into very small fragmented pieces. The cost effective vinyl have replaced acetate film. A combination of various synthetic polymers can be used to impart low inherent strength to the substrate.
c) Void labels and tapes
The most important of the tamper evident security labels and have text built into them. When as a self adhesive label they are removed, they exhibit the word VOID both in the removed film and the adhesive layer left behind. These substrates gain importance as there can be customization built into the labels produced with it. One can use polyester or biaxially-oriented polypropylene (BOPP) as face materials. Variety of colors, even metallization is possible. The text VOID could be replaced by the customers brand, emblem or a message, which would normally be invisible till the label is opened. Due to the versatility of things that can be done with the product, these label substrates have found widespread usage worldwide. The substrates can even be designed to work as tapes for the final outer corrugated cartons to prevent pilferage.
d) Self destructing paper label
The labels are very similar to destructible labels as mentioned earlier. In this case, the substrate used is of very weak strength paper of low grammage. The paper is also heavily loaded with fillers creating a weak and brittle paper. Labels made from such papers fragment into pieces when attempted to be removed. However, converting it is a very tricky issue when using these substrates due to the lack of strength. The papers are very difficult to source since most of the paper mills are trying to develop papers with very high strength.
e) Holographic labels
The labels form a very large and important part of the security label market and are an ideal choice for product authentication. The holographic foil that is an optically variable device is largely made using a polyester film base. The optical interaction of the holographic image and the human eye makes it ideal for brand promotion and security. These products reveal the holographic image when tilted in light. The image so revealed can be customized to the need of the brand owners to make the maximum impact. The hologram production involves development of complex origination process and a lot of innovation to make it difficult for counterfeiters to duplicate. Many holograms are designed such that besides offering brand authentication they also have tamper evident properties. The top polyester layer has a special coating that if the hologram is attempted to be removed, the top layer peels off leaving the hologram behind on the product [Figure 4].
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Sterilization Equipment Market was valued at USD 7854.7 Million in 2018 and is expected to reach USD 13337.1 Million by the year 2026, at a CAGR of 6.8%.
Sterilization Equipment Market Analysis, By Product and Service (Sterilization Instrument, Sterilization Services, Sterilization Consumables and Accessories), End-User (Pharmaceutical Companies, Hospitals, Medical Device Companies), Forecasts to 2026
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WMR-Western Market Research has recently published a comprehensive and exclusive research report, which is an intelligent study covering all key segments. This research report provides breakthrough inputs and insights on market related factors like size, competition, trends, analysis, forecasts etc. The study encompasses primary and secondary data sources along with quantitative and qualitative practices thus assuring data accuracy. The global Sterilization Equipment Market was valued at USD 7854.7 Million in 2018 and is expected to reach USD 13337.1 Million by the year 2026, at a CAGR of 6.8%. Sterilization is an important process that eliminates the microorganisms or biological agents from a particular surface. This process finds critical application in the medical and healthcare industry. It controls the microbial population to prevent transmission of disease through medical equipment and tools. Sterilizers can be used to reduce the count of microbial or to eliminate them. Sterility Assurance Level (SAL) is a measurement parameter that gives the probability of occurrence of a single microorganism on a surface which has been sterilized. Sterilization generally provides a wide range of safety margin from pathogens. Its equipment are also used to purify fluids. The equipment in the pharmaceutical industry can sterilize water and other fluids to make it free from pathogens and also can be used to produce water, suitable to be used in reaction vessels.Classical techniques for sterilizing using saturated steam under pressure or hot air are the most reliable and should be used whenever possible. Other methods include filtration, ionizing radiation (gamma and electron-beam radiation), and gas (ethylene oxide, formaldehyde). According to the World Health Organization, for products that cannot be sterilized in the final containers, aseptic processing is necessary. Materials and products that have been sterilized by one of the above processes are transferred to pre-sterilized containers and sealed, both operations being carried out under controlled aseptic conditions.
There are different methods of sterilizing and whatever method is chosen, the procedure should be validated for the types of product, to ensure that no adverse change has taken place within the product and with respect to the assurance of sterility. Failure to follow a defined, and validated process results in a deteriorated product. A validation program for dry-heat or steam of sterilizing requires the correlation of temperature measurements, made with sensory devices to demonstrate heat penetration and heat distribution, with the destruction of biological indicators, that is, preparations of specific microbes known to have high resistance to the particular sterilization process. Moreover, biological indicators are used to validate other methods, and sometimes for routine control of individual cycles.
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This industry is driven by factors like increasing incidences of hospital-acquired infections and rising awareness about disinfection in food and beverages. Also, prevailing surgical practices and technological advancements in such devices help propel market growth. Governments of various countries are taking active efforts towards adopting sterilization standards in critical applications like medical and food industries. These regulations are expected to drive market growth during the forecast period. The Asia Pacific region is one of the surging regions in this industry pertaining to the growing number of hospitals and clinics and unmet healthcare needs of a large portion of the population. The number of private hospitals in Asia increased from 33,883 in 2008 to 53,535 in 2015. Surgical centers also have witnessed a similar trend in the region.STERIS Corporation, Getinge Group, Advanced Sterilization Products Services, 3M; Belimed; Cantel Medical; MATACHANA GROUP; Sterigenics International LLC; TSO3 and Sortera Health. In December 2018, STERIS Corporation, a key player in this industry announced targeted restructuring plan of approximately $45 million.Sterilization Instrument, Sterilization Services, Sterilization Consumables and Accessories,Pharmaceutical Companies, Hospitals, Medical Device Companies
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Vascular Closure Devices Market 2018 – 2023: Business Trends, Regional Study, Global Segments and Industry Profit Growth
Vascular Closure Devices Market Analysis
The vascular closure devices market is predicted to grow at a 6.8% CAGR over the forecast period (2018-2023), states the new Market Research Future (MRFR) report. A vascular closure device, simply put, is a piece of suture, metallic clip, or collagen that offers instant sealing of small punctures made in the artery post a cardiovascular process of endovascular surgery that needs a catheterization. A cardiovascular process that needs catheterization includes diagnostic procedures which assist in the diagnosis of diseased blood vessels as well as intervention procedures, especially angioplasty. The key goal of this device is in offering rapid hemostasis of arteries and also reduces access site complications. Besides, it also helps in reducing time to hospital discharge and time to ambulation. Above all, it is more comforting for the patient in comparison to manual compression.
Some of the drivers according to the Market Research Future (MRFR) the vascular closure device market report, include rising prevalence of various neurovascular and cardiovascular diseases, growing adoption of minimally invasive techniques, increasing investments by government organizations, and untapped market opportunities especially in emerging countries.
On the flip side, post-operative complications and scarcity of trained medical professionals are factors that are likely to impede the market growth over the forecast period.
Vascular Closure Devices Market Segmentation
The MRFR report provides a complete segmental analysis of the vascular closure devices market on the basis of end user, application, procedures, access, and product type.
Based on product type, the vascular closure devices market is segmented into external hemostatic devices, active vascular closure devices, and passive vascular closure devices. The active vascular closure devices segment is again segmented into gamma-retroviral vectors, suture-based devices, and clip-based devices. The passive vascular closure devices segment is segmented into compression assist devices, sealant/gel-based devices, and plug-based devices.
Based on access, the global vascular closure devices market is segmented into radial access and femoral access.
Based on procedures, the vascular closure devices market is segmented into vascular surgery/interventional radiology and interventional cardiology.
Based on application, the global vascular closure devices market is segmented into therapeutic intervention and diagnostic intervention.
Based on end user, the vascular closure devices market is segmented into ambulatory surgery centers, specialty centers, hospitals and clinics, and others.
Vascular Closure Devices Market Regional Analysis
Based on the region, the global vascular closure devices market report covers the latest trends and growth opportunities across the Americas, Europe, the Asia Pacific, and the Middle East and Africa. Of these, the Americas are touted to remain at the forefront in the market during the forecast period. An increase in research funding and growing awareness among medical professionals about the vascular closure devices are factors driving the market growth in the region.
The vascular closure devices market in Europe is predicted to have the second-largest share in the market over the forecast period. Factors aiding growth in the region include various initiatives undertaken by private and public organizations.
The vascular closure devices market in the APAC region is predicted to grow at the fastest pace over the forecast period. Factors aiding growth in the region include advancements in technology, resulting in the availability of affordable vascular closure devices and the high acceptance rate of these devices in this region.
The vascular closure devices market in the Middle East and Africa is predicted to have a slow growth over the forecast period. This is chiefly due to less initiative undertaken by the government and the presence of economically diverse countries.
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Vascular Closure Devices Market Key Players
Leading players profiled in the vascular closure devices market report include Vivasure Medical Ltd., Vascular Closure Systems, Inc, Transluminal Technologies LLC, Vasorum Ltd., TZ Medical, Inc., Merit Medical Systems, Inc., Essential Medical, Inc., Medtronic plc, Morris Innovative, Inc., Cardiva Medical Inc., Cardinal Health Inc., Terumo Corporation, and Abbott Laboratories.
June 2019: gel-e announced Breakthrough Status Designation from US FDA for its first-ever internal-use flowable device. These advanced wound treatment and hemostatic products will help to address unmet needs right from the operating room up to the backyard. The injectable hemostat called Life Foam will offer control of bleeding temporarily from non-compressible abdominal wounds which are not amenable to tourniquet application in battlefield conditions and trauma. It has been specially designed for saving lives of traumatic accident victims, terrorist attacks and injured in a battle.
#Vascular Closure Devices Market#Vascular Closure Devices Market Size#Vascular Closure Devices Market Share#Vascular Closure Devices Market Growth#Vascular Closure Devices Market Analysis
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Dry Vacuum Pump Motor Market to Gain Significant Revenue in the Period of 2030
Dry Vacuum Pump Motor Market: Introduction
Dry vacuum pump motors are used in dry vacuum pumps. Dry vacuum pump is a pump that does not use any fluids to create a vacuum. These pumps usually runs hot because there are no liquids to remove the heat developed by compressing the gas. Dry vacuum motor based pumps provide steady performance, easy integration and installation, clean quality vacuum, sound shelf life, and wide opening doors. These dry vacuum motor based pumps are mainly used in pharmaceutical, chemical, electronics & semiconductor and others. These pump are also used in material handling, filtration and scientific instruments such as microscopes and laser scanning.
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Dry Vacuum Pump Motor Market: Dynamics
Dry vacuum pump motors offers various benefits such as low power consumption, low cooling water usage, can pump high water vapor solvents and it is environment friendly. The rising demand of dry vacuum motor based pumps from electronics & semiconductor and pharmaceutical industries is expected to boost the market growth. Another major factor driving the demand of dry vacuum pump motor is the increasing investments in electronics & semiconductor and pharmaceutical industries by USA, Germany, South Korea, and Japan, in developing countries, such as India, Brazil and ASEAN countries.
The key restraint in the Dry Vacuum Pump Motor market is the high machinery cost and heavy structure of dry vacuum motor based pumps. Industries such as automotive, aerospace, electronics and shipbuilding offers significant opportunities for the dry vacuum motors market. The most important trend in the Dry Vacuum Pump Motor market is the growing investments in research and development activities by major companies working in the dry vacuum pump motors market. In addition, many companies are focusing on their regional expansion and to achieve this they are using partnership and collaboration strategies. Many companies are also trying to increase their efforts to produce energy-efficient products.
The Covid-19 pandemic has shaken down the worldwide economy manufacturing sector of both emerging an advanced economies alike. The dry vacuum pump motor market will experience a neutral and at-par effect. This has prompted huge stoppage in spending in the first half of the year 2020 as it resonates through each segment of the economy. Production lines of tier 1 and tier 2 suppliers have stopped. In addition, legal and trade restrictions, for example, sealed borders, increased the deficiency of dry vacuum pump motors. Companies across the globe are steadily flattening their recessionary curve by exploiting technology. Full fledge recovery is anticipated to be seen by mid-2022 as the governments across the world will enforce strong policies to minimize the impact of the pandemic on the economy.
Dry Vacuum Pump Motor Market: Segmentation
The global Dry Vacuum Pump Motor market can be segmented on the basis of by product type, by power source, and by end-use industry.
On the basis of product type, the global Dry Vacuum Pump Motor market is segmented as:
Dry Screw Vacuum Pump Motor
Dry Scroll Vacuum Pump Motor
Dry Diaphragm Vacuum Pump Motor
Dry Claw and Hook Pump Motor
Others (Dry Lobe Vacuum Pump Motor, and Dry Rotary Vane Vacuum Pump Motor)
On the basis of power source, the global Dry Vacuum Pump Motor market is segmented as:
Electric
Pneumatic
On the basis of end-use industry, the global Dry Vacuum Pump Motor market is segmented as:
Electronics & Semiconductor Industry
Pharmaceutical Industry
Chemical Industry
Food and Beverages Industry
Others (Printing Industry, Packaging Industry)
Dry Vacuum Pump Motor Market: Regional Outlook
The dry vacuum pump motor market is anticipated to witness significant growth in South Asia and Pacific region. The stringent regulatory and economic factors are majorly prompting this growth. Rising labor cost in developing countries, such as China and India, is one of the reasons for the adoption of dry vacuum pump motors. The special economic zones and dedicated industrial corridors are stimulating the growth of industrialization in India which in turn is boosting the demand for dry vacuum pump motors. In Addition there has been a significant increase in the small and medium scale manufacturers in China and countries in South Asia & Pacific. Various China based manufacturers are offering low cost dry vacuum pump motors to several industries. North America is another prominent regions in the market for dry vacuum pump motors. The market in this region is witnessing significant growth due to the presence of various companies engaged in the pharmaceutical, chemical, and electronics sectors.
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Dry Vacuum Pump Motor Market: Key Participants
Some of the market participants in the global Dry Vacuum Pump Motor market, identified across the value chain include:
Pfeiffer Vacuum GmbH
Ebara Corporation
Gardner Denver, Inc.
Atlas Copco AB
Agilent Technologies
ULVAC
Busch
Becker
Edwards
Sterling Sihi
Gamma Vacuum
Welch
Oerlikon
Wintek
KSB
KKR
Tuthill Vacuum & Blower Systems
Dekker Vacuum Technologies, Inc.
Gebr. Becker GmBH
Gast Manufacturing, Inc.
KNF Neuberger GmBH
Samson Pump A/S
Vooner FloGard Corporation
The research report on the Dry Vacuum Pump Motor market presents a comprehensive assessment, and contains thoughtful insights, facts, historical data, and statistically supported and industry-validated market data. The Dry Vacuum Pump Motor market report also contains projections using a suitable set of assumptions and methodologies. The report provides analysis and information according to market segments such as by product type, by power source, and by end-use industry.
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Global Gamma Seal Lids Market Highlighting Regional Revenue Share Dominance during 2018-2027
The gamma seal lids market is expected to grow considerably due to the growing manufacturing and industrial sectors across the globe. Gamma seal lids are mainly available in several materials such as polyethylene, polypropylene, and polyethylene terephthalate. Gamma seal lids are durable, sturdy, and made up of heavy-duty plastic which does not react with any chemical stored in the container. Furthermore, due to their airtight features, gamma seal lids provide humidity protection for stored food items. Rapidly growing chemical industry across the globe has increased the need for bulk packaging applications and has positively affected the growth of gamma seal lids. Moreover, stringent norms related to environmental issues due to the usage of plastic are expected to hamper the Gamma Seal Lids Market during the forecast period.
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In the last few years, industrial packaging has seen significant growth due to industrialization. Caps and closures are gaining traction in industrial packaging. Gamma seal lids are closures which are used for plastic pails and buckets. These can be used with any of the industrial bulk packaging applications such as pails, drums, buckets, etc. Gamma seal lids are two-piece sealing units which transform any kind of open bucket or pail into an airtight container. In addition, gamma seal lids have a screw lid which can be removed and resealed whenever needed. The groove design of gamma seal lids makes it easier to get it stuck on any packaging format like bucket, pails, etc. and be removed whenever needed. Gamma seal lids are mainly used for several end-use applications in chemicals, pesticides, food & beverages, lubricants, paints, and other industries that need airtight closures. Furthermore, gamma seal lids can be recycled and reused. The groove design of gamma seal lids makes it easy to mound a bucket or pail.
Global Gamma Seal Lids Market – Regional Overview
The North American market is expected to dominate the gamma seal lids market during the forecast period. In the Asia Pacific region, India and China are expected to witness noteworthy growth in the gamma seal lids market.
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Furthermore, China and India have seen a significant growth in the industrial sector which is expected to create positive growth for the market. Moreover, the Latin American and Middle Eastern & African gamma seal lids market are expected to record sluggish growth during the forecast period.
Global Gamma Seal Lids Market – Key Players
Few of the key players in the gamma seal lids market are Gamma2 Inc., Affordable Buckets, LLC, United States Plastic Corporation, Hawthorne Gardening Co., Lexington Container Company, Longsheng Plastic Products Factory, Fansheng Plastic Manufacture Co. Ltd, Innovation Packaging Materials Co., Ltd., etc.
The report on gamma seal lids market is a compilation of first-hand information, and qualitative & quantitative assessment by industry analysts, as well as inputs from industry experts and industry participants across the value chain. The gamma seal lids market report provides an in-depth analysis of parent market trends, macroeconomic indicators, and governing factors, along with market attractiveness as per segment. The gamma seal lids market also maps the qualitative impact of various factors on market segments and geographies.
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Global Single Use Bioprocessing Market is Booming Across Globe by 2026
Market Analysis and Insights:- Global Single Use Bioprocessing Market
Global Single Use Bioprocessing Market By Type (Upstream, Fermentation, Downstream), Product (Tangential-Flow Filtration Devices, Simple & Peripheral Elements, Apparatus & Plants, Work Equipment), Applications (Monoclonal Antibody Production, Vaccine Production, Plant Cell Cultivation, Patient Specific Cell Therapies, Others), Method (Filtration, Storage, Cell Culture, Purification, Mixing), Material (Plastic, Silicone, Others), End User (Biopharmaceuticals Industry, CMOs & CROs, Pharmaceuticals Industry, Neutraceuticals Industry, Chemicals Industry, Academic & Research Laboratories, Others), Geography (North America, South America, Europe, Asia-Pacific, Middle East and Africa) – Industry Trends and Forecast to 2026
Market Analysis: Global Single Use Bioprocessing Market
Global single use bioprocessing market is set to witness a healthy CAGR of 16.9% in the forecast period of 2019- 2026. The report contains data of the base year 2018 and historic year 2017. This rise in market value can be attributed to increasing demand for bioprocessed products.
Market Definition: Global Single Use Bioprocessing Market
Single-use bioprocessing is used in the development of disposable bioprocessing equipment and accessories to manufacture biopharmaceutical products. Single use bioprocessing are in high demand due to wide applicability in various industries and various processes such as in bioprocessing of enzymes, the food related process of filtration, cells, medical equipment, distillation and other. Increasing benefits of bioprocessed products is one of major factor contributing growth in the global single use bioprocessing market. Additionally, constant research and development of single use bioprocessing helps to reduce development cost of bioprocessed products.
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Market Drivers
Low risk of product cross-contamination is expected to drive the growth of the market
Faster implementation of single use bioprocessing is expected to drive the growth of the market
Low manufacturing costs and lesser environmental impact of single-use bioprocessing technologies is expected boost the market growth
Increasing demand for biopharmaceuticals is expected to enhance growth of the market
Market Restraints
Issues related to leachable and extractable acts as restricting factor for the growth of the market
Lack of skilled operators in single use bioprocessing is expected to hinder the market growth
Stringent regulations regarding the use of disposable bioprocessing systems will also restrict the market growth in the forecast period
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Segmentation: Global Single Use Bioprocessing Market
By Type
Upstream
Fermentation
Downstream
By Product
pH Sensor
Oxygen Sensors
Pressure Sensors
Temperature Sensors
Conductivity Sensors
Flow Sensors
Other Sensors
Up to 1000 L
Above 1000 to 2000 L
Above 2000 L
Cell culture system
Syringes
Others
By Applications
Monoclonal Antibody Production
Vaccine Production
Plant Cell Cultivation
Patient Specific Cell Therapies
Other
By Method
Filtration
Storage
Cell Culture
Purification
Mixing
By Material
Polyethylene (PE)
Polyvinyl chloride (PVC)
Polyamide
Other Plastic Materials
By End User
Biopharmaceuticals Industry
CMOs & CROs
Pharmaceuticals Industry
Nutraceuticals Industry
Chemicals Industry
Academic & Research Laboratories
Others
By Geography
U.S.
Canada
Mexico
Brazil
Rest of South America
Germany
France
United Kingdom
Italy
Spain
Russia
Turkey
Belgium
Netherlands
Switzerland
Rest of Europe
Japan
China
South Korea
India
Australia
Singapore
Thailand
Malaysia
Indonesia
Philippines
Rest of Asia Pacific
South Africa
Rest of Middle East & Africa
Key Developments in the Market:
In April 2016, Entegris has launched single-use bioprocessing system Aramus 2D bag assembly available in 2-liter sizes, 1-liter and 500-ml. Aramus assemblies use ultrapure, advanced film technology that is comprised of gamma-stable film and one fluoropolymer in a single layer. The product launch will help company to increase product portfolio in bioprocessing market
In October 2016, General Electric’s Life Sciences business has expanded single-use technology manufacturing facility in Westborough, Massachusetts, U.S. The major focus of manufacturing facility expansion is to fulfill future demand single-use bioprocessing technologies. The expanded manufacturing site will provide a wide range of single-use products, such as cell growth bags, based on a new developed film platform subsequent from GE’s strategic alliance with Sealed Air
Competitive Analysis:
Global single use bioprocessing market is highly fragmented and the major players have used various strategies such as new product launches, expansions, agreements, joint ventures, partnerships, acquisitions, and others to increase their footprints in this market. The report includes market shares of single use bioprocessing market for Global, Europe, North America, Asia-Pacific, South America and Middle East & Africa.
Key Market Competitors:
Few of the major competitors currently working in global single use bioprocessing market are 3M, Applikon Biotechnology BV, CESCO BIOENGINEERING CO., LTD, Danaher, Eppendorf AG, GENERAL ELECTRIC, Merck KGaA, PBS Biotech, Inc., Sartorius AG, Thermo Fisher Scientific Inc., Rentschler Biopharma SE, Corning Incorporated, Avantor Fluid Handling LLC, Boehringer Ingelheim International GmbH, Infors AG, Entegris, Lonza, Kuhner AG, MEISSNER FILTRATION PRODUCTS, INC. among others.
Research Methodology: Global Single Use Bioprocessing Market
Data collection and base year analysis is done using data collection modules with large sample sizes. The market data is analyzed and forecasted using market statistical and coherent models. Also market share analysis and key trend analysis are the major success factors in the market report. To know more please request an analyst call or can drop down your enquiry.
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The key research methodology used by DBMR research team is data triangulation which involves data mining, analysis of the impact of data variables on the market, and primary (industry expert) validation. Apart from this, other data models include Vendor Positioning Grid, Market Time Line Analysis, Market Overview and Guide, Company Positioning Grid, Company Market Share Analysis, Standards of Measurement, Top to Bottom Analysis and Vendor Share Analysis. To know more about the research methodology, drop in an inquiry to speak to our industry experts.
Primary Respondents
Demand Side: Doctors, Surgeons, Medical Consultants, Nurses, Hospital Buyers, Group Purchasing Organizations, Associations, Insurers, Medical Payers, Healthcare Authorities, Universities, Technological Writers, Scientists, Promoters, and Investors among others.
Supply Side: Product Managers, Marketing Managers, C-Level Executives, Distributors, Market Intelligence, and Regulatory Affairs Managers among others.
Reasons to Purchase this Report
Current and future of global single use bioprocessing market outlook in the developed and emerging markets
The segment that is expected to dominate the market as well as the segment which holds highest CAGR in the forecast period
Regions/Countries that are expected to witness the fastest growth rates during the forecast period
The latest developments, market shares, and strategies that are employed by the major market players
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Customization of the Report:
All segmentation provided above in this report is represented at country level
All products covered in the market, product volume and average selling prices will be included as customizable options which may incur no or minimal additional cost (depends on customization)
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Electric Motorcycle and Scooter Market Size, Share, Growth, Trends, and Forecast 2019 - 2027
Electric motorcycles and scooters refers to two or three wheeled plug-in electric vehicles. The electricity that runs the vehicle is stored a rechargeable battery on the board. This rechargeable battery drives one or more electric motors. A surge in the government investment across the globe for the purpose of development of charging infrastructure and offering of incentives to buyer is boost the global electric motorcycle and scooter market. Such initiatives by the government will are likely to encourage original equipment manufacturers to expand their geographical presence.
Fushida, Gamma Technologies, Energica Motor Company S.p.A., Lima Electric Vehicle Co. Ltd., Shandong Incalu Electric Vehicle Co. Ltd., Mahindra & Mahindra Ltd., and Wuxi Yadea Export-Import Co., Ltd. are some of the companies profiled in the global electric motorcycle and scooter market.
Transparency Market Research (TMR) has prepared a study on the global electric motorcycle and scooter market, for the period 2019 to 2027. Expanding at a 7.1% CAGR, the global electric motorcycle and scooter market is estimated to surpass US$ 14.29 Bn through 2027.
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Driven by Large-Scale Manufacturing of Electric Vehicles, China to Lead the Market
In terms of region, the Asia Pacific is estimated to exert dominance over the global electric motorcycle and scooter market. Such regional supremacy of Asia Pacific is primarily due to the large-scale manufacturing, sale, and adoption of these products in China. The country alone has emerged as a leader in the global electric motorcycle and scooter market.
A rise in the emission together with government norms regulating the emissions in the environment is likely to encourage growth of the market in China. In addition to that, Chinese government is also offering subsidies, which has led to a rise in the adoption of these electric vehicles, thereby driving growth of the electric motorcycle and scooter market in the country.
Other major countries in Asia Pacific with growing adoption of two-wheeled electric motor vehicles are Taiwan, Japan, and India.
Low Noise and Rapid Improvement in the Performance to Stoke its Demand
Electric motorcycle and scooters are substantially quieter than existing scooters and motorcycles that run of traditional power systems. These vehicles are so very silent that pedestrians are often caught unaware of their presence on road. As such, the low-noise feature of the vehicle is likely to propel growth of the global electric motorcycle and scooter market. At present, most of the electric motorcycles and scooters are encouraged by operated by rechargeable lithium-ion batteries and sealed with lead acid batteries.
Growing demand for alternative and clean fuels for various means of transport has emerged as growth factor for the global electric motorcycle and scooter market. These vehicles are quiet and lightweight when compared to vehicles running on traditional fuels.
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Radiation Shielding Materials Market Share Analysis, Trends,Forecast, 2019-2027
Radiation Shielding Materials Market: Introduction
Radiation shielding can minimize the effect of radiation by blocking particles through a barrier material. Radiation shielding is a process of directing the effects and level of entrance of radioactive beams, according to the type of radiation involved.
Radiation protection or radiation shielding is defined by the International Atomic Energy Agency (IAEA) as protection of people from harmful effects of exposure to ionizing radiation.
Shielding reduces the intensity of radiation depending on the thickness. The effectiveness of shielding depends on the preventing power of radiation particles, which varies with the type and energy of radiation and the shielding material used.
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Key Drivers of Radiation Shielding Materials Market
Preservation of human safety and structural materials that may be compromised from radiation exposure is a key characteristic of radiation shielding materials
Increase in usage of nuclear energy, rise in usage of radiation therapy, and growth in usage of nuclear medicines are expected to propel the radiation shielding materials market during forecast period
High cost associated with radiation shielding equipment is anticipated to hamper the market to some extent in the near future. However, strengthening of regulations and improvement of healthcare infrastructure in emerging countries are likely to create lucrative opportunities for the radiation shielding materials market in the near future.
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Radiation Shielding Materials Market: Product Segments
Based on product, the global radiation shielding materials market can be divided into ceramicrete, plexiglas, depleted uranium, tin, antimony, tungsten, bismuth, lead, rubber, PVC, and others
Lead is a common choice for usage in fabricating radiation shielding products. Lead is fabricated into different product forms such as lead glass, lead bricks, and lead wools to provide radiation shielding and protection.
Radiation Shielding Materials Market: Radiation Type Segment
Based on radiation type, the global radiation shielding materials market can be classified into electromagnetic radiation, particle radiation, acoustic radiation, and gravitational radiation
Variants of electromagnetic radiation include radio waves, microwaves, infrared, visible light, ultraviolet, x-rays, and gamma radiation
Most prevalent types of particle radiation include alpha radiation, beta radiation, and neutron radiation. Variants of acoustic radiation include ultrasound, sound, and seismic waves.
Thermal conductivity is an essential factor in selection of a suitable material for shielding against different types of radiations. Consideration for secondary radiation effects from the shield material itself is another crucial factor. Other parameters include acquisition cost, fabrication methods, weight, transportation costs, installation costs, waste involved, and ultimate scrap value of the material.
Radiation Shielding Materials Market: End-use Segments
Based on end-use, the global radiation shielding materials market can be segregated into diagnostic centers, hospitals, oncology department, nuclear energy plant, radiography centers, and others
Upward trend in health care spending across the globe, rise in number of diagnostic imaging centers, and increase in awareness about safety among the population are expected to drive the demand for radiation shielding materials in the near future
Asia Pacific to be Key Region of Global Radiation Shielding Materials Market
In terms of region, the global radiation shielding materials market can be split into North America, Europe, Asia Pacific, Latin America, and Middle East & Africa
Asia Pacific is anticipated to lead the radiation shielding materials market due to rise in adoption of radiation therapy, increase in number of hospitals, and surge in awareness about radiation safety in countries such as India and China.
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Key Manufacturers Operating in Market
The global radiation shielding materials market was highly fragmented in 2018. Key manufacturers operating in the global market include:
ETS-Lindgren
Marshield Radiation Shielding
Nelco Inc.
Ray-Bar Engineering Corp.
Spira Manufacturing
Sealing Devices Inc.
Select Fabricators Inc.
Amray Radiation Protection
Gaven Industries Inc.
A&L Shielding
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Electric Motorcycle and Scooter Market: Projection of Each Major Segment over the Forecast Period 2027
Transparency Market Research has published a new report titled, “Electric Motorcycle and Scooter Market (Product: Scooter and Motorcycle; Battery Type: Seal Lead Acid and Lithium-ion; Technology: Plug-in and Battery) - Global Industry Analysis, Size, Share, Growth, Trends, and Forecast, 2019–2027.” According to the report, the electric motorcycle and scooter market is projected to surpass US$ 14.29 Bn by 2027, expanding at a CAGR of above 7.1 % during the forecast period.
Electric Motorcycle and Scooter Market:
According to the report, the electric motorcycle and scooter market is likely to be driven by a range of macroeconomic, technological, and industry-specific factors. Asia Pacific is expected to be at the forefront of global demand, with the market in the region expanding at a CAGR of more than 89% between 2019 and 2027.
Electric motorcycles and scooters are vehicles that run on electrical energy without utilizing fossil fuels. These types of vehicles are 100% eco-friendly and zero-emission vehicles, which are highly useful to counter the effects of fossil fuel-generated pollution.
Electric vehicles are vehicles of the future, and they are expected to curtail the amount of carbon emission released into the atmosphere as they produce low or zero carbon emission. Demand for electric vehicles is rising globally, while various governments are offering subsidies to owners or buyers of electric vehicles.
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Growth of the Electric Motorcycle and Scooter Market:
Several countries in Europe are likely to make it mandatory to use electric vehicles in the next two to three years. Germany, Norway, Japan, India, and China have already announced the discontinuation of production of fossil fuel vehicles in the next decade. Moreover, these countries are also encouraging their citizens to purchase electric vehicles by offering subsidies.
Rising demand for alternative fuels for vehicles is also a major factor driving the demand and popularity of electric vehicles. These types of vehicles are lightweight and are very quiet, as compared to conventional fuel vehicles.
The performance of the electric vehicles has been improving considerably since its inception, and their performance is expected to match that of conventional fuel vehicles in the next few years.
Electric powered two wheeler are alternatives to conventional fuel powered two-wheelers that emit considerable amount of carbon dioxide, which is harmful for the environment.
Increasing demand for alternative fuel vehicles and rising demand for efficient, long-range (mileage), and less noisy vehicles are key factors that are projected to boost the electric two wheeler motor powered vehicle market in the near future.
Challenges of the Electric Motorcycle and Scooter Market:
Lack of proper infrastructure for electric vehicles, such as limited availability of charging stations or charging docks or base, is a major restraint to the electric motorcycle and scooter market.
High price of an electric two wheeler, as compared to that of a conventional fuel powered two wheeler, is likely to hamper the market during the forecast period. Key reasons for the high price of electric motorcycles and scooters are less penetration and expensive technology, which impact price of electric motorcycles and scooters.
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Electric Motorcycle and Scooter Market: Regional Analysis
In terms of region, the Asia Pacific dominates the global electric motorcycle and scooter market, primarily due to the massive production and adoption of electric scooters and motorcycles in China, which single handedly leads the global electric motorcycle and scooter market.
China is estimated to account for 9% share of the global market by the end of 2019. Moreover, surge in emission coupled with government emission norms and subsidies offering have led to significant adoption of the electric motorcycle and scooter market in the China, thereby boosting the market share held by Asia Pacific.
Other major countries with increasing adoption of the electric two wheeler motor vehicles are India, Japan, and Taiwan.
Prominent players operating in the electric motorcycle and scooter market include AIMA, ALTA MOTORS, Aucma EV, BMW Motorrad, Bodo Vehicle Group, BYVIN, Electric Motor Sport, Inc., Emmelle, Energica Motor Company S.p.A., Evoke Electric Motorcycles, Fushida, Gamma Technologies, Govecs Group, Hero Eco, Honda Motors, KTM Sportmotorcycle GmbH, Lightning Motorcycle Corp., Lima Electric Vehicle Co., Ltd., Lito, Lvjia, Mahindra & Mahindra Ltd., Piaggio & C. SpA, Polaris Industries, Inc., Qianxi Group, Quantya, Shandong Incalu Electric Vehicle Co., Ltd., Shanghai Palla Electric Vehicle Co., Sinski Motorcycle, Slane, Sunra EV, Suzuki Motor Corporation, TAILG, Terra Motors Corporation, Tork Motors, Wuxi Yadea Export-Import Co.,Ltd., Yamaha Motor Corporation, YObykes, Z Electric Vehicle, Zero Motorcycles, Inc., Zhejian Luyuan Electric Vehicle Co., Ltd., and Zuboo.
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Choose the Most Creative for your Custom Pharmaceutical Boxes
The term packaging can be defined as the ‘coordinated system of preparing goods for efficient, safe and cost effective transportation, storage, retailing, distribution, recovery and consumption.’ Today the field of pharmaceutical boxes and packaging has undergone numerous changes.
It is no longer restricted to the basic functions of protection, preservation, presentation and containment; it also contributes to a number of factors such as communication, display, promotion and in motivating customers to buy the product.
Most importantly, the packaging has a greater significance for commodity products like, pharmaceuticals, cosmetics and processed food. Packaging plays a very important role in maintaining the hygiene and safety of products which are either swallowed, consumed or have some sort of contact with the human skin.
Custom pharmaceutical boxes have bigger challenges - these include how to prevent the entry of spurious medication in the market which will have a negative impact on human health and might tarnish the brand image.
Pharmacists are formulating different types of drugs through incessant research and packaging technologists have a bigger challenge to develop custom pharmaceutical boxes. Such packages should have anti-counterfeiting qualities which are in compliance with all regulatory requirements.
Changes have currently been made to the packaging of custom pharmaceutical boxes which satisfy customer and market requirements. A number of new barriers, laminations, films, coatings and composites which have been introduced to the custom pharmaceutical boxes packaging industry.
Pre-made roll stock and pouches, in unprinted or printed form are now able to endure gamma- radiation sterilization in addition to high-temperature pasteurization without changing or weakening the physical characteristics of the polymer.
Modern technologies have enabled the industry to make smart custom pharmaceutical boxes blister packs. These blister packs comprises of a cavity which contains the product along with a lid material and a sealing compound. This is an innovative trend which has been used by various leading brands to help promote and protect their brand at the same time.
Business Image Printing can help you get your custom pharmaceutical boxes designed. They are the best at what they do and with their expertise can help you increase the sales of your pharmaceutical products.
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