#Aniline Database
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chemanalystdata · 3 months ago
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Aniline Prices | Pricing | Trend | News | Database | Chart | Forecast
   Aniline prices is a key organic chemical compound primarily used in the manufacturing of dyes, pharmaceuticals, rubber processing chemicals, and polymers such as polyurethane. As an integral part of various industries, the price of aniline can have significant economic implications. Over the years, the market for aniline has been subject to fluctuations driven by a range of factors such as raw material costs, demand from end-use industries, global economic conditions, environmental regulations, and geopolitical tensions. Understanding the dynamics behind aniline pricing is crucial for stakeholders in the industries that rely on this chemical, as price trends directly influence their production costs and profitability.
One of the key determinants of aniline prices is the cost of its primary feedstock, benzene. Benzene, a petrochemical derivative, is a vital precursor in the production of aniline. Fluctuations in crude oil prices, which are closely tied to benzene prices, therefore have a direct impact on aniline costs. For instance, a rise in global oil prices typically leads to an increase in benzene prices, which in turn drives up the cost of producing aniline. Conversely, when oil prices decline, benzene prices also tend to drop, potentially lowering the cost of aniline. This close relationship between crude oil, benzene, and aniline prices means that industries using aniline must keep a close watch on global energy markets to better anticipate changes in their own production costs.
Get Real Time Prices for Aniline: https://www.chemanalyst.com/Pricing-data/aniline-27
Another significant factor affecting aniline prices is demand from key industries, particularly the polyurethane and rubber sectors. Aniline is a critical component in the production of methylene diphenyl diisocyanate (MDI), which is a crucial raw material for polyurethane manufacturing. Polyurethane is widely used in various applications such as insulation, furniture, automotive parts, and construction materials. As a result, the demand for aniline often rises in parallel with the growth of these sectors. For example, a boom in construction or automotive manufacturing may drive up the demand for polyurethane, which in turn pushes up the demand for aniline. Similarly, the rubber industry, which uses aniline in the production of rubber-processing chemicals, also exerts influence on the aniline market. Strong demand for tires and other rubber products typically leads to higher aniline consumption, putting upward pressure on prices.
Environmental regulations and sustainability trends are also influencing the aniline market. Aniline production is subject to strict environmental controls due to the hazardous nature of the chemicals involved in its production and its potential environmental impact. Governments and regulatory bodies worldwide are implementing more stringent emission standards and environmental policies, which are increasing production costs for aniline manufacturers. These increased compliance costs are often passed on to consumers in the form of higher aniline prices. Additionally, there is growing pressure on industries to adopt more sustainable and eco-friendly practices, which could potentially lead to changes in the production processes for chemicals like aniline. While the long-term effects of these trends on aniline prices remain to be seen, they are likely to contribute to price volatility in the future.
Geopolitical factors can also create significant shifts in the aniline market. For example, trade wars, sanctions, and other international tensions can disrupt the supply of raw materials like benzene, which in turn impacts aniline production and pricing. Trade policies between major chemical-producing nations, such as the United States, China, and countries in the European Union, can also influence the market. Restrictions on imports or exports of chemical products can lead to supply shortages or surpluses, affecting pricing dynamics. Furthermore, regional instability in areas rich in crude oil can lead to disruptions in the oil supply chain, creating ripple effects across the petrochemical industry, including the production and pricing of aniline.
In addition to these macroeconomic and geopolitical factors, technological advancements and innovations in chemical production are also shaping the aniline market. Improvements in production efficiency, the development of alternative production methods, and innovations in chemical recycling could potentially reduce production costs and, by extension, lower aniline prices. However, these technological advancements often require significant upfront investments, which may lead to temporary increases in prices as companies upgrade their facilities or processes. Over time, as these technologies become more widespread, they may contribute to greater price stability and cost reductions in the aniline market.
In conclusion, aniline prices are influenced by a complex interplay of factors, including raw material costs, demand from key industries, global economic conditions, environmental regulations, and geopolitical tensions. The petrochemical industry’s reliance on crude oil, coupled with fluctuations in supply and demand, creates volatility in aniline pricing. Furthermore, trends such as sustainability initiatives and technological advancements will likely play an increasing role in shaping the future of the aniline market. For industries that depend on aniline, staying informed about these factors is essential to effectively managing costs and optimizing production strategies.
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tanuki-kimono · 1 year ago
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Hello! I love your blog bc it helps me a lot with writing and crafting. Thank you so much for making it!
Are there any patterns that deal with poison? Either in the pattern or in the dyeing process?
Even if there's not I'm glad you and this blog exist 💗
(anon continues) Poison in the dyeing process, like when green dresses were dyed with copper arsenite and it was extremely deadly.
Or a pattern of someone being poisoned, like a historical/folktale.
_______________________________________
Thank you for your kind words <3 I tried to keep things organized but the subject is huge so my of the top of my head answer is going in many directions. I hope you'll still find what you need :3
I'll briefly cover here dyes and (pigments), poison motifs, real life and supernatural poisonings. Buckle up we've got a long post ahead!
____ ABOUT DYE
Tbh I had to think for a moment because I don't recall major "poison" stories linked to dyes in Japan, be it fictionous or real (yet that doesn't mean none ever happened, especially considering Japan's history of industrial poisonings...).
Most gruesome details in the fabric industries I know of are about the horrific life & work conditions of female laborers in spinning mill manufactures (as in many countries, Japan industrialization process was ghastly...).
If potters and dyers had excellent practical knowledge, chemistry as a science officially started kind of late in Japan as it was not a local interest, and as rangaku (study of Western knowledge) often favored other subjects like medicine or warfare.
So, until the introduction of aniline dyes (not textile related, but this article about the use of synthetic dyes in ukiyoe printing is super interesting), Japanese worked with "natural" dyes, like ai (indigo) which was the most used during Edo period.
As with any ingredient, being natural doesn't equal safety. Some mixtures could be quite potent/foul, and process could be dangerous. Plants and minerals base ingredients could be toxic (cinnabar and orpiments were then used as paint pigments, and lead could be found in make up), as were mordants used to set colors.
If you want to easily overview which ingredients were used to create colors, I recommand browsing [Irocore] which presents colors with explanation in English in their database (pick a color then scroll down).
Not related to poison, but ai (indigo) is traditionally prepared in aigame/enormous floor set jars I find utterly terrifying:
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I don't know if this tidbit can help you, but some dyes and mordants actually damage the fabric overtime, leaving them brittle (silk desintegrates after a while which is a huge issue in textile conservation).
____ POISON MOTIFS
Concerning "poison" themed patterns, none would be actually used traditionally on a kimono or an obi beside novelty items ^^;
For example, many plants can be toxic, but I don't see them set as pattern for this property - they'd rather refer to a poem, be a symbol of the passing of seasons etc. Fuji (wisteria) can be quite harmful, yet it's a beloved traditional motif in Japan.
You have much more chances to find pattern with kujaku (peacock) which are thought to be impervious to poison in Buddhism, than say venomous mukade (centipede) or the horrific ômukade (a youkai I covered in a folktale).
Snakes like the habu and mamushi are dangerous, but if used as pattern snakes are most often auspicious and linked to rain dragons or goddess Benzaiten.
If you squint hard, toxic fugu could count as poison pattern, but such a seasonal delicacy as a motif would mostly underline wealth (as those fishes are pretty expensive as they are prepared by specialized chefs), a kind of carpe diem spirit, or just a fun pattern because fugu balloon shape is cute ;)
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____ POISON MURDERS
Poisoning was certainly a thing is Japan since ancient times (see kodoku sorcery). Poisons were for example used in some fishing techniques.
I am pretty sure some kuge and buke were disposed of this way - even thought poison was seen as a coward weapon (hence why its supposed to be only used by shinobi/ninja - even if this "fact" is opened to a lot of discussions!).
During Edo period, such murders made up the news and penny dreadful-like illustrated books favored by city dwellers in need of a fright. But those stories didn't pass to posterity beside cheap ukiyoe plates, and were never as popular as some shinjû (double suicides) or ghost revenges like poor poisoned and murdered Oiwa's:
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____ SUPERNATURAL POISONINGS
If your poison is both physical and metaphorical illbeing, mushi could be your guys ^^ This term actually covers everything small and crawling, from real worms and insects, to anything inside one's body causing distress - be it a parasite, an unknown illness, an overboard emotion, a curse etc. If you've read/seen Mushishi you've got what I mean:
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In fact any illness-causing being could count as poison-bringer. Hôsôkami (smallpox demon) was truly feared by all before vaccination was introduced in Japan.
Finally, continuing the supernatural poisoning trail, best girl is probably legendary fox witch Tamamo no Mae who among other terrible deeds made emperor Konoe fall sick with poisonous miasma (some version of the story attributes the disease to another monster, the nue). I covered a similar murderous kitsune folktale here.
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mitivy · 2 years ago
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CAS 121-72-2 N,N-Dimethyl-m-toluidine Manufacturer/High quality/Best price/In stock have REACH Certification
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Quick Details Product name:N,N-DIMETHYL-M-TOLUIDINE CAS:121-72-2 Molecular formula:C9H13N Molecular weight:135.21 EINECS No.:204-495-6 Purity:≥99% Brand:MIT -IVY INDUSTRY CO.,LTD Other names:3-Dimethylaminotoluene;N,N,m-trimethylaniline;N,N-DiMethyl-M-toluidine;Dimetil-m-toluidina;N,N,3-Trimethylaniline;Benzene, 1-(dimethylamino)-3-methyl- Appearance:Pale yellow oily liquid Port: any port in china Packing:according to the clients requirement Storage: Store in dry, dark and ventilated place. Transportation: by sea or by air payment methods: L/C, T/T, D/A, D/P, O/A, paypal, western union etc.accept all payment. Application for organic synthesis CERTIFICATE OF ANALYSIS Product: Dibasic Ester CAS:121-72-2 Inspect Date: 02.18.2022 Quantity: 22mt Batch No.:MITSC22011046 检测项目 Test Item And Results Grade AR CP N,N-dimethylaniline ≥% 99.00% 98.50% Aniline ≤% : 0.30 0.50 N-methylaniline ≤% : 0.50 0.80 Others and moisture≤ % : 0.20 0.20 N,N-DIMETHYL-M-TOLUIDINE Chemical Properties Melting point -15 °C Boiling point 215 °C(lit.) density 0.93 g/mL at 25 °C(lit.) refractive index n20/D 1.55(lit.) Fp 185 °F pka 5.22±0.10(Predicted) form Liquid color PalPale yellow oily liquid BRN 1422766 CAS DataBase Reference 121-72-2(CAS DataBase Reference) EPA Substance Registry System Benzenamine, N,N,3-trimethyl- (121-72-2) Superiority 1.High quality with competitive price: We are manufacturer and can provide high quality products with factory price. 2.Fast and safe delivery ① Parcels can be sent out within 48 hours after payment. Tracking number is available. ②Secure and discreet shipment. You have various choices of transportation methods. 3.We have clients throughout the world. ① Professional service and rich experience make customers feel at ease, adequate stock and fast delivery meet your desire. ②Market feedback and goods feedback are appreciated, meeting customers's requirement is our responsibility. ③High quality, competitive price, fast delivery, first-class service gain the trust and praise from the customers. Company Information MIT-IVY INDUSTRY CO.,LTD is a manufacturer and exporter of fine chemical dyes & pharmaceutical intermediates in China. Mainly produce aniline series products and chlorine series products. We are a young company full of vitality and vitality. The company has a group of energetic, well-trained employees and strong technical research and development capabilities. We specialize in the production, development and sales of API intermediates, fine chemicals and plant extracts. Relying on advanced equipment and strict management, adhere to the business philosophy of "openness, tolerance, innovation, and sharing" to create a win-win cooperationplatform.Everything comes from innovation, it is our philosophy ! If you are interested in getting more quotations, please add WHATSAPP:0086-13805212761 or E-MAIL:[email protected] Main products MIT-IVYINDUSTRYCO.,LTDMit-Ivy is a well-known fine chemicals and pharmaceutical intermediates manufacturer with strong R&D support in China. Mainly involved Aniline, Chlorine products. Payment:DA 60 DAYS TEL:008619961957599   E-MAIL:[email protected] 产品 Product CAS N,N-二甲基-1,4-苯二胺 N,N-Dimethyl-1,4-phenylenediamine DMPD 99-98-9 N,N-二甲基苄胺 N,N-Dimethylbenzylamine  BDMA 103-83-3 N,N-二甲基甲酰胺   N,N-Dimethylformamide  DMF .68-12-2 N,N-二甲基甲酰胺二甲缩醛 DMF-DMA N,N-Dimethylformamidedimethyl acetal  (DMF-DMA) 4637-24-5 N,N-二甲基乙酰胺 N,N-Dimethylacetamide   DMAC 127-19-5 N,N-二乙基间甲苯甲酰胺 避蚊胺 N,N-diethyl-m-toluamide    DEET 134-62-3 N,N-二乙基羟胺 N,N-Diethylhydroxylamine  DEHA 3710-84-7 N-甲基-N-羟乙基苯胺 2-(N-甲基苯胺)乙醇 2-(N-methylanilino)ethanol 93-90-3 N-甲基吡咯烷酮 N-methylpyrrolidone 872-50-4 N,N-二甲基苯胺 N,N-Dimethylaniline   DMA 121-69-7 N,N-二甲基对甲苯胺 N,N-Dimethyl-p-toluidine  DMPT 99-97-8 N,N-二甲基邻甲苯胺 N,N-Dimethyl-o-toluidine   DMOT 609-72-3 N,N-二乙基苯胺 N,N-Diethylaniline 91-66-7 N,N-二乙基间甲苯胺 N,N-Diethyl-m-toluidine 91-67-8 N,N-二羟乙基苯胺 N,N-Dihydroxyethylaniline   PDEA 120-07-0 N-乙基间甲苯胺 N-乙基-3-甲基苯胺 N-Ethyl-m-toluidine/N-Ethyl-3-methylaniline 102-27-2 N-乙基-N-氰乙基苯胺 3-(N-ethylanilino)propiononitrile 148-87-8 N-乙基-N-羟乙基苯胺 N-Ethyl-N-hydroxyethylaniline 92-50-2 N-乙基-N-苄基苯胺 乙基苄基苯胺; N-苄基-N-乙基苯胺 N-ethyl-N-phenylbenzenemethanamine 92-59-1 N-乙基-N-氰乙基间甲苯胺 N-2-cyanoethyl-N-ethyl-m-toluidine 148-69-6 N-乙基-N-苄基间甲苯胺 N-Benzyl-N-ethyl-m-toluidine 119-94-8 N-乙基邻甲苯胺 N-Ethyl-o-toluidine/2-Ethylaminotoluene 94-68-8 N-乙基苯胺 N-Ethylaniline 103-69-5 N-甲基苯胺 N-Methylaniline 100-61-8 N,N-二甲基-间甲基苯胺 N,N-DIMETHYL-M-TOLUIDINE 121-72-2 N-甲基二苯胺 N-Methyldiphenylamine 552-82-9 N-甲基-邻甲基苯胺 N-METHYL-O-TOLUIDINE 611-21-2 N-甲基-对甲基苯胺 N-METHYL-P-TOLUIDINE 623-08-5 4-甲基-N-苯基苯胺 N-PHENYL-P-TOLUIDINE 620-84-8 N-异丙基苯胺 N-ISOPROPYLANILINE 768-52-5 N,N-二氰乙基苯胺 N,N-Dicyanoethylaniline 1555-66-4 N,N-二羟乙基-对甲基苯胺 N,N-DIHYDROXYETHYL-P-TOLUIDINEDHEPT .3077-12-1 N-乙基-2-硝基苯胺 N-Ethyl-2-Nitro-Benzenamine 10112-15-9 2,4-二氯苯胺 2,4Dichloroaniline 554-00-7 N-(2-羟乙基)乙二胺 AEEA 111-41-1 1,3-二甲基-2-咪唑啉酮N,N-二甲基亚乙基脲1,3-二甲基-2-咪唑啉酮(DMI) 1,3-Dimethyl-2-imidazolidinone  DMI N,N'-dimethylimidazolidinone 80-73-9 N,N-二苄基羟胺 N,N-Dibenzylhydroxylamine 621-07-8 对甲苯胺 P-Toluidine  PT 106-49-0 邻甲苯胺 O-Toluidine  OT 95-53-4 二乙基乙醇胺 DEEA;DEAE 100-37-8 甲萘胺 AlphaNaphthylamine 134-32-7 间二氯苯 1,3-Dichlorobenzene   MDCB 541-73-1 间甲苯胺 M-Toluidine  MT 108-44-1 间苯二胺 M-PHENYLENEDIAMINE  MPDA 108-45-2 多乙烯多胺 PEPA 68131-73-7 二乙烯三胺(DETA) Diethylenetriamine  DETA 111-40-0 三乙烯二胺 Triethylenediamine 280-57-9 三乙烯四胺 TriethylenetetramineTETA 112-24-3 四乙烯五胺 TEPA 112-57-2 Read the full article
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researge · 3 years ago
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Global Aniline Market Study, 2014-2030
Analysis of the ANILINE MARKET
A comprehensive market study on the ANILINE MARKET Market provides an overview of the demand-supply and consumption patterns of Aniline Market across six different regions. This market study describes the Aniline Market Market, with focus on major countries and their subsequent demand for different segments. This report on the global Aniline Market market offers a complete overview of various factors impacting positively or negatively on the overall growth of the Keyword market.
Distinct market estimations and forecasts are presented in this comprehensive Aniline Market market study. Various secondary sources such as encyclopedia, directories, technical handbooks, company annual reports, industry association publications, magazine articles, world economic outlook, and databases have been referred to identify and collect information useful for this extensive commercial study of Aniline Market. Moreover, both micro-economic and macro-economic factors have been considered to arrive at growth rate and size estimation in the short and long-term forecast. Prismane Consulting supplements this with primary research. The primary sources are experts from related industries and suppliers. For market forecast, and production / plant operating rates, we assume numerous reasons that drive production including new production capacity is brought on-stream, Planned, and unplanned outages of existing capacities and Subdued demand from end-use applications.
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The current COVID-19 pandemic is causing high and rising human costs worldwide. Isolation, nationwide lockdowns, and widespread closures to stop the spread of the virus have severely impacted the economy. As a result, the global economy declined by an around of -3.5% in 2020, much worse and below the 2008-2009 subprime mortgage crisis. The global economy has grown between 5% and 6% in 2021 and 2022 due to the normalization brought in the regional economic activities on back of the fading COVID-19 pandemic and stability in the crude oil prices. The economic activities have been aided by the new policies surrounding financial, agricultural, industrial, and manufacturing sector. The report on Aniline Market Market studies and outlines the impact of COVID-19 and presents the forecasts for the short, mid and long-term. The report also covers Macro-economic factors like GDP, Population and World Economic integration, Economic & Energy Outlook, Industry & Policy Developments, End-use Industry / Applications Market, Reasoning & Analysis, Insightful Commentary, Market Review, Comparative Analysis, Latest Trends and market developments, Key players, Strategic Issues and Recommendations, Business Opportunity Assessment and much more.
Global Aniline Demand Supply Analysis By Application,
By End Use Industry (Volume, Value) (2014–2030)
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mohitmaximize · 3 years ago
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Liquid Emulsion Market In-Depth Competitive Strategies Analysis and Precise Outlook 2021-2027
Introduction of Liquid Emulsion Market :
Liquid Emulsion is a mixture of two liquids that are unmixable in normal conditions. Liquid Emulsion contains tiny particles of one liquid attached to another liquid it is mixed with. Stability is the most important factor as the commercial application of Liquid Emulsion depends on it.
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The research report includes the current Liquid Emulsion Market size of the market and its growth rates based on 5-year statistics and records with company summary of Key players:
• Western Emulsions • Pexichem • Silitex • SM-SERVICE Ltd. • Lutz Pumpen GmbH • Persia Paraffin • Globcore Private Company • COPLA • Burkle GmbH • Friedrich August Picard GmbH & Co. KG • DEUREX AG • Linden Chemie Hellenthal GmbH & Co. KG • Walther-Prazision • Bakhtar Bitumen Industrial Group • Grande Gloria • PIGMENT • Sun Joo Chemical Co. • Dadi Plast • SPI Internet Marketing SDN. BHD. • Shreya Aniline Industries Pvt. Ltd.
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press-release-dash · 3 years ago
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Benzene and Its Derivatives Market 2021 | Business Opportunity, Growth Strategies & Forecast Report By 2027
The Global Benzene And Its Derivatives Market Report, in its latest update, highlights the significant impacts and the recent strategical changes under the present socio-economic scenario. The Benzene and Its Derivatives Market industry growth avenues are deeply supported by exhaustive research by the top analysts of the industry. The report starts with the executive summary, followed by a value chain and marketing channels study. The report then estimates the CAGR and market revenue of the global and regional segments.
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Base Year: 2020
Estimated Year: 2021
Forecast Till: 2027
The report classifies the market into different segments based on type and product. These segments are studied in detail, incorporating the market estimates and forecasts at regional and country levels. The segment analysis is helpful in understanding the growth areas and potential opportunities of the market.
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Total S.A.
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Saudi Basic Industries Corporation
China National Petroleum Corporation
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By Derivatives:
Ethylbenzene
Cumene
Cyclohaxane
Aniline
Chlorobenzene
Alkylbenzene
Nitrobenzene
Phenol
Toluene
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Specialty Chemicals
Resins, Paints & Coatings
Foams & Films
Polycarbonate
Polyurethane
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North America (USA, Canada, and Mexico)
Europe (Germany, UK, France, Italy, Russia, Spain, Rest of Europe)
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The Middle East and Africa (Saudi Arabia, UAE, Israel, South Africa, Rest of the Middle East and Africa)
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excellreports-blog · 6 years ago
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Global Aniline-2,5-disulfonic Acid Monosodium Salt Market Key Country Analysis and Regional Forecast 2014-2024
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Excell Reports include new market research report “Aniline-2,5-disulfonic Acid Monosodium Salt Market” to its huge collection of research reports at the global and regional level. This report presents the worldwide Aniline-2,5-disulfonic Acid Monosodium Salt market size (value, Capacity, production and consumption), splits the breakdown (data status 2014-2019 and forecast to 2024), by manufacturers, region, type and application. The global Aniline-2,5-disulfonic Acid Monosodium Salt market is expected to grow at a significant CAGR during the forecast period. A stringent emission regulation is anticipated to drive the growth prospects for the market for the coming years.
The Global Aniline-2,5-disulfonic Acid Monosodium Salt Market to reach USD xx Million by 2014. Global Aniline-2,5-disulfonic Acid Monosodium Salt Market valued approximately USD xx million in 2018 is anticipated to grow with a healthy growth rate of more than xx % over the forecast period 2019-2024.This report provides in depth study of “Global Aniline-2,5-disulfonic Acid Monosodium Salt Market” using SWOT analysis Strength, Weakness, Opportunities and Threat to the organization. The report also studies the global market status, competitive landscape, market share, market drivers, opportunities and challenges, growth rate, future trends, sales channels, distributors, PEST and Porter's Five Forces Analysis. The report also focuses on the consumption, production, sales price, and capacity analysis in different geographies. Any special requirements about this report, please let us know and we can provide custom report.
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The global Aniline-2,5-disulfonic Acid Monosodium Salt Market report, studies the market size, trends, ad forecasts for the period 2014 to 2024. The market is categorized on the basis of product, type, application, and end-use. The study also focuses on key regions including North America (U.S., Canada, and Mexico), South America (Brazil, Argentina etc.), Europe (Germany, U.K., France, Italy, Russia, and Spain etc.), Asia Pacific, and Middle East & Africa (Saudi Arabia, South Africa etc.), Japan, China, India.
The Report Highlights:•
Overview of the industry, including definitions, classification and segmentation on the basis of application, product, geography and competitive market share
All-inclusive assessment of the market
Industry validated and statistically-supported market data
Facts and statistics
Business outlook and developments
Market forecasts for the projected time frame
Qualitative analyses (including SWOT analysis), product profiles and commercial developments.
Key participants, company profiles, market trends, and business strategies
The report is designed to incorporate both qualitative and quantitative aspects of the industry.
Some Important Chapter Covered In Aniline-2,5-disulfonic Acid Monosodium Salt Market Research are :
Global Aniline-2,5-disulfonic Acid Monosodium Salt Market Definition and Scope
Research Methodology
Executive Summary
Global Aniline-2,5-disulfonic Acid Monosodium Salt Market Dynamics
Global Aniline-2,5-disulfonic Acid Monosodium Salt Market Industry Analysis
Global Aniline-2,5-disulfonic Acid Monosodium Salt Market, By Product
Global Aniline-2,5-disulfonic Acid Monosodium Salt Market by Technology
Global Aniline-2,5-disulfonic Acid Monosodium Salt Market, By Application
Global Aniline-2,5-disulfonic Acid Monosodium Salt Market by End User
Global Aniline-2,5-disulfonic Acid Monosodium Salt Market, by Regional Analysis
Company Market Share (Subject to Data Availability)
Research Process
Competitive Intelligence
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Global Aniline-2,5-disulfonic Acid Monosodium Salt Market- By Type & Application (detailed segments and sub-segment) :
Market Size Split By Product :
Market Size Split By Delivery Mode  :
Market Size Split By End-Use :
Market Size Split By Regions
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Japan
China
India
South East Asia
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chemanalystdata · 5 months ago
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Aniline Prices Trend | Pricing | Database | Index | News | Chart
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 Aniline prices are a crucial indicator in the chemical and manufacturing sectors, impacting a wide range of industries globally. Aniline, an aromatic amine derived from benzene, serves as a fundamental building block in the production of numerous chemicals, pharmaceuticals, and dyes. Its pricing dynamics are influenced by several key factors, primarily the cost and availability of raw materials such as benzene and nitric acid, which are essential in its synthesis. Fluctuations in crude oil prices also play a significant role, as they directly affect the cost of benzene, a primary feedstock in aniline production.
Global demand trends heavily influence aniline prices, with the chemical being integral to the manufacture of polyurethane foams, rubber processing chemicals, and pharmaceuticals. The automotive and construction industries, major consumers of polyurethane foams, contribute significantly to aniline consumption. Economic cycles and regional industrial activity levels further impact demand, creating periodic surges or declines in prices.
Environmental regulations and safety standards governing the handling and production of aniline can also influence pricing. Stringent regulations often require manufacturers to invest in costly compliance measures, which can impact overall production costs and subsequently affect pricing strategies. Additionally, geopolitical factors, such as trade policies and sanctions, can disrupt supply chains and influence global market dynamics, thereby exerting indirect pressure on aniline prices.
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Market competition among manufacturers and distributors further shapes pricing trends. Aniline production is concentrated among a limited number of global players, with major producers strategically located in regions rich in benzene and equipped with advanced chemical manufacturing capabilities. This concentration can lead to pricing strategies influenced by capacity utilization rates, inventory levels, and regional supply-demand imbalances.
Price volatility in the aniline market necessitates robust risk management strategies for stakeholders across the supply chain. Producers often engage in hedging activities to mitigate exposure to raw material price fluctuations, employing futures contracts and other financial instruments to stabilize revenue streams. End-users, meanwhile, may negotiate long-term supply agreements or seek alternative materials to manage procurement risks associated with price variability.
Technological advancements in aniline production processes also impact pricing dynamics. Innovations aimed at improving production efficiency, reducing energy consumption, or enhancing product quality can lead to cost savings that may be passed on to consumers through competitive pricing strategies. Conversely, investments in sustainable manufacturing practices, such as green chemistry initiatives and renewable energy integration, may initially increase production costs but can bolster market competitiveness and long-term profitability.
Consumer preferences for environmentally friendly products and sustainable sourcing practices are increasingly influencing market dynamics and pricing strategies in the aniline sector. Manufacturers and distributors are responding by diversifying their product portfolios to include bio-based or recycled aniline derivatives, leveraging market demand for eco-friendly alternatives.
In conclusion, aniline prices are shaped by a complex interplay of factors ranging from raw material costs and global demand trends to regulatory compliance and technological innovation. Stakeholders navigating the aniline market must remain vigilant of these dynamics to effectively manage risks and capitalize on emerging opportunities. As industries continue to evolve and consumer preferences shift towards sustainability, the future trajectory of aniline prices will likely reflect broader trends in environmental stewardship and resource efficiency across the global chemical landscape.
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vijaykurane · 4 years ago
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Optical Brighteners Market  Analysis, Size, Latest Development in Manufacturing Technology, Cost Structure and Forecasts to 2027
Optical Brighteners Market Report is a comprehensive study that offers in-depth details about the Optical Brighteners market. The study explains in detail about the current and changing market trends along with an analysis of the individual segments of the market. The report also provides a detailed analysis of the key players operating in the industry. Analysis of the Global Optical Brighteners Market includes a market-based outline and provides detail about the current and futuristic outlook of the market.
The global Optical Brighteners market research report is a comprehensive study of the industry and has been recently added by Reports and Data to its extensive database. This informative research report is furnished with the latest happenings of the world in regards to the coronavirus pandemic. The report provides a detailed analysis of the impact of the pandemic and the economic scenario of the industry. The present and future impacts of the COVID-19 pandemic on the overall market are also covered in the report.
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Top players operating in the market and profiled in this report are Clariant AG, Huntsman Corporation, Keystone Aniline Corporation, 3V Corporation, BASF SE, Aron Universal Ltd., Republic Powdered Metals, Deepak Nitrite Limited, Brilliant Colors Inc., The Fong Min International Co. Ltd., among others.
For the purpose of this report, Reports and Data have segmented the global optical brighteners market on the basis of application, distribution channel, industry verticals, and region:
Application Outlook (Volume, Kilo Tons; 2017-2027, Revenue, USD Million; 2017-2027)
Paper
Fabrics
Soaps     & Detergents
Plastics     & Synthetics
Others
Distribution Channel Outlook (Volume, Kilo Tons; 2017-2027, Revenue, USD Million; 2017-2027)
Online
Offline
Industry Vertical Outlook (Volume, Kilo Tons; 2017-2027, Revenue, USD Million; 2017-2027)
Consumer     Goods
Security     & Safety
Textile
Packaging
Others
Regional Outlook (Volume, Kilo Tons; 2017-2027, Revenue, USD Million; 2017-2027)
North     America
Europe
Asia     Pacific
Latin     America
MEA
Key questions addressed in the report are:
·         What is the estimated market size and share in the forecast period?
·         What are the key driving factors of the Global Optical Brighteners market?
·         What are the risks and challenges the companies will have to face in the forecast period?
·         What are the emerging trends and how they influence market growth?
·         What are the opportunities for expansion of the global Optical Brighteners market?
·         Which region is expected to dominate the market during the forecast period?
The report covers extensive analysis of the regions where the industry operates. According to the regional analysis, the market is segmented into key geographical areas such as North America, Latin America, Europe, Asia Pacific, and Middle East & Africa. The regions have been examined on the basis of the production and manufacturing capacities and costs. Research analysts have formulated this report through extensive primary and secondary research on the regional segmentation.
The report offers a panoramic view of the competitive landscape of the Global Optical Brighteners Market. The report covers comprehensive data about current and recent trends, technological advancements, and methodologies. The research document offers a detailed and concise data to assist in making strategic business decisions. The report contains a graphical representation of the important statistical data in the form of tables, graphs, charts, figures, and diagrams.
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The detailed analysis of the global Optical Brighteners market has been formulated with the help of advanced analytical tools such as SWOT Analysis, Porter’s Five Forces Analysis, feasibility analysis, and investment return analysis. To sum up, everything that has been stated, the report offers an accurate estimation and reliable evaluation of the global Optical Brighteners market to provide insights into the business sphere.
Highlights of the TOC of the report:
·         Market overview
·         Economic impact on the industry
·         COVID-19 impact analysis
·         Competitive landscape
·         Production and revenue estimation by Region
·         Production, Consumption, Export/Import by Region
·         Production, revenue, price trend by Type and Application
·         Manufacturing and Production Cost Analysis
·         Industrial Chain Analysis
·         Market Forecast till 2027
Benefits of the Global Optical Brighteners Market:
·         Analysis of the changing competitive dynamics of the industry
·         Futuristic outlook on factors driving and restraining the growth of the market
·         An in-depth 8-year forecast along with predictions of market growth
·         Comprehensive analysis of the key product segments and their growth estimation for easy understanding
·         Provides a competitive edge to the companies operating in the market
·         Strategic recommendations to the established companies as well as new entrants in the industry
·         In-depth analysis of market segments and complete insights of the market to assist in formulating investment strategies
Go through our meticulously drafted TOC, Tables, Statistics, Charts, and Company profiles: https://www.reportsanddata.com/report-detail/optical-brighteners-market
Thank you for reading our report. Customization of the report is available as per requirements. Please connect with us and our team will ensure you get the report well-suited to your needs.
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marketreports3 · 5 years ago
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Research On World Polyacrylamide Copolymer Market Report 2022
World Polyacrylamide Copolymer Market Research Report 2022 (covering USA, Europe, China, Japan, India, South East Asia and etc), is an informative market report offered by DecisionDatabases.com.
Polyacrylamide Copolymer market research report provides the newest industry data and industry future trends, allowing you to identify the products and end users driving Revenue growth and profitability.
The industry report lists the leading competitors and provides the insights strategic industry Analysis of the key factors influencing the market.
The report includes the forecasts, Analysis and discussion of important industry trends, market size, market share estimates and profiles of the leading industry Players.
Browse the complete report and table of contents @ https://www.decisiondatabases.com/ip/22446-polyacrylamide-copolymer-market-analysis-report
The Players mentioned in our report
Evonik
BASF
Sumitomo Seika Chemicals
SDP Global
Formosa Plastics Corporation
LG Chem
Nippon Shokubai
Global Polyacrylamide Copolymer Market: Product Segment Analysis
Cationic type
Anionic type
Amphoteric type
Global Polyacrylamide Copolymer Market: Application Segment Analysis
Personal Care
Agriculture
Medical
Industrial
Others
Global Polyacrylamide Copolymer Market: Regional Segment Analysis
USA
Europe
Japan
China
India
South East Asia
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There are 10 Chapters to deeply display the World Polyacrylamide Copolymer market. Chapter 1 About the Polyacrylamide Copolymer Industry Chapter 2 World Market Competition Landscape Chapter 3 World Polyacrylamide Copolymer Market share Chapter 4 Supply Chain Analysis Chapter 5 Company Profiles Chapter 6 Globalisation & Trade Chapter 7 Distributors and Customers Chapter 8 Import, Export, Consumption and Consumption Value by Major Countries Chapter 9 World Polyacrylamide Copolymer Market Forecast through 2022 Chapter 10 Key success factors and Market Overview
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Other Reports by DecisionDatabases.com:
World Aniline Market Research Report 2022 (covering USA, Europe, China, Japan, India, South East Asia and etc)
World Magnesium Diboride Market Research Report 2022 (covering USA, Europe, China, Japan, India, South East Asia and etc)
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Our expert research analysts have been trained to map client’s research requirements to the correct research resource leading to a distinctive edge over its competitors. We provide intellectual, precise and meaningful data at a lightning speed.
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researge · 3 years ago
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Global Nitrobenzene Market Study Report 2014-2030
Analysis of the NITROBENZENE MARKET
A comprehensive market study on the NITROBENZENE MARKET Market provides an overview of the demand-supply and consumption patterns of Nitrobenzene Market across six different regions. This market study describes the Nitrobenzene Market Market, with focus on major countries and their subsequent demand for different segments. This report on the global Nitrobenzene Market market offers a complete overview of various factors impacting positively or negatively on the overall growth of the Keyword market.
Distinct market estimations and forecasts are presented in this comprehensive Nitrobenzene Market market study. Various secondary sources such as encyclopedia, directories, technical handbooks, company annual reports, industry association publications, magazine articles, world economic outlook, and databases have been referred to identify and collect information useful for this extensive commercial study of Nitrobenzene Market. Moreover, both micro-economic and macro-economic factors have been considered to arrive at growth rate and size estimation in the short and long-term forecast. Prismane Consulting supplements this with primary research. The primary sources are experts from related industries and suppliers. For market forecast, and production / plant operating rates, we assume numerous reasons that drive production including new production capacity is brought on-stream, Planned, and unplanned outages of existing capacities and Subdued demand from end-use applications.
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The current COVID-19 pandemic is causing high and rising human costs worldwide. Isolation, nationwide lockdowns, and widespread closures to stop the spread of the virus have severely impacted the economy. As a result, the global economy declined by an around of -3.5% in 2020, much worse and below the 2008-2009 subprime mortgage crisis. The global economy has grown between 5% and 6% in 2021 and 2022 due to the normalization brought in the regional economic activities on back of the fading COVID-19 pandemic and stability in the crude oil prices. The economic activities have been aided by the new policies surrounding financial, agricultural, industrial, and manufacturing sector. The report on Nitrobenzene Market Market studies and outlines the impact of COVID-19 and presents the forecasts for the short, mid and long-term. The report also covers Macro-economic factors like GDP, Population and World Economic integration, Economic & Energy Outlook, Industry & Policy Developments, End-use Industry / Applications Market, Reasoning & Analysis, Insightful Commentary, Market Review, Comparative Analysis, Latest Trends and market developments, Key players, Strategic Issues and Recommendations, Business Opportunity Assessment and much more.
Global Nitrobenzene Demand By Application,
By End-Use Industry, (Volume, Value) (2014–2030)
Strategic Issues
Demand Analysis and Forecast (2014 – 2030)
Demand
Demand Growth Rate (%)
Driving Force Analysis
Global Nitrobenzene Market, By Application
Aniline
Pesticides
Synthetic Rubber
Others
Global Nitrobenzene Market, By End-Use Industry
Agriculture
Pharmaceuticals
Automotive
Cosmetics
Construction
Others
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Real-world industry, consulting, and market research experience
Average work experience of 10+ years
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Prismane Consulting is a unique global boutique consulting firm with an Indian origin. We present ourselves to the world outside providing management, economic and technical expertise to improve customer engagement, boost operational efficiency, reduce costs, and achieve superior business results. Prismane Consulting serves leading businesses in the field of Chemicals, Petrochemicals, Polymers, Materials, Environment and Energy. We have been advising clients on their key strategic issues solving their toughest and most critical business problems. To know more write to us on [email protected]
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latestmarketresearch · 5 years ago
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Thermoplastic Polyurethane (TPU) Films Market Is Thriving Worldwide From 2019 To 2025
JUNE 17, 2019: The global thermoplastic polyurethane films market size is anticipated to reach USD 548.1 million by 2025 expanding at a CAGR of 6.1%, according to a new report by Radiant Insights, Inc. Increasing healthcare spending coupled with growing automotive sector is projected to drive the market. Asia Pacific is the dominant regional market due to the strong presence of major companies, such as Huntsman, Nippon, and Lubrizol, with large production capacities. Asia Pacific is also the leading consumer of TPU films due to growing automotive, construction, and energy sectors.
To Request A Sample Copy Of This Report @:   https://www.radiantinsights.com/research/thermoplastics-polyurethane-tpu-films-market/request-sample
Major manufacturers based out of North America and Europe have set up wide distribution networks in developing countries by acquiring regional companies. This is also likely to have a positive impact on the region's growth. Moreover, reduced reliance on export to Western Europe and North America is projected to increase the investments and trade in the local markets of Asia Pacific. Availability of cheap labor and easy access to finance are also likely to support the domestic market growth.
To Browse Full Research Report @: https://www.radiantinsights.com/research/thermoplastics-polyurethane-tpu-films-market
In addition, growing population and rising income levels are anticipated to fuel the development further. Rising global aniline prices have impacted the profitability of TPU films producers as there is intense competition in the global market. Due to the presence of a large number of suppliers, buyers have the advantage of low switching cost; therefore, manufacturers cannot afford to lose out on their customers and in the process jeopardize their profitability. Bio-based alternatives of TPU are capable of replacing the synthetic (petroleum-based) TPU.
Bio-based TPUs are widely used in almost every end-use industry where synthetic product is being used. Bio-based films provide a clean solution to the growing demand for Thermoplastic Elastomers (TPEs). Wearables in the medical field are expected to provide many opportunities over the coming years. As per the data published by DuPont, conductors, printed on TPU films show good results. Increasing healthcare spending coupled with rising awareness are likely to assist the market growth of wearable technology, thereby developing new opportunity for the product.
Further key findings from the study suggest:
• Automotive is anticipated to be the largest application segment of the TPU films market during the forecast period on account of growing demand for vehicles
• Aerospace is also predicted to witness a steady growth due to increasing demand from emerging countries, such as China and India
• Asia Pacific was the second-largest regional market and accounted for 29.6% of revenue share in 2018 owing to the rapid development of automotive and construction sectors in the region
• The 3M Company, Bayer Material Science, Huntsman Corp., Permali Gloucester Ltd. are the major companies in the global market
• Most of these companies emphasize on their R&D activities for novel product development
Table of Contents
Chapter 1 Methodology & Scope
1.1 Market Segmentation & Scope
1.2 Market Definition
1.3 List of data sources
1.4 Information procurement
1.5 Information analysis
1.6 Market formulation & data visualization
1.7 Data validation & publishing
Chapter 2 Executive Summary
2.1 Market Outlook
2.2 Segmental Outlook
2.3 Competitive Insights
Chapter 3 Thermoplastic Polyurethane (TPU) Films Market Variables, Trends & Scope
3.1 Market outlook
3.1.1 Global Thermoplastic Polyurethane (TPU) Films Market Outlook
3.2 Penetration & growth prospect mapping
3.3 Industry value chain analysis
3.3.1 Raw material trends
3.3.2 Manufacturing trends & technology overview
3.3.3 Sales channel analysis
3.4 Regulatory Framework
3.5 Market Dynamics
3.5.1 Market driver analysis
3.5.1.1 Rising penetration in automobile industry
3.5.1.2 Increasing construction spending mainly in Asia Pacific
3.5.2 Market restraint analysis
3.5.3 Industry challenges
3.6 Thermoplastic Polyurethane (TPU) Films Market - Business environment analysis
3.6.1 Industry analysis - Porter's
3.6.2 PESTEL analysis
3.6.3 Major deals & strategic alliances analysis
3.7 Market Entry Scenario
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Thermoplastic Polyurethane (TPU) Films Market
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nikcamhael · 6 years ago
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Dead medium: The Copy Press, the Hektograph, Edison's Electric Pen, Zuccato's Trypograph, Gestetner's Cyclostyle, Dick-Edison Mimeograph, the Gammeter aka Multigraph, the Varityper, the IBM Selectric
From: [email protected] (Darryl Rehr)
Source(s): The Office Magazine; Early Typewriter Collectors' Association
Bruce,
Here is another submission for Dead Media Database. This is an article by me and originally published in THE OFFICE magazine.
EARLY DESKTOP PUBLISHING
Desktop Publishing is a phenomenon of the late 20th century. Modern products have made it possible for any office staff to produce material that looks professionally printed. However, office managers have had other kinds of small-scale publishing methods available to them for more than a century.
The words used to describe them were more modest, of course. At first, they talked about office "copying," and later they called it "duplicating." Only today, with computers, coupled with high-definition laser output has the technology grown up enough to earn the term "Desktop Publishing."
Desktop Publishing's first century began in 1856, when British chemist William Perkins discovered the first synthetic dye, aniline purple. This dye pointed the way to a wide range of new inks, including "copying ink" used in the first practical method of reproducing business documents.
An original written with copying ink was placed against a moistened sheet of tissue, the two were pressed together in a massive iron press, and a copy would appear on the tissue. Since the copy was backwards, the tissue had to be held up to the light to be read. The copy press became a fixture in every Victorian office. Today, they are sold in antique shops as "book presses," their true function long forgotten.
Aniline dyes also made another copying process possible. It was invented during the 1870's, and although it was sold under many brand names, generically it was known as the "hektograph." The device used a stiff gelatin pad coupled with special hektographic ink made with aniline dye. A document written with the ink was pressed to the pad. The gelatin absorbed the ink after a few minutes, and the original was removed. Blank sheets were then pressed against the pad, and the gelatin released a little of the ink each time, producing a positive copy. The hektograph was good for about 50 copies. 20th-century spirit duplicators (such as "Ditto") were a later outgrowth of the hektograph and much easier to use.
About the same time as the invention of the hektograph, the first stencil duplicators began to appear. These used various devices to perforate waxed tissue paper, creating stencils through which ink could be passed. The first of these was Thomas Edison's Electric Pen of 1876. This gadget used current to vibrate the point of a stylus, creating tiny holes in the stencil to form the image.
A simpler solution came from Eugenio Zuccato who invented the Trypograph in London in 1877. Zuccato put his stencil on the surface of an iron file. When he wrote with a plain stylus, the rough file surface punctured the stencil from below. Edison obtained a U.S. patent for a similar process in 1880, although he did nothing with it for several years.
In 1881, David Gestetner, working in England, invented another simple stencil perforator. Known as the Cyclostyle, it was a pen with a miniature toothed wheel on the end. By writing on the stencil, the wheel rolled along and punched tiny perforations in the sheet.
The last major player to enter the stencil game was A.B. Dick of Chicago. Dick was a lumber merchant who needed a way to duplicate the often-needed inventory lists in his business. Experimenting on his own in 1884, he came up with a file-plate stencil process similar to Zuccato's and Edison's, but more practical. Dick saw real market potential in the product and applied for a patent only to find that Edison had beaten him to it.
Dick contacted Edison, and proposed the idea of selling the device to the public. Dick's most brilliant idea in the venture, however, was not the invention itself, but his plan to use Edison's name on the label! Edison's name had true star quality in the 1880's. Dick coupled it with an intriguing brand-name taken from the Greek, and in 1887 the Edison "Mimeograph" duplicator was born.
For several years, the Mimeograph and Cyclostyle duplicators coexisted, each performing the same function using their slightly different methods. With each, finished stencils were placed in a wooden frame so that ink could be pressed through them with a roller. It was messy but effective. At this earliest stage, however, neither device effectively exploited the Typewriter, another new invention which seemed perfectly suited to be teamed with duplicators.
The Typewriter had been around for about ten years when the Mimeograph and Cyclostyle appeared. Duplicator stencils, however, were backed with thin tissue which was often torn to pieces under the pounding of typewriters.
A.B. Dick pounced on the solution to the problem when he bought rights to an 1888 patent for a new stencil backed by a sturdy porous tissue. The typewriter would penetrate the wax, but not the tissue. Suddenly, the potential for producing thousands of copies from a typewritten original was created.
In 1891, Gestetner helped the technology along another step, by creating an "automatic" printing device, which worked much faster than the old manual wooden frame. A rivalry between Dick and Gestetner might have developed, but instead, their relationship was cordial. In 1893, they agreed to share patents, each using the typewriter stencil and the automatic printer in his own products, and each prospering in the process.
The turn of the century brought the development of rotary stencil machines, which meant that copies could finally be "cranked out" in the literal sense. A.B. Dick's version of this device was a single drum model with ink inside the drum and forced directly through the stencil. Gestetner marketed a double-drum design, inking the stencil with rollers, which picked up the ink from a tube. Other manufacturers introduced their own models, but for years the two principal names in the industry were Mimeograph from Dick and Cyclostyle from Gestetner.
As stencil duplicators developed for long runs, carbon paper began to replace the copy press for short runs. Carbon paper was invented in 1806, but was not practical for making copies written with the light pressure of pen and ink. Typewriters changed the situation. Copying with carbons was called "manifolding," and some typewriters were sold claiming the ability to make up to 25 carbon copies at once!
An alternative duplicating method for very long runs became available after the turn of the century in a device called the Gammeter or Multigraph. This was actually a small rotary printing press, with grooves in its cylinder allowing type to be easily set on the surface. Setting the type took more work than producing a stencil, of course, so the Multigraph's use was limited.
The 20th century brought other new potentials to "office duplicating" advancing it considerably toward "desktop publishing." Among the new devices was the Vari- Typer, an evolved form of the old Hammond Typewriter, which had been on the market since 1884.
The Hammond was distinctive in that it typed with a single type element, a simple curved strip which could be quickly changed for a variety of typestyles. In the 1920's Hammond added variable pitch to its machines, making typestyles in widely different sizes practical for the same machine. Later, the Hammond was renamed Vari- Typer, and the Ralph Coxhead Corporation took it over.
The Vari-Typer was electrified and equipped with differential spacing and line justification. Lines were justified by typing them twice. The first typing determined the number of letters on the line, which was set on a dial. This altered the word spacing to align the right margin for the second typing. No longer was this machine called a typewriter. It was known as a cold typesetter, and Vari-Typers using the basic Hammond design were in production until the 1970's.
The Vari-Typer could be used to type Mimeograph stencils, although this was a bit cumbersome. Much easier was its use with photo-lithography, which appeared in the 1930's. As today, an original was created on plain paper, and a litho plate was produced from it by photography. Back then it was not as easy as it is today, but the concept was the same.
Special materials were also available allowing the original to be typed directly on a thin, flexible printing plate. Thousands of copies could be printed on a small offset printing press from a Vari-Typer original. Such devices were used to produce the surrender documents signed by Japan aboard the Battleship Missouri at the end of World War Two.
The combination of typewriters, Vari-typers, Mimeographs, Multigraphs, offset litho machines and spirit duplicators carried our developing desktop publishing technology through to the end of its first century in 1956. Electrostatic copying, which first appeared in 1938, was just beginning to make a big impact as the 1960's approached. "Xerox" was starting to become a household word, but high-volume plain paper copiers would take a while to become the inexpensive fixtures they are today.
In 1956, computers had not reached desktop publishing capability, and the instant print shop was still years away. The Vari-Typer, however, would soon find a competitor in IBM's Selectric Typewriter, introduced in 1960, and later available in typesetting versions with all the features offered by Vari-Typers.
The first century of desktop publishing offered tremendous progress for people who wanted to turn out printed material on a small scale. However, the second century so far has been nothing less than amazing. Who, after all, would have ever dreamed that an entire publication could be written, edited, typeset and composed before even the first drop of ink was applied to the first piece of paper?
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worldwidereports-blog · 6 years ago
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Lacquer Thinner Market - Global Industry Insights, Trends, Outlook, and Opportunity Analysis, 2018-2026
Worldwide Market Reports added Latest Research Report titled “Lacquer Thinner Market”to its Large Report database.
Lacquer thinner is a mixture of solvents that have the ability to dissolve a number of different resins or plastics used in modern lacquer. It is clear or generally colored and by the evaporation of the solvent, it dries away. Lacquer thinners are certainly effective household items for the removal of sheen on surfaces. It helps in breaking down or dissolving the thick properties of varnishes and paints, lacquer, oils, grease, and other strong adhesive materials and can also be used to dissolve, dilute and clean up basic lacquer items in the house. These thinners are a little caustic for oil paints and this may cause creaks in the sheen of the surface. It may deteriorate the surfaces and fabrics of items in the house. Initially, it should be applied on to a small and unnoticeable area and then, can be applied on to a bigger countertop or surface.
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Furthermore, lacquer thinners can be used to remove tar, dissolve shellac and aniline dyes, clean paint spots, and sheen thinning. Increasing demand for paints is one of the major factors driving growth of lacquer thinner market.
However, the harmful fumes of the thinner, irritation of eyes and hands on direct exposure to the thinner, and flammable nature of the thinner are all major factors that might hinder growth of lacquer thinner market.
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Key Developments in Lacquer Thinner Market
Key players are adopting various strategies such as mergers, acquisitions, new product launches, expansions, collaborations, partnerships, approvals, and joint ventures to retain its position in the lacquer thinner market. In 2015, Krylon launched improved general purpose paint COVERMAXX® and new best-in-class premium paint SUPERMAXX® ALL-IN-ONE that can be used in all indoor and outdoor projects. On February 3, 2015, Neuce Portugal was honored with the status of 2014 PME Excellency by the IAPMEI.
In 2016, Recochem launched new brands of Water System Antifreeze, WinterProof, and AbsoluteZero. Also, Krylon launched Chalky Finish Point in 2015.
Some of the key players operating in the market include Sunnyside Corporation, W.M. Barr,  Startex, Al Sanea, The NEUCE group, Produits Lubri-Delta inc., Recochem Inc., Tamiya America, Inc., and Krylon among others.
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chemanalystdata · 11 hours ago
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Nitro Benzene Prices Trend | Pricing | News | Database | Chart
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 Nitro Benzene Prices is a critical chemical compound widely used in the manufacture of aniline, which is an essential component in various industrial applications such as dyes, agrochemicals, and rubber processing chemicals. The global market for nitrobenzene prices has experienced fluctuations driven by several interrelated factors, including raw material availability, production costs, regulatory developments, and demand-supply dynamics. Understanding these elements is crucial for stakeholders aiming to assess market trends and make informed decisions.
The pricing dynamics of nitrobenzene are heavily influenced by the cost of its key raw material, benzene. Benzene prices, in turn, are subject to the volatility of crude oil markets as benzene is derived from petroleum refining processes. Any significant changes in crude oil prices directly impact benzene and, consequently, nitrobenzene production costs. For instance, during periods of rising crude oil prices, the cost of benzene typically increases, leading to an upward shift in nitrobenzene prices. Conversely, when crude oil prices soften, producers often experience reduced costs, allowing for more competitive pricing of nitrobenzene. This interdependence highlights the sensitivity of the nitrobenzene market to broader energy market trends.
Get Real time Prices for Nitro Benzene: https://www.chemanalyst.com/Pricing-data/nitro-benzene-1139
Another critical factor affecting nitrobenzene prices is the regional production landscape. Asia-Pacific, particularly China and India, dominates nitrobenzene production due to the presence of a well-established chemical manufacturing infrastructure and lower labor costs. These regions also account for a significant share of global demand, driven by robust growth in sectors like construction, textiles, and agriculture. The concentration of production in Asia has often resulted in competitive pricing for nitrobenzene compared to regions such as North America and Europe, where higher regulatory compliance costs and energy prices can elevate production expenses. However, geopolitical tensions, trade policies, and regional economic slowdowns can disrupt the supply chain and create pricing volatility.
Environmental regulations play a pivotal role in shaping the nitrobenzene market, particularly in regions with stringent emission and waste disposal laws. Compliance with these regulations often necessitates additional investments in cleaner production technologies, which can escalate manufacturing costs. For instance, producers in developed markets are increasingly adopting environmentally sustainable methods to align with regulatory standards. While these advancements enhance the environmental profile of nitrobenzene production, they can also contribute to higher prices. On the other hand, regulatory incentives for greener production practices might offset some cost pressures in the long term, fostering stability in pricing trends.
The demand dynamics of nitrobenzene are intrinsically linked to its primary application, aniline production. Aniline serves as a precursor for a wide array of downstream products, including polyurethane foams, which are extensively used in furniture, automotive interiors, and insulation materials. Growth in these end-use industries significantly boosts the demand for nitrobenzene, thereby affecting its pricing. For example, the automotive sector’s recovery post-pandemic has rekindled demand for polyurethane-based products, indirectly influencing nitrobenzene market prices. Similarly, the expansion of the agricultural sector has spurred demand for agrochemicals, where nitrobenzene serves as a key intermediate, further impacting market valuations.
Supply chain disruptions have emerged as a notable factor influencing nitrobenzene prices in recent years. Events such as the COVID-19 pandemic, natural disasters, and geopolitical conflicts have disrupted logistics and manufacturing operations, creating supply shortages and price spikes. For instance, the temporary shutdown of chemical plants during the pandemic significantly curtailed production capacities, leading to reduced nitrobenzene availability and increased prices. Such disruptions underscore the vulnerability of the market to external shocks and highlight the importance of resilient supply chain strategies for mitigating pricing volatility.
Technological advancements and innovations in production processes are also reshaping the nitrobenzene market. The adoption of advanced catalytic technologies and process optimization techniques has enabled producers to enhance yield efficiency and reduce operational costs. These innovations not only improve the economic viability of nitrobenzene production but also contribute to more stable pricing structures. Furthermore, ongoing research into alternative feedstocks and sustainable production methods promises to mitigate the environmental impact of nitrobenzene manufacturing, potentially influencing future price trends.
Market participants are increasingly leveraging digital tools and data analytics to gain insights into nitrobenzene pricing trends. Real-time monitoring of market indicators such as raw material prices, production volumes, and end-use demand patterns enables producers and traders to make informed pricing decisions. Additionally, the integration of blockchain technology in supply chain management is improving transparency and traceability, fostering greater trust among stakeholders and enhancing market efficiency. These technological interventions are likely to play a pivotal role in shaping the competitive landscape and pricing strategies within the nitrobenzene market.
The global economic outlook also exerts a considerable influence on nitrobenzene prices. Economic growth drives industrial activities, thereby fueling demand for nitrobenzene-based products. Conversely, economic slowdowns often lead to subdued industrial production, dampening demand and exerting downward pressure on prices. Currency fluctuations and inflationary trends further complicate the pricing landscape, particularly for internationally traded commodities like nitrobenzene. For example, a strengthening US dollar can make imports more expensive for countries with weaker currencies, impacting their purchasing power and influencing global market prices.
Sustainability trends are increasingly shaping consumer preferences and industry practices, adding another layer of complexity to the nitrobenzene market. End-users are placing greater emphasis on environmentally friendly products, prompting manufacturers to adopt greener production methods. While these sustainable practices may initially increase costs, they are essential for aligning with evolving market demands and regulatory frameworks. The shift towards sustainability also presents opportunities for differentiation and premium pricing, particularly in markets with high environmental awareness.
In conclusion, the nitrobenzene market is characterized by a complex interplay of factors that influence its pricing dynamics. Raw material costs, regional production trends, regulatory developments, and demand from downstream industries all contribute to shaping market valuations. Supply chain disruptions and technological advancements further add to the intricacies of price determination. As the global economy evolves and sustainability concerns gain prominence, the nitrobenzene market is likely to witness ongoing transformations, necessitating adaptive strategies from market participants to navigate its challenges and opportunities effectively.
Get Real time Prices for Nitro Benzene: https://www.chemanalyst.com/Pricing-data/nitro-benzene-1139
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ereportsmarket-blog · 7 years ago
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Global Aniline Market 2018- Bayer, BASF, Tosoh, Huntsman, Sumitomo Chemical , The Chemours Company and Tianji
Global Aniline Market 2018- Bayer, BASF, Tosoh, Huntsman, Sumitomo Chemical , The Chemours Company and Tianji
eReportsMarket has recently added a new Aniline research report to its huge database of research studies. New Report Presents 2013-2018 Review, 2025 Forecasts of Global Aniline Market. The research report, titled “Global Aniline Market 2018 Industry Research Report,”provides a comprehensive analysis of the industry, including an overview, Aniline market drivers and restraints, product…
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