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#Home#➤#Electronics & Communication#Global Battery Elimination in Electronics and Electrical Engineering Market#Global Battery Elimination in Electronics and Electrical Engineering Market Size#Share#Trends#Growth#Industry Analysis#Key Players#Revenue#Future Development & Forecast 2023-2032#future development & forecast 2023-2032#global market insights#global research market report#global market report
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The Global Electric Vehicle Battery Market to Propel at CAGR of 17.66% by 2028
Triton Market Research presents the Global Electric Vehicle Battery Market segmented by Battery Type (Nickel-Metal Hydride, Lead Acid, Lithium-ion), Vehicle Type (Hybrid Electric Vehicle, Plug-in Hybrid Electric Vehicle, Battery Electric Vehicle), End-user (Passenger Car, Commercial Vehicle, Other End-users), and by Geography (Asia-Pacific, Middle East and Africa, Latin America, Europe, North America). The global market is also segmented into the Market Summary, Industry Outlook, Key Insights, Impact of COVID-19, Porter’s Five Forces Analysis, Market Attractiveness Matrix, Industry Components, Vendor Scorecard, Technology Analysis, Raw Material Analysis, Key Market Strategies, Industry Player Positioning, Drivers, Challenges, Opportunities, Competitive Landscape, Methodology & Scope, Global Market Size, Forecasts & Analysis (2021-2028).
Triton’s research report suggests that the global market for electric vehicle battery is estimated to grow at a CAGR of 17.66% during the evaluated years of 2021-2028.
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https://www.tritonmarketresearch.com/reports/electric-vehicle-battery-market#request-free-sample
Electric vehicle batteries include traction batteries powering several electric vehicle types, such as battery, hybrid, and plug-in hybrid electric vehicles.
Electric vehicles are easily charged through the grid at public charging stations or home chargers. It is expected that the vehicle-to-grid technology will allow EV owners to sell electricity from the vehicle to the grid during peak hours. Hence, technological advancements in vehicle-to-grid technology, along with the emergence of e-mobility, are likely to create opportunities for the electric vehicle battery market. However, issues in raw material procurement, safety concerns, and high charging time are impeding the studied market’s progress.
Globally, Europe is estimated to emerge as the fastest-growing region in the electric vehicle battery market. This growth can be attributed to several initiatives, such as the European Battery Alliance, promoting battery manufacturing. Moreover, numerous companies are setting up battery manufacturing plants across the region, owing to the booming electric vehicle industry. Other than this, the major reason for the rise in EV battery manufacturing is to reduce dependency on the Asian market for batteries and streamline supply chain processes. Therefore, all these factors are majorly driving the growth of the electric vehicle battery market across Europe.
The key companies profiled in the electric vehicle battery market include Vehicle Energy Japan Co Ltd, Panasonic, LG Ensol, Toshiba Corporation, Lithium Energy Japan, GS Yuasa, Prime Planet Energy Solutions, Envision AESC, SK Innovation, Northvolt AB, CATL, BYD, A123 Systems, CALB, and Samsung SDI.
Several prominent companies hold most of the share in the electric vehicle battery market, including Samsung SDI and Panasonic. Moreover, the high investment costs, need for technological expertise, mass production capacity, and contracts hinder the entry of new players. Further, existing companies are entering into partnerships and launching joint ventures to capture market share. Hence, the threat of new players is low, while the competition level among existing players is relatively high.
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#electric vehicle battery market#electric vehicle battery#automotive industry#automotive and transportation#electronics and electric system#market research reports#triton market research
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Which Education🎓📚 is right for you?
Mercury rules your interest and consequently which type of course you would select.
Now you have to see how Mercury is placed. For example if Mercury is conjunct Moon it would have same effect as Mercury in Cancer or Moon opposite Mercury.
Mercury -Sun: It is called Budh Aditya yoga. These people can shine in political science, geology, sociology, medicine and they can be good leaders too. They may prepare for competitive exams.
Mercury-Moon: Some changes or confusion in choice of course. Can study more than one subject but both vastly different from each other. Chemical, hotel management, nutrition, chef, psychology, tarot and intuitive studies.
Mercury-Mars: Some obstacles in education, breaks and interruptions (dropping classes), engineering (especially related to machines, drawings, plans, civil, electronics), medicine (especially related to surgery), fire and safety engineering,
Mercury-Venus: Sales, marketing, HR, interior designing, makeup courses, all type of fine arts, vocational courses, acting courses.
Mercury-Saturn: Engineering (like construction , petroleum, mining core subjects), structural engineering, drafting, administrative studies.
Mercury-Jupiter: Finance, CPA, CMA, accounting, teaching, law field, journalism, VJ, pilots, aeronautical.
Mercury- Rahu: Chemical, nuclear subjects, cinematography, software courses, digital marketing, share markets, computer hardware, import export, AI, Machine Learning courses.
Mercury-Ketu: Computer coding, electrical engineering, bio technology, astrology, virology, research oriented fields.
For Readings DM
#astrology#astrology observations#zodiac#zodiac signs#astro community#astro observations#vedic astrology#astro notes#vedic astro notes#astrology community#mercury signs#mercury in aquarius#mercury retrograde#pisces mercury
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The phone or computer you’re reading this on may not be long for this world. Maybe you’ll drop it in water, or your dog will make a chew toy of it, or it’ll reach obsolescence. If you can’t repair it and have to discard it, the device will become e-waste, joining an alarmingly large mountain of defunct TVs, refrigerators, washing machines, cameras, routers, electric toothbrushes, headphones. This is “electrical and electronic equipment,” aka EEE—anything with a plug or battery. It’s increasingly out of control.
As economies develop and the consumerist lifestyle spreads around the world, e-waste has turned into a full-blown environmental crisis. People living in high-income countries own, on average, 109 EEE devices per capita, while those in low-income nations have just four. A new UN report finds that in 2022, humanity churned out 137 billion pounds of e-waste—more than 17 pounds for every person on Earth—and recycled less than a quarter of it.
That also represents about $62 billion worth of recoverable materials, like iron, copper, and gold, hitting e-waste landfills each year. At this pace, e-waste will grow by 33 percent by 2030, while the recycling rate could decline to 20 percent. (You can see this growth in the graph below: purple is EEE on the market, black is e-waste, and green is what gets recycled.)
“What was really alarming to me is that the speed at which this is growing is much quicker than the speed that e-waste is properly collected and recycled,” says Kees Baldé, a senior scientific specialist at the United Nations Institute for Training and Research and lead author of the report. “We just consume way too much, and we dispose of things way too quickly. We buy things we may not even need, because it's just very cheap. And also these products are not designed to be repaired.”
Humanity has to quickly bump up those recycling rates, the report stresses. In the first pie chart below, you can see the significant amount of metals we could be saving, mostly iron (chemical symbol Fe, in light gray), along with aluminum (Al, in dark gray), copper (Cu), and nickel (Ni). Other EEE metals include zinc, tin, and antimony. Overall, the report found that in 2022, generated e-waste contained 68 billion pounds of metal.
E-waste is a complex thing to break down: A washing machine is made of totally different components than a TV. And even for product categories, not only do different brands use different manufacturing processes, but even different models within those brands vary significantly. A new washing machine has way more sensors and other electronics than one built 30 years ago.
Complicating matters even further, e-waste can contain hazardous materials, like cobalt, flame retardants, and lead. The report found that each year, improperly processed e-waste releases more than 125,000 pounds of mercury alone, imperiling the health of humans and other animals. “Electronic waste is an extremely complex waste stream,” says Vanessa Gray, head of the Environment and Emergency Telecommunications Division at the UN’s International Telecommunication Union and an author of the report. “You have a lot of value in electronic waste, but you also have a lot of toxic materials that are dangerous to the environment.”
That makes recycling e-waste a dangerous occupation. In low- and middle-income countries, informal e-waste recyclers might go door-to-door collecting the stuff. To extract valuable metals, they melt down components without proper safety equipment, poisoning themselves and the environment. The new report notes that in total, 7.3 billion pounds of e-waste is shipped uncontrolled globally, meaning its ultimate management is unknown and likely not done in an environmentally friendly way. Of that, high-income countries shipped 1.8 billion pounds to low- and middle-income countries in 2022, swamping them with dangerous materials.
High-income countries have some of this informal recycling, but they also have formal facilities where e-waste is sorted and safely broken down. Europe, for example, has fairly high formal e-waste recycling rates, at about 43 percent. But globally, recycling is happening nowhere near enough to keep up with the year-over-year growth of the waste. Instead of properly mining EEE for metals, humanity keeps mining more ore out of the ground.
Still, the report found that even the small amount of e-waste that currently gets recycled avoided the mining of 2 trillion pounds of ore for virgin metal in 2022. (It takes a lot of ore to produce a little bit of metal.) The more metals we can recycle from e-waste, the less mining we’ll need to support the proliferation of gadgets. That would in turn avoid the greenhouse gases from such mining operations, plus losses of biodiversity.
The complexity of e-waste, though, makes it expensive to process. As the chart above shows, even an ambitious scenario of a formal e-waste collection rate in 2030 is 44 percent. “There is no business case for companies to just collect e-waste and to make a profit out of this in a sustainable manner,” says Baldé. “They can only survive if there is legislation in place which is also compensating them.”
The report notes that 81 countries have e-waste policies on the books, and of those, 67 have provisions regarding extended producer responsibility, or EPR. This involves fees paid by manufacturers of EEE that would go toward e-waste management.
Of course, people could also stop throwing so many devices away in the first place, something right-to-repair advocates have spent years fighting for. Batteries, for instance, lose capacity after a certain number of charge cycles. If a phone can’t hold a charge all day anymore, customers should be able to swap in a new battery. “Manufacturers shouldn't be able to put artificial limitations on that ability,” says Elizabeth Chamberlain, director of sustainability at iFixit, which provides repair guides and tools. That includes limiting access to parts and documentation. “Repair is a harm-reduction strategy. It's not the be-all-end-all solution, but it's one of many things we need to do as a global society to slow down the rate at which we're demanding things of the planet.”
At the core of the e-waste crisis is the demand: A growing human population needs phones to communicate and fridges to keep food safe and heat pumps to stay comfortable indoors. So first and foremost we need high-quality products that don’t immediately break down, but also the right to repair when they do. And what absolutely can’t be fixed needs to move through a safe, robust e-waste recycling system. “We are consuming so much,” says Baldé, “we cannot really recycle our way out of the problem.”
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Children still mining cobalt for gadget batteries in Congo
A CBS News investigation of child labor in cobalt mines in the Democratic Republic of Congo has revealed that tens of thousands of children are growing up without a childhood today – two years after a damning Amnesty report about human rights abuses in the cobalt trade was published. The Amnesty report first revealed that cobalt mined by children was ending up in products from prominent tech companies including Apple, Microsoft, Tesla and Samsung.
There's such sensitivity around cobalt mining in the DRC that a CBS News team traveling there recently was stopped every few hundred feet while moving along dirt roads and seeing children digging for cobalt. From as young as 4 years old, children can pick cobalt out of a pile, and even those too young to work spend much of the day breathing in toxic fumes.
What's life like for kids mining cobalt for our gadgets?
So, what exactly is cobalt, and what are the health risks for those who work in the DRC's cobalt mining industry?
What is cobalt?
Cobalt – a naturally occurring element – is a critical component in lithium-ion, rechargeable batteries. In recent years, the growing global market for portable electronic devices and rechargeable batteries has fueled demand for its extraction, Amnesty said in its 2016 report. In fact, many top electronic and electric vehicle companies need cobalt to help power their products.
The element is found in other products as well.
"Cobalt-containing products include corrosion and heat-resistant alloys, hard metal (cobalt-tungsten-carbide alloy), magnets, grinding and cutting tools, pigments, paints, colored glass, surgical implants, catalysts, batteries, and cobalt-coated metal (from electroplating)," says the U.S. Centers for Disease Control and Prevention.
More than half of the world's supply of cobalt comes from the DRC, and 20 percent of that is mined by hand, according to Darton Commodities Ltd., a London-based research company that specializes in cobalt.
Health risks of chronic exposure
According to the CDC, "chronic exposure to cobalt-containing hard metal (dust or fume) can result in a serious lung disease called 'hard metal lung disease'" – a kind of pneumoconiosis, meaning a lung disease caused by inhaling dust particles. Inhalation of cobalt particles can cause respiratory sensitization, asthma, decreased pulmonary function and shortness of breath, the CDC says.
The health agency says skin contact is also a significant health concern "because dermal exposures to hard metal and cobalt salts can result in significant systemic uptake."
"Sustained exposures can cause skin sensitization, which may result in eruptions of contact dermatitis," a red, itchy skin rash, the CDC says.
Despite the health risks, researchers with Amnesty International found that most cobalt miners in Congo lack basic protective equipment like face masks, work clothing and gloves. Many of the miners the organization spoke with for its 2016 report – 90 people in total who work, or worked, in the mines – complained of frequent coughing or lung problems. Cobalt mining's dangerous impact on workers and the environment
Some women complained about the physical nature of the work, with one describing hauling 110-pound sacks of cobalt ore. "We all have problems with our lungs, and pain all over our bodies," the woman said, according to Amnesty.
Moreover, miners said unsupported mining tunnels frequently give way, and that accidents are common.
Miners know their work is dangerous, Todd C. Frankel wrote late last month in The Washington Post.
"But what's less understood are the environmental health risks posed by the extensive mining," he reported. "Southern Congo holds not only vast deposits of cobalt and copper but also uranium. Scientists have recorded alarming radioactivity levels in some mining regions. Mining waste often pollutes rivers and drinking water. The dust from the pulverized rock is known to cause breathing problems. The mining industry's toxic fallout is only now being studied by researchers, mostly in Lubumbashi, the country's mining capital."
"These job are really desired"
Despite the dangers and risks of working as miners in the cobalt industry, at least of the some miners in the Congo "love their jobs," according to Frankel.
"When I talked to the miners there, none of them want to lose their jobs or give up their jobs. They love their jobs," Frankel said Tuesday, speaking on CBSN. "In a country like Congo, mining is one of the few decently paying jobs to be had there, and so they want to hold onto these jobs."
They also want fair treatment, decent pay, and some safety, "and they would love for their kids to not work in the mines," he said.
"It's a poverty problem," Frankel said. "These parents I talked to – they don't want their kids working in these mines. The problem is that their school fees – schools cost money, and you know, food costs money, and they sort of need their kids to work in there."
Poverty also drives children into the mines instead of school – an estimated 40,000 of them work in brutal conditions starting at very young ages.
The thousands of miners who work in tunnels searching for cobalt in the country "do it because they live in one of the poorest countries in the world, and cobalt is valuable," Frankel wrote in the Washington Post article.
"Not doing enough"
CBS News spoke with some of the companies that use cobalt in their lithium-ion batteries. All of the companies acknowledged problems with the supply chain, but said they require suppliers to follow responsible sourcing guidelines. Apple, an industry leader in the fight for responsible sourcing, said walking away from the DRC "would do nothing to improve conditions for the people or the environment."
Read company responses here
Amnesty said in November, however, that "major electronics and electric vehicle companies are still not doing enough to stop human rights abuses entering their cobalt supply chains."
"As demand for rechargeable batteries grows, companies have a responsibility to prove that they are not profiting from the misery of miners working in terrible conditions in the DRC," the organization said. "The energy solutions of the future must not be built on human rights abuses."
An estimated two-thirds of children in the region of the DRC that CBS News visited recently are not in school. They're working in mines instead.
CBS News' Debora Patta spoke with an 11-year-old boy, Ziki Swaze, who has no idea how to read or write but is an expert in washing cobalt. Every evening, he returns home with a dollar or two to provide for his family.
"I have to go and work there," he told Patta, "because my grandma has a bad leg and she can't."
He said he dreams of going to school, but has always had to work instead.
"I feel very bad because I can see my friends going to school, and I am struggling," he said.
Amnesty says "it is widely recognized internationally that the involvement of children in mining constitutes one of the worst forms of child labour, which governments are required to prohibit and eliminate."
#cobalt#PD Congo#PDR Congo#cobalt mining by children#amnesty university#The toll of the cobalt mining industry on health and the environment#Congo Economic Theft#minerals#rare earth minerals#tesla#iphones#cellphone batteries#ev batteries#lithium batteries#child labour#forced child labor#poverty#systemic racism
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Osmium Market Explained: The World's Most Densely Valuable Metal
The Osmium market is a niche sector within the broader precious metals industry, often overshadowed by its more well-known counterparts like gold and silver. Osmium is a remarkable element with unique properties that make it a valuable asset for various industries, especially in cutting-edge technologies and scientific applications. In this article, we will explore the Osmium market, its uses, sources, and its potential for growth and investment.
Understanding Osmium
Osmium market is a chemical element with the symbol Os and atomic number 76. It is one of the densest naturally occurring elements and belongs to the platinum group metals (PGMs), which also includes platinum, palladium, rhodium, ruthenium, and iridium. Osmium is characterized by its bluish-white color and extreme density, making it twice as dense as lead.
Historically, osmium was used in various applications, such as fountain pen tips and electrical contacts, due to its hardness and corrosion resistance. However, modern applications for osmium have evolved, and its market dynamics have changed significantly.
Osmium in Modern Applications
Osmium Alloys in Industry Osmium is often alloyed with other metals, like iridium, to create exceptionally hard and durable materials. These alloys find applications in the aerospace and automotive industries, where they are used for electrical contacts, spark plug tips, and turbine engine components. The extreme heat resistance of osmium alloys makes them invaluable in these high-temperature environments.
Scientific Applications In scientific research, osmium tetroxide (OsO4) is a widely used staining agent for electron microscopy and other microscopic imaging techniques. It can highlight cellular structures and biological tissues, aiding researchers in understanding complex biological processes.
Investment Potential The rarity of osmium and its diverse applications make it an attractive option for investors looking to diversify their portfolios. As a tangible asset, osmium can act as a hedge against economic instability and currency devaluation. However, investing in osmium requires careful consideration and knowledge of the market, as it is less liquid than more common precious metals.
Sources of Osmium
Osmium is a rare element found in trace amounts in various ores, with primary sources being platinum and nickel ores. The largest producers of osmium are countries with significant platinum mining operations, such as South Africa and Russia. Extraction of osmium from these ores is a complex and expensive process, which contributes to its scarcity.
Osmium Market Trends
The Osmium market is characterized by its limited supply and steady demand. Over the past decade, the market has experienced modest growth, driven by technological advancements and increasing demand for its unique properties. Some notable trends in the Osmium market include:
Growing Demand in Aerospace and Automotive Sectors The use of osmium alloys in aerospace and automotive applications is expected to increase as manufacturers seek materials that can withstand extreme conditions. Osmium's remarkable hardness and resistance to high temperatures make it a preferred choice in these industries.
Expanding Scientific Research Advancements in scientific research and the increasing need for advanced microscopy techniques are expected to drive the demand for osmium tetroxide, a key component in staining and imaging. This is particularly relevant in the fields of biology, medicine, and materials science.
Investment Opportunities While osmium is not as commonly traded as other precious metals, its investment potential has piqued the interest of collectors and investors. Some institutions and individuals are exploring the possibility of adding osmium to their investment portfolios as a store of value and a hedge against economic volatility.
Challenges in the Osmium Market
Despite its unique properties and applications, the Osmium market faces several challenges:
Limited Supply Osmium's scarcity poses a significant challenge for both industrial users and investors. The small quantities of osmium available and the complex extraction process contribute to its high cost.
Market Awareness The general public and even some investors remain relatively unaware of osmium as an investment option. Increasing awareness and education about the metal's unique characteristics and market dynamics is essential to foster growth.
Conclusion
The Osmium market may be small compared to other precious metals, but its unique properties and applications make it a valuable and intriguing element within the world of commodities and investments. As technology continues to advance and scientific research expands, the demand for osmium is likely to grow, offering opportunities for those willing to explore this less-known sector of the precious metals industry. While challenges such as limited supply and market awareness persist, the Osmium market's potential for growth and investment remains an exciting prospect for those who see beyond the bluish-white surface of this remarkable element.
#Osmium Market Share#Osmium Market Growth#Osmium Market Demand#Osmium Market Trend#Osmium Market Analysis
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A smart color-changing flexible battery with ultra-high efficiency
With the rapid growth of the smart and wearable electronic devices market, smart next-generation energy storage systems that have energy storage functions as well as additional color-changing properties are receiving a great deal of attention. However, existing electrochromic devices have low electrical conductivity, leading to low efficiency in electron and ion mobility, and low storage capacities. Such batteries have therefore been limited to use in flexible and wearable devices. On August 21, a joint research team led by Professor Il-Doo Kim from the KAIST Department of Materials Science and Engineering (DMSE) and Professor Tae Gwang Yun from the Myongji University Department of Materials Science and Engineering announced the development of a smart electrochromic Zn-ion battery that can visually represent its charging and discharging processes using an electrochromic polymer anode incorporated with a "π-bridge spacer," which increases electron and ion mobility efficiency. Their research was published as an inside cover article for Advanced Materials on August 3 under the title, "A π-Bridge Spacer Embedded Electron Donor-Acceptor Polymer for Flexible Electrochromic Zn-Ion Batteries."
Read more.
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Global top 13 companies accounted for 66% of Total Frozen Spring Roll market(qyresearch, 2021)
The table below details the Discrete Manufacturing ERP revenue and market share of major players, from 2016 to 2021. The data for 2021 is an estimate, based on the historical figures and the data we interviewed this year.
Major players in the market are identified through secondary research and their market revenues are determined through primary and secondary research. Secondary research includes the research of the annual financial reports of the top companies; while primary research includes extensive interviews of key opinion leaders and industry experts such as experienced front-line staffs, directors, CEOs and marketing executives. The percentage splits, market shares, growth rates and breakdowns of the product markets are determined through secondary sources and verified through the primary sources.
According to the new market research report “Global Discrete Manufacturing ERP Market Report 2023-2029”, published by QYResearch, the global Discrete Manufacturing ERP market size is projected to reach USD 9.78 billion by 2029, at a CAGR of 10.6% during the forecast period.
Figure. Global Frozen Spring Roll Market Size (US$ Mn), 2018-2029
Figure. Global Frozen Spring Roll Top 13 Players Ranking and Market Share(Based on data of 2021, Continually updated)
The global key manufacturers of Discrete Manufacturing ERP include Visibility, Global Shop Solutions, SYSPRO, ECi Software Solutions, abas Software AG, IFS AB, QAD Inc, Infor, abas Software AG, ECi Software Solutions, etc. In 2021, the global top five players had a share approximately 66.0% in terms of revenue.
About QYResearch
QYResearch founded in California, USA in 2007.It is a leading global market research and consulting company. With over 16 years’ experience and professional research team in various cities over the world QY Research focuses on management consulting, database and seminar services, IPO consulting, industry chain research and customized research to help our clients in providing non-linear revenue model and make them successful. We are globally recognized for our expansive portfolio of services, good corporate citizenship, and our strong commitment to sustainability. Up to now, we have cooperated with more than 60,000 clients across five continents. Let’s work closely with you and build a bold and better future.
QYResearch is a world-renowned large-scale consulting company. The industry covers various high-tech industry chain market segments, spanning the semiconductor industry chain (semiconductor equipment and parts, semiconductor materials, ICs, Foundry, packaging and testing, discrete devices, sensors, optoelectronic devices), photovoltaic industry chain (equipment, cells, modules, auxiliary material brackets, inverters, power station terminals), new energy automobile industry chain (batteries and materials, auto parts, batteries, motors, electronic control, automotive semiconductors, etc.), communication industry chain (communication system equipment, terminal equipment, electronic components, RF front-end, optical modules, 4G/5G/6G, broadband, IoT, digital economy, AI), advanced materials industry Chain (metal materials, polymer materials, ceramic materials, nano materials, etc.), machinery manufacturing industry chain (CNC machine tools, construction machinery, electrical machinery, 3C automation, industrial robots, lasers, industrial control, drones), food, beverages and pharmaceuticals, medical equipment, agriculture, etc.
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SEOUL, South Korea — In fried-chicken-obsessed South Korea, restaurants serving the nation's favourite fast-food dish dot every street corner.
But Kang Ji-young's establishment brings something a little different to the table: a robot is cooking the chicken.
Eaten at everything from tiny family gatherings to a 10-million-viewer live-streamed "mukbang" -- eating broadcast -- by K-pop star Jungkook of BTS fame, fried chicken is deeply embedded in South Korean culture.
Paired with cold lager and known as "chimaek" -- a portmanteau of the Korean words for chicken and beer -- it is a staple of Seoul's famed baseball-watching experience.
The domestic market -- the world's third largest, after the United States and China -- is worth about seven trillion won ($5.3 billion).
However, labour shortages are starting to bite as South Korea faces a looming demographic disaster due to having the world's lowest birth rate.
Around 54 percent of business owners in the food service sector report problems finding employees, a government survey last year found, with long hours and stressful conditions the likely culprit, according to industry research.
Korean fried chicken is brined and double-fried, which gives it its signature crispy exterior, but the process -- more elaborate than what is typically used by US fast food chains -- creates additional labour and requires extended worker proximity to hot oil.
Enter Kang, a 38-year-old entrepreneur who saw an opportunity to improve the South Korean fried chicken business model and the dish itself.
"The market is huge," Kang told AFP at her Robert Chicken franchise.
Chicken and pork cutlets are the most popular delivery orders in South Korea, and the industry could clearly benefit from more automation "to effectively address labour costs and workforce shortages," she said.
Kang's robot, composed of a simple, flexible mechanical arm, is capable of frying 100 chickens in two hours -- a task that would require around five people and several deep fryers.
But not only does the robot make chicken more efficiently -- it makes it more delicious, says Kang.
"We can now say with confidence that our robot fries better than human beings do," she said.
Investing in 'foodtech'
Already a global cultural powerhouse and major semiconductor exporter, South Korea last year announced plans to plough millions of dollars into a "foodtech" fund to help startups working on high-tech food industry solutions.
Seoul says such innovations could become a "new growth engine," arguing there is huge potential if the country's prowess in advanced robotics and AI technology could be combined with the competitiveness of Korean food classics like kimchi.
South Korea's existing foodtech industry -- including everything from next-day grocery delivery app Market Kurly to AI smart kitchens to a "vegan egg" startup -- is already worth millions, said food science professor Lee Ki-won at Seoul National University.
Even South Korea's Samsung Electronics -- one of the world's biggest tech companies -- is trying to get in on the action, recently launching Samsung Food, an AI-personalised recipe and meal-planning platform, available in eight languages.
Lee predicted South Korea's other major conglomerates are likely to follow Samsung into foodtech.
"Delivering food using electric vehicles or having robots directly provide deliveries within apartment complexes, known as 'metamobility,' could become a part of our daily lives," he said.
"I am confident that within the next 10 years, the food tech industry will transform into the leading sector in South Korea."
'Initially struggled'
Entrepreneur Kang now has 15 robot-made chicken restaurants in South Korea and one branch in Singapore.
During AFP's visit to a Seoul branch, a robot meticulously handled the frying process -- from immersing chicken in oil, flipping it for even cooking, to retrieving it at the perfect level of crispiness, as the irresistible scent of crunchy chicken wafted through the shop.
Many customers remained oblivious to the hard-working robotic cook behind their meal.
Kim Moon-jung, a 54-year-old insurance worker, said she was not sure how a robot would make the chicken differently from a human "but one thing is certain -- it tastes delicious."
The robot can monitor oil temperature and oxidation levels in real time while it fries chicken, ensuring consistent taste and superior hygiene.
When Kang first started her business, she "initially struggled" to see why anyone would use robots rather than human chefs.
"But after developing these technologies, I've come to realise that from a customer's perspective, they're able to enjoy food that is not only cleaner but also tastier," she told AFP.
Her next venture is a tip-free bar in Koreatown in New York City, where the cocktails will feature Korea's soju rice wine and will be made by robots.
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Entrepreneur aims to improve South Korea's dish using robot
11 September 2023
#South Korea#chimaek#fried chicken#beer#Korean fried chicken#Robert Chicken#Kang Ji-young#advanced robotics#AI technology#Samsung Food#Samsung Electronics#metamobility#Youtube#robot
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#Global Electrical Feedthroughs Market#global research market report#global electronic adhesives market#electronic
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Commercial Oven Market:Market Analysis 2023| Recorded Hyper Growth in the Future – 2030- Claims Allied Market Research.
The commercial oven market is experiencing significant growth and will grow exponentially in the coming years. Commercial oven is providing features like baking, grilling and reheating. It is preferred in various restaurants and hotels because food is prepared in large quantities. Manufacturers are taking proper care of energy conservation, energy saver because the consumers are demanding that oven from which they can save the cost of electricity. The demand for commercial oven has increased due to the high preference for food made in the oven. The commercial oven is designed in such a way that it can be only used in commercial places, not in households because of its heavy material. It can be used for a full day and can hold electric power to reduce the effects of shocks.
Request To Sample :- https://www.alliedmarketresearch.com/request-toc-and-sample/9772
COVID-19 ScenarioAnalysis:
COVID-19 pandemic has severely affected the commercial oven market. The supply of commercial oven is being stopped because China is the main supplier of this industry wherein raw material and finished products are imported. The electronic industry is facing issues like production, supply, and increase of prices. If the trade barriers remain the same, then it can increase the prices of commercial oven, which will further lead to a decrease in the sale of the commercial oven.
Top Impacting Factors: Market Scenario Analysis, Trends, Drivers andImpact Analysis
The demand for commercial ovens is increased in restaurants, hotels, and bakeries because of the taste preferences of the customer decline from traditional food. The increase in the consumption of pizzas, burgers, and pastries, has increased the requirement of ovens. The growing increase in the employment level, increase in disposable income, and change in living standards have increased the growth of the global commercial market. With the rise in the trend of working women, they can contribute less time in the kitchen, and mostly depend on restaurants, hotels, and bakeries for food.
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As they have to order, and they get their meal at their doorstep. The main contribution of increase the demand for the commercial oven is from online platformssuch as Zomato and Swiggy, wherein food can be ordered and the consumer can also get discounts, which has contributed to the growth of the commercial oven market. The commercial oven is segmented into different types of grillers, convection oven, and solo oven. Conventional oven is used for the heating purpose in which heat is equally distributed inside the oven and is mostly used in the restaurants and bakeries. Whereas solo oven used for boiling purpose in which baking and grilling is not possible. So, the different hotels according to their requirement of preparing the food, prefer different types of oven.
North America holds the highest revenue share in the commercial oven market owing to high demand for technology according to the preference of the customer. These countries can spend on these items. China is one of the major suppliers of the commercial oven because of the affordable raw material and finished product. China is scanning the market and checking the taste and preferences of the customer. Technology up-gradation is one of the major tools, which increases the demand for commercial oven.
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Key Benefits of the Report:
This study presents the analytical depiction of the commercial oven market along with the current trends and future estimations to determine the imminent investment pockets.
The report presents information related to key drivers, restraints, and opportunities along with detailed analysis of the commercial oven market share.
The current market is quantitatively analyzed to highlight the Commercial Oven Market growth scenario.
Porter’s five forces analysis illustrates the potency of buyers & suppliers in the market.
The report provides a detailed global thermistor market analysis based on competitive intensity and how the competition will take shape in coming years.
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How to use electric surfboard safely?
Precautions
When you're ready to buy an electric surfboard, there are a few things you need to keep in mind. You want to make sure you buy a surfboard that is the right size for you, has the features you want, and is within your budget. You also want to make sure that the surfboard you buy is from a reputable company. With so many electric surfboards on the market, it can be confusing where to start. That's why it's important to do your research before buying.
How to use electric foil?
Here's a step-by-step guide on how to use your electric surfboard: Make sure the board is turned on and the battery is fully charged. Put your surfboard in the water and stand on it like you would a normal surfboard. Use the throttle to start moving forward.
An electric surfboard, or electronic board, is a surfboard that incorporates a motor and batteries. Since the first electronic surfboard, its stability has been improved. This makes it easier to catch waves and ride for longer periods of time. Here are some tips on how to use your electric surfboard. Choose the right board. There are many types of e-skateboards, so be sure to choose one that fits your riding style. Get familiar with the controls. Before riding, spend some time learning about the throttle, brakes, and other functions of your board. Start in shallow water.
Safety Precautions
If you're new to electric surfboards, or surfboards of any kind, it's important to take some safety precautions before surfing. Here are some tips on how to stay safe while using an electric surfboard. Always put the surfboard in the water before turning on the motor. This will help prevent the board from suddenly shooting out from under you and injuring you or someone else. If you are not an experienced surfer, it is best to stay close to the shore. That way, if you do fall off the board, you don't have to swim very far to be safe.
How to stay safe?
When using an electric surfboard, it is important to take some safety precautions to ensure a safe and fun experience. Here are some tips on how to stay safe while riding a power surfboard: Wear a life jacket. Regardless of your swimming level, it's best to wear a life jacket when using a power surfboard. This will help keep you safe in case you fall off the board and need some help getting back to shore. Avoid crowded places. It is best to avoid places with many people or other obstacles. This will help reduce the chance of a collision and give you more room to enjoy your ride.
What to do in an emergency?
As with any new technology, security concerns need to be considered. Here are some tips on how to stay safe while using an electric surfboard. Never surf alone. It is best to be accompanied in an emergency. Be aware of your surroundings. Before you start surfing, make sure you know where you are and what's around you. Keep away from power cords.
What age can ride an eFoil?
There is no definite answer to this question as it depends on various factors such as the country you are in, the company you use the hydrofoil with, and your personal level of experience. However, as a general guide, most companies do not allow riders under the age of 18, and recommend that riders have at least some experience with surfing or other skateboarding. If you're not sure, it's best to check with the company before booking a meeting.
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Uncovering Critical Factors In Article Forge Review
Fundamental Criteria In Article Forge Review - An Analysis
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The Past, Present, Future of Shenzhen Huang Qiang Bei (Volume 2)
——Slkor, Song Shiqiang
The Past, Present, Future of Shenzhen Huang Qiang Bei (Volume 2)
——Slkor, Song Shiqiang
In 1992, Deng Xiaoping visited Shenzhen, which supported and affirmed the Shenzhen economic model and inspired the people of Shenzhen. With the opening up of China to the outside world, the economic consumption center of Shenzhen gradually moved westward beyond Luohu District, and the focus was in the Futian District in the 1990s. Over the years, a middle class with consumption power emerged, and with the accumulation and development of the industrial base, a market of division of labor and spontaneity was formed. Hua Qiang Bei, located in Futian District, developed into the Hua Qiang Bei Business Circle with the electronics street as the industry leader, creating an economic miracle.
Mr. Song Shiqiang, General Manager of Slkor and Kinghelm
In 1994, Vanguard Super Department moved to Hua Qiang Bei and introduced the Singaporean "warehouse mall" model, which was a key factor in activating the whole Hua Qiang Bei Business Circle. The department store's success led to the transformation of more than 40 buildings in the Shangbu Industrial Zone into commercial areas, and the rise of various other businesses such as the "International Electrical Appliance City" and the "Manha Clothing Mall." The author, Song Shiqiang, also mentions his earliest connection with Hua Qiang Bei and his efforts to work for its prosperity.
Second direct-sale store of SlkorMicro Semicon Co., Ltd. (Slkor) in Hua Qiang Bei, Shenzhen
The market, Hua Qiang Bei, an electronics market in Shenzhen, China has been a hub for small and medium-sized enterprises, and many successful companies have emerged from it.
The author, Song Shiqiang, is the general manager of Kinghelm and Slkor, two companies that started in Hua Qiang Bei. The author discusses the success of the Chinese economy, which he attributes to the complementation of the state-owned enterprises and small private businesses. The author also discusses the growth of Hua Qiang Bei and how it has been nurtured by the government and supported by state-owned enterprises. The passage also contains personal anecdotes about the author's experiences in Hua Qiang Bei and the people he has met there. Finally, the author mentions that Kinghelm and Slkor have moved their headquarters to Shenzhou Computer Building in Bantian, Longgang, and that Slkor's IC design and research team is now located in Korea and Suzhou, while Kinghelm's processing plants are located in Tangxia, Dongguan, and Li.
Hua Qiang Bei is an electronic market located in Shenzhen, China. It is famous for being the world's largest electronics market and a hub for electronic components, including emulational mobile phones, Bluetooth headsets, and other electronic products. The market is known for its fierce competition, creativity, and the ability to produce billionaires. The influx of migrants from Pearl River Delta Region and Shenzhen brings fierce competition and creativity. Hua Qiang Bei Chaoshan bosses are famous for daring to fight, which combines the bloodiness of Hunan people, Society of Brothers tradition of Sichuan and Chongqing people without procrastination. The market's products are mostly electronic components, characterized by storage capacity and convenience of transportation, which can earn money decades later and thousands of kilometers away. Additionally, the market has electronic components with high unit price and high standardization, and the customers are basically 2B manufacturers, making the transaction mostly wholesale, where many people can make money easily. The active electronic components have the characteristics of unique model correspondence; they can't be used universally with a single difference. Therefore, if the products of downstream customers just lack this material, scarce material number can earn a lot of money, which belongs to commercial compensation value. Like Kinghelm and Slkor, Hua Qiang Bei's companies all belong to the electronic and information industries, which is in line with this great era.
Company: Shenzhen SlkorMicro Semicon Co., Ltd.
Contact Person: Mr. Song
Email: [email protected]
Website: http://www.slkoric.com/
Telephone: +86-0755-83044319
City: Shenzhen
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Aluminum Market: Products, Applications & Beyond
Aluminum is a versatile element with several beneficial properties, such as a high strength-to-weight ratio, corrosion resistance, recyclability, electrical & thermal conductivity, longer lifecycle, and non-toxic nature. As a result, it witnesses high demand from industries like automotive & transportation, electronics, building & construction, foil & packaging, and others. The high applicability of the metal is expected to drive the global aluminum market at a CAGR of 5.24% in the forecast period from 2023 to 2030.
Aluminum – Mining Into Key Products:
Triton Market Research’s report covers bauxite, alumina, primary aluminum, and other products as part of its segment analysis.
Bauxite is anticipated to grow with a CAGR of 5.67% in the product segment over the forecast years.
Bauxite is the primary ore of aluminum. It is a sedimentary rock composed of aluminum-bearing minerals, and is usually mined by surface mining techniques. It is found in several locations across the world, including India, Brazil, Australia, Russia, and China, among others. Australia is the world’s largest bauxite-producing nation, with a production value of over 100 million metric tons in 2022.
Moreover, leading market players Rio Tinto and Alcoa Corporation operate their bauxite mines in the country. These factors are expected to propel Australia’s growth in the Asia-Pacific aluminum market, with an anticipated CAGR of 4.38% over the projected period.
Alumina is expected to grow with a CAGR of 5.42% in the product segment during 2023-2030.
Alumina or aluminum oxide is obtained by chemically processing the bauxite ore using the Bayer process. It possesses excellent dielectric properties, high stiffness & strength, thermal conductivity, wear resistance, and other such favorable characteristics, making it a preferable material for a range of applications.
Hydrolysis of aluminum oxide results in the production of high-purity alumina, a uniform fine powder characterized by a minimum purity level of 99.99%. Its chemical stability, low-temperature sensitivity, and high electrical insulation make HPA an ideal choice for manufacturing LED lights and electric vehicles. The growth of these industries is expected to contribute to the progress of the global HPA market.
EVs Spike Sustainability Trend
As per the estimates from the International Energy Agency, nearly 2 million electric vehicles were sold globally in the first quarter of 2022, with a whopping 75% increase from the preceding year. Aluminum has emerged as the preferred choice for auto manufacturers in this new era of electromobility. Automotive & transportation leads the industry vertical segment in the studied market, garnering $40792.89 million in 2022.
In May 2021, RusAl collaborated with leading rolled aluminum products manufacturer Gränges AB to develop alloys for automotive applications. Automakers are increasingly substituting stainless steel with aluminum in their products owing to the latter’s low weight, higher impact absorption capacity, and better driving range.
Also, electric vehicles have a considerably lower carbon footprint compared to their traditional counterparts. With the growing need for lowering emissions and raising awareness of energy conservation, governments worldwide are encouraging the use of EVs, which is expected to propel the demand for aluminum over the forecast period.
The Netherlands is one of the leading countries in Europe in terms of EV adoption. The Dutch government has set an ambitious goal that only zero-emission passenger cars (such as battery-operated EVs, hydrogen FCEVs, and plug-in hybrid EVs) will be sold in the nation by 2030. Further, according to the Canadian government, the country’s aluminum producers have some of the lowest CO2 footprints in the world.
Alcoa Corporation and Rio Tinto partnered to form ELYSIS, headquartered in Montréal, Canada. In 2021, it successfully produced carbon-free aluminum at its Industrial Research and Development Center in Saguenay. The company is heralding the beginning of a new era for the global aluminum market with its ELYSIS™ technology, which eliminates all direct GHG emissions from the smelting process, and is the first technology ever to emit oxygen as a byproduct.
Wrapping Up
Aluminum is among the most widely used metals in the world today, and is anticipated to underpin the global transition to a low-carbon economy. Moreover, it is 100% recyclable and can retain its properties & quality post the recycling process.
Reprocessing the metal is a more energy-efficient option compared to extracting the element from an ore, causing less environmental damage. As a result, the demand for aluminum in the sustainable energy sector has thus increased. The efforts to combat climate change are thus expected to bolster the aluminum market’s growth over the forecast period.
#Aluminum Market#aluminum#chemicals and materials#specialty chemicals#market research#market research reports#triton market research
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“Recently Released Market Study: The Future of the Zinc-Bromine Battery Market by Global Market Size, Distribution and Brand Share, Key Events and Competitive Landscape”.
The global Zinc-Bromine Battery Market was valued at USD 36.92 Billion in 2021 and is expected to reach USD 182.05 Billion by the year 2028, at a CAGR of 25.6%.
The battery market is currently in a dimensional change, with the high demand for energy-dense, long-lasting and inexpensive energy storage devices being an unwavering goal to meet the increasing demand for compact electronic devices, Electric vehicles, and power sources. Zinc-Bromine Batteries hold dense energy storage capacity by plating metallic zinc as a solid onto the anode plates in the electrochemical cell during charging. The total energy storage capacity of the system depends on both the size of the cell (electrode area) and the size of the electrolyte reservoir. Flow batteries with several redox pairs in aqueous media are one of the most promising technologies for large-scale energy storage. Among these, Zinc-Bromine batteries are very attractive because of their amazing longevity properties. Electrochemical energy storage solution that offers a range of options to successfully manage energy from renewable sources, minimize energy losses, reduce overall energy consumption and costs, and ensure the security of supply. Zinc-Bromine Battery provides Continuous energy delivery with a high discharge rate for up to 10 hours or longer.
Introspective Market Research report presents detailed analysis on the Zinc-Bromine Battery Market consumption trends by globally, historic and forecast consumption volumes and values at market and category level. It also provides indispensable data on brand share, distribution channels, profiles of companies active in the global Zinc-Bromine Battery market along with latest industry news, in addition to mergers and acquisitions. This allows domestic and foreign companies to identify the market dynamics to account sales overall and to know which categories and segments are showing growth in the coming years.
Read More: https://introspectivemarketresearch.com/reports/zinc-bromine-battery-market/
#Global Zinc Bromine Battery#Zinc Bromine Battery Size#Zinc Bromine Battery Share#Zinc Bromine Battery Growth#Zinc Bromine Battery Trend#Zinc Bromine Battery segment#Zinc Bromine Battery Opportunity#ZincBromine Battery Analysis 2022
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