#Sodium Carbonate Manufacturing Plant Project Report
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Sodium Carbonate Manufacturing Plant Project Report
The report provides insights into the landscape of the sodium carbonate industry at the global level. The report also provides a segment-wise and region-wise breakup of the global sodium carbonate industry.
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What Global Soda Ash Market Trends Foster the Market CAGR at 6.2& in the Forecast Period?
The global soda ash market growth & size was valued at USD 19.79 billion and is anticipated to rise at a CAGR of 6.2% in the coming period. The expansion of the industry is propelled by its crucial role in glass manufacturing, specifically in the introduction of flat glass and container glass coating. The increase in the soda ash market is primarily fostered by the growing production of glass and ceramics. Present years have observed heightened automobile sales and an increase in construction projects, both contributing to an augmented requirement for glass. For instance, the Ministry of Statistics and Program Implementation in India predicts a double-digital growth of 10.7% in the construction sector for the financial year 2022. This growth is attributed to the government’s heightened emphasis on infrastructure initiatives, along with growth in residential and commercial construction sectors.
Furthermore, the industry is predicted to witness increased demand for the introduction of detergents, soaps, and shampoos, as they play an important role in maintaining the pH level of water and developing its effectiveness. This is predicted to contribute increasingly to the overall growth of the global market. Additionally, the industry is observing growth fostered by developing applications, including its usage in rechargeable batteries and metallurgical procedures. In the kingdom of rechargeable batteries, the industry is employed in the extraction and smelting of different metals, further propelling its development.
The growing uptake of household and fabric cleaning products around different end-user segments, including commercial, industrial, and laundry applications, is introducing favorable market prospects. The growing demand for soda ash in detergent and soap is attributed to its effectiveness in eliminating grease stains and alcohol patches from fabrics. Producers are actively developing their technologies to develop production output and carry high-quality products to customers. These initiatives contribute significantly to the substantial profits observed by soda ash producers in the market. Moreover, the upward growth in oil recovery practices and the emergence of new plant facilities are propelling a rise in demand for soda ash. The continuous expansion of the market is attributed to the significant existence of established market players. In addition, the burgeoning industries, specifically in metallurgy, and chemicals, are predicted to further propel the growth of the global soda ash market demand.
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On the basis of the soda ash market segmentation, the glass manufacturing industries segment is predicted to predominant driver of market growth over the next seven years. The predicted advancement and substantial development in the glass manufacturing application segment are predicted to reinforce market growth in the coming period. Soda ash plays an important role in different facets of glass manufacturing, whether for containers, fiberglass insulation, or flat glass catering to the housing, automotive industries, and commercial buildings. The increasing inclination towards glass packaging over plastic packaging is predicted to further elevate the need for the leading segment, namely glass manufacturing. The versatility of glass, accessible in different sizes and shapes such as small sizes for bottle manufacturing and flat shapes for solar processes, is addressing a broad variety of requirements, making it an attractive investment for vendors during the forecast period.
On the basis of region, North America emerges as the leading revenue contributor in the global market, primarily attributed to the US being the world’s largest producer of natural soda ash, thanks to considerable deposits of Trona. Trona, a gray-white or yellowish-white monoclinic mineral, serves as a sodium carbonate compound processed into ash. The region is witnessing significant demand for soda ash, specifically in the glass and detergent industries. The existence and development of key global market players in North America present lucrative market growth opportunities for market growth. A notable example is the December 2021 announcement by Sisecam, a Turkish glassmaker, concerning the acquisition of 60% of Ciner’s soda business around the U.S., presenting the strategic initiatives contributing to the market’s expansion around the region.
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What are the costs associated with building, operating and maintaining an ETP and how can they be reduced?
India's ecology is worse due to rapid urbanisation and economic expansion. Regarding the detrimental effects on public health and the urban environment, there is grave concern. In light of this, the GOI established the National River Conservation Plan (NRCP) and delegated responsibility for addressing the problem of environmental deterioration brought on by river pollution to the JnNURM. The goal is to enhance the water supply and sewage system by lowering pollution of the environment and water. Construction of STPs as well as effective STP O&M are crucial for ensuring improvements to the water environment. However, few Indian towns have much expertise with managing and maintaining STPs.
Let’s have a discussion on the costs associated with ETP building and O&M, and how they can be reduced.
O&M includes tasks like managing a budget, coordinating service charges, managing assets, advising on house connections, maintaining sewers, monitoring industrial effluent, pumping stations, and treatment plants, maintaining water quality, managing ledgers, protecting the environment, among other things.
Building Costs
It can be observed that the cost decreases quite abruptly as system size grows, while it is extremely high for smaller systems. In actuality, the cost of an infrastructure rises in direct proportion to the project's size, length, or volume. Installation costs generally make up between 15 and 40% of the project budget, depending on how much pre-packaging is done and how much site preparation is needed.
Thus, if we compare a STP of, say, 50 MLD to one of 300 MLD, the cost of the latter will be around 4 times minimum and 6 times maximum.
Energy Costs
Based on the kW, numbers, and hours of electrical equipment functioning, the energy expenses are easily calculated. Typically, issues cannot be thoroughly worked out during the project proposal stage. Based on comparable reported STPs, a generalisation may be made. Well, its not possible to reduce the energy costs because it all depends on the effluent quality. One thing which can be done is proper management of the energy utilized which can reduce the energy costs significantly.
Materials and Fuel
If sufficient bicarbonate alkalinity is not present in the raw sewage to the level of at least eight times the ammonia to be nitrified, chemical consumption in regard to biological STPs will primarily be for the final chlorine consumption and addition of sodium carbonate. When a new STP is being planned for, this cannot be estimated simply. Sewage often has the necessary bicarbonate alkalinity, though. Costs for gasoline and other consumables should also be estimated as needed. While putting together the DPR, it is challenging to forecast this number. Therefore, it must be regarded as having occurred at that time, but 10% of the cost of civil works must be accounted for as "unforeseen things" for future projects, and the funds must be deposited in a security that won't require them until 20 years later.
Generalized solution to reduce the costs involved:
The seed money is a provision that would be used to cover system upgrades and unanticipated costs. There are no absolute standards for determining its worth. Whether there is a revenue excess in the first place will determine this. The remaining taxes, debt servicing, cess, and duty components are added when they become available.
An iterative budgeting process is a good one. The costs are calculated first, and then the earnings are confirmed using levies. A budget with a revenue surplus can be created by changing the rate of taxes. Consumers will have the last say, and if they refuse to pay for the services they use or contest the cross-subsidy policy, there may be consequences.
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A well-known manufacturer of water and wastewater treatment facilities is Netsol Water. We have a reputation for being the best producer of commercial RO plants, industrial RO plants, sewage treatment plants, effluent treatment plants, and much more. In addition, our USP is our round-the-clock client support. We can also assist you in cost estimation of wastewater treatment plants.
Call us at +91-9650608473 or send an email to [email protected] if you have any more questions or concerns about the purchase of a product.
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Calcium Silicate Market Key Competitors, SWOT Analysis, Business opportunities, Trend Analysis 2028
Calcium silicate is a powder procured from limestone and diatomaceous earth. It is extensively used across different end-user industries and is likely to witness rising applications in the years to come. Market Research Future (MRFR) has conducted an analysis recently which states that the Calcium Silicate Market is projected to be worth USD 321 Million by 2028, registering a CAGR of 4.61% during the forecast period (2021 - 2028). The growth pace of the market can be accredited to the key advantages offered by the product such as passiveness towards the fire.
Calcium silicate has paved its way across the construction sector which is poised to influence the revenue growth of the market primarily. It is anticipated to catalyze revenue creation for the players of the calcium silicate market over the next few years. In addition, the implementation of favorable regulatory laws for protecting the health of the workers at construction sites are also projected to support the expansion of the market in the forthcoming years. In addition, rapid industrialization has also unleashed developmental opportunities to the calcium silicate market. The use of the product for insulation in industries is likely to lead the proliferation of the market in the years to come.
Calcium silicate is expected to observe an upsurge in demand for the production of sealants. It helps in sealing micropores which are anticipated to expedite demand generation across the projection period. In addition, it is also likely to gain popularity as an anti-caking agent in food preparation. Also, the product is poised to pave its way across the food & beverage industry as a food additive. These factors are poised to accelerate revenue creation for the participants of the calcium silicate market over the next couple of years.
Market Segmentation:
The Global Calcium Silicate Market is segmented on the basis of the Application and Region.
On the Basis of the Application, the Global Calcium Silicate Market is segmented into building materials, insulation, sealants, food additive, pharmaceuticals, and others.
The Global Calcium Silicate Market is segmented into five key regions namely Asia Pacific, Europe, North America, Latin America, and the Middle East & Africa.
Competitive Analysis:
Some of the prominent manufacturers in the global market of Calcium Silicate are American Elements (U.S.), Promat International NV (Belgium), Morgan Advanced Materials (U.K), Prochem, Inc. (U.S.), Spectrum Chemical Manufacturing Corp. (U.S.), Materion Corporation (U.S.), Associated Ceramics & Technology, Inc. (U.S.), Mil-Spec Industries Corporation (New York), Pyrotek (India), Skamol (Denmark), ZIRCAR CERAMICS (India), and Industrial Insulation Group, LLC (U.S.).
Industry News
Dec 2021 - The Ma Hong facility of Ganfeng Lithium, opened in 2012, is located in Xinyu City, Jiangxi Province's High-tech Development Zone. The total designed volume of battery-grade lithium hydroxide in the plant will reach 81,000 tonnes after a project with an yearly output of 50,000 tonnes of lithium hydroxide is put into operation; it can also produce 15,000 tonnes of lithium carbonate, 12,000 tonnes of lithium chloride, and other compound products each year. The facility runs on natural gas instead of coal, recycles 100% of condensed water, supports the use of by-products, and transports items such as calcium silicate slag, sodium sulfate, calcium sulfate slag, and other by-products produced during the manufacturing process.
Nov 2021 - Researchers have identified a high-pressure calcium silicate perovskite (CaSiO3) is a naturally occurring mineral from Earth's lower mantle for the first time. The scientists termed the newly discovered crystalline compound davemaoite. It was discovered trapped as an inclusion inside a deep-earth diamond that developed at extreme pressure and heat more than 660 kilometers below the Earth's surface.
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#Calcium Silicate#Calcium Silicate Market#Global Calcium Silicate Market#Calcium Silicate Industry#Calcium Silicate Market Size#Calcium Silicate Market Share
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Soda Ash Market - Forecast(2022 - 2027)
Soda ash, also known as sodium carbonate or limestone, is an essential raw material used for the manufacturing of glass, chemicals, detergents, and various other industrial products. The glass industry is gaining strong traction across emerging economies on the back rapid construction across urban parts. Additionally, the chemicals and detergents industries are doing fairly well as well owing to increasing disposable income, which has incremented the sales of washing machines and mushroomed laundry services.
Another major factors boosting the global
soda ash market
is the technological advancements in terms of extraction processes, namely room and pillar mining technique. Soda ash is extracted from trona and sodium carbonate decahydrate. The world’s largest deposit of trona is in the Green river basin of Wyoming where 47 billion tons of soda ash can be recovered from 56 billion tons of bedded trona. Underground room and pillar mining, using conventional and continues mining techniques is the primary method for extracting trona. As compared to solution mining technique where only 30% soda ash could be obtained, the room and pillar mining technique can obtain an average of 45% soda ash.
Global Soda Ash Market Outlook Through to 2025
According to this business intelligence report by IndustryARC, the global soda ash market was worth $16,545 million as of 2018, and its value will continue to growing with a CAGR of 3.4% during the forecast period of 2019 to 2025. Based on the market research, it is concluded that soda ash finds its major application in the glass manufacturing industry for the production of glasses mainly for automotive and construction industries. The segment currently holds the largest market share and is estimated to experience growth at a CAGR of 3.4% during the forecast period.
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Flourishing Flat Glass Market Opening New Revenue Avenues in Soda Ash Market
Dense soda ash, light soda ash, and baking soda are the three primary grades of soda ash available in the market with similar chemical characteristics but varying physical traits. Light soda is a fundamental alkali chemical used for aluminum cleaning, dying, and water softening. Dense soda ash is used in glass manufacturing including flat glass, container glass, plate glass, automotive glass, and curtain wall glass. IndustryARC projects healthy growth in the global
flat glass market
, which is expected to reflect positively over the soda ash market too.
Baking soda is manufactured from light soda ash, which is used in poultry for animal feed, leather tanning, fire extinguishers, vegetable cleaning processes, blasting of metals, production of chemicals, oral care products, deodorizers, and personal care products. Over the past few years, the soda ash market is growing progressively driven by its various applications. Sodium carbonate heptahydrate is extensively used by the brick industry as a dampening agent to decrease the amount of water needed to extrude the clay. Due to its properties such as high melting point, stable but hygroscopic solid, soda ash are highly favorable in industrial manufacturing.
Soda ash is also mined out from alkaline lakes including the Lake Magadi by the dredging process. It is also self-regenerating so it will never exhaust from nature, which is a bankable factor for the growth of the soda ash market. The demand for container glass is increasing in pharmaceutical packaging and food & beverages industry owing to their ability to preserve the content. On the back of rising environmental concerns, soda ash is used for refining the alkalinity of lakes that are affected by acid rain. Moreover, it helps to reduce the acid presence during the emission from power plants. Emerging urbanization and rapid growth in industrialization is increasing building constructions. Consequently, the demand for glass applications is boosting the growth of the soda ash market.
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Global Soda Ash Market: Regional Analysis
Asia-Pacific will witness significant growth in the soda ash market with the market share rising to more than 50% during the forecast period. The Asia Pacific soda ash market is flourishing due to increased production of glass, detergents as well as other chemicals, and prosperity of emerging economies such as China, India, Thailand, Malaysia, Vietnam, and others.
Global Soda Ash Market Companies and Competitive Landscape
Nirma Limited is the fourth largest producer of soda ash with an investment of $1.6 billion. Nirma is known for owing the only soda ash plant in the world equipped with DCS controls. Soda ash is the main material for the manufacturing of detergents.
Tata Chemicals Limited is one of the leading key player with a total capacity of around 5.5 million tonnes of soda ash per annum. Tata introduced de-bottlenecking of Mithapur facility that will enhance its soda ash capacity by about 150,000 metric ton with upgrade turbines for higher efficiency that will reduce carbon footprint to support plant sustainability.
OCI Wyoming supplies 90% soda ash to Asia, Europe, Africa and North America, and have the largest deposit of trona in the world.
GHCL limited is India’s leading producer with an annual production capacity of 975 Thousand MTPA.
Some of the other prominent players are Solvay SA, FMC Corporation, Ciech SA, Oriental Chemical Industries, and Soda Sanayii.
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Key Soda Ash Market Challenge:
The naturally forming soda ash is mined from an ore called trona. Excess use of trona can bound the manufacturing opportunities of soda ash which is one of the major challenges for the market. Exhaustion of natural resources in earth distresses the mineral ores. As trona ore get depleted continuously, it can affect the manufacturing process that can cause a reduction of soda ash and thus causing a rise in price for the process.
Soda ash is a white powder that can be obtained by mining or Solvay process. Increasing demand for household detergents is driving the growth of the soda ash market. Soda ash is used for numerous applications in different sectors such as manufacturing of glasses, animal feeder, paper and pulp, and personal care products. Manufactures are enhancing mining techniques to increase mining recovery. The Asia Pacific is dominating the region with a high demand for glasses emerging from the construction and automotive sectors.
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Glucaric Acid Market – Emerging Players May Yields New Opportunities Till 2025
1st October 2021 – The global Glucaric Acid Market is estimated to touch US$ 1.30 billion by the completion of the prediction period. The market was appreciated at US$ 550.40 million in the year 2016. The prohibition on the usage of phosphates in the manufacturing of detergents owing to their poisonous characteristics, growing demand from manufacturing industries of foodstuff constituents, Detergents, soaps and its use such as de-icing, erosion inhibitors has augmented demand for Glucaric acid.
The demand for this acid is estimated to rise due to strict rules limiting the usage of unsafe chemicals, thereby restricting ecological destruction. Increasing manufacture of liquid detergent, it was the biggest end user of this product in the year 2016, estimated to perform an important part in boosting the demand in the market. The market estimated to develop at a CAGR of 10.1% for the duration of the prediction. The Glucaric Acid market on the source of Type of Application could span De-icing applications, Detergents, Erosion inhibitors, Foodstuff constituents, and others. The manufacturer of detergent is the biggest end user of this product tracked by manufacturing of foodstuff. The detergent manufacturing companies have observed increase in demand for the product owing to the prohibition on the usage of phosphates, mainly in liquid detergents. Increasing demand for recyclable detergents too projected to take an optimistic influence on the market above the subsequent eight years.
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Glucaric acid’s use could, likewise, be traced in foodstuff constituents. It was responsible for 22.1% stake of the market by means of income in the year 2016. Increasing consciousness regarding the prominence of this product in keeping the stages of important nutrients has caused in augmented ingestion in daily mealtime. This has performed an important part in motivating its demand. The Glucaric Acid market on the source of Type of Product could spanD-GlucaricAcid-1, 4-Lactone, Calcium D-Glucarate, Potassium Sodium D-Glucarate, Pure GlucaricAcid, and others. The Calcium D-Glucarate is estimated to develop at a CAGR of 8.4% by price, for the duration of prediction, because of widespread uses in the foodstuff manufacturing boosting the stages of minerals and vitamins in the body. Therefore, protecting the important body part; for instance, liver and lungs.
The D-GlucaricAcid-1, 4-Lactone, is one of the extensively utilized by-products. It is expected to develop at the subsequent maximum CAGR of 10.4% by means of price, for the duration of prediction. The product is utilized in the treatment of cancer. It has observed increasing demand from the developing medicinal subdivision of Asia Pacific, particularly from nations having a greater occurrence of this sickness, like in India and China. The Glucaric Acid market on the source of Area with respect to Trades in terms of intake, Profits, Market stake and Development percentage in these areas, for the duration of the prediction could span North America [U.S.A], Europe [Germany, U.K.], Asia Pacific [Japan, China], Central & South America [Brazil], Middle East & Africa.
By the source of geography, Asia Pacific observed the maximum demand for Glucaric acid and its byproducts in the year 2016. This area is likewise estimated to develop at the maximum CAGR of 11.6% for the duration of prediction. Increasing demand for this product from the manufacturers of foodstuff and detergent, particularly in developing nations such as India and China, has boosted the development of the market above the subsequent eight years. Taiwan, China, and India are known to have plentiful of sources of raw material and inexpensive manual labor, as equated with North American and European nations. Therefore, most important companies comprising Rennovia and River top have set up production plants in these developing nations of Asia Pacific.
North America held the subsequent biggest stake of 22.6% by means of income, in the year 2016. It was the innovator in presenting this product. As it is a carbon-based product, the usage of Glucaric acid in this nation has been cheered by the governing organizations for example Environmental Protection Agency [EPA], additionally initiating the demand in the market.
The statement revises Trades in terms of intake of Glucaric Acid in the market; particularly in North America, Europe, Asia Pacific, Central & South America, and Middle East & Africa. It concentrates on the topmost companies operating in these regions. Some of the important companies operating in the field on international basis are Shanghai Meicheng Chemical Co. Ltd., River top Renewables, Chemo’s, Rennovia Inc., and, Kalion Inc.
Request a Sample Copy of Glucaric Acid Market Report @ https://www.millioninsights.com/industry-reports/glucaric-acid-market/request-sample
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Sodium Carbonate Manufacturing Plant Setup
The market for sodium carbonate is driven by several key factors and influenced by evolving industry trends. One of the primary market drivers is the increasing demand for glass products in construction and automotive industries.
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Glucaric Acid Market Strategies With Forecast Till 2025
1st October 2021 – The global Glucaric Acid Market is estimated to touch US$ 1.30 billion by the completion of the prediction period. The market was appreciated at US$ 550.40 million in the year 2016. The prohibition on the usage of phosphates in the manufacturing of detergents owing to their poisonous characteristics, growing demand from manufacturing industries of foodstuff constituents, Detergents, soaps and its use such as de-icing, erosion inhibitors has augmented demand for Glucaric acid.
The demand for this acid is estimated to rise due to strict rules limiting the usage of unsafe chemicals, thereby restricting ecological destruction. Increasing manufacture of liquid detergent, it was the biggest end user of this product in the year 2016, estimated to perform an important part in boosting the demand in the market. The market estimated to develop at a CAGR of 10.1% for the duration of the prediction. The Glucaric Acid market on the source of Type of Application could span De-icing applications, Detergents, Erosion inhibitors, Foodstuff constituents, and others. The manufacturer of detergent is the biggest end user of this product tracked by manufacturing of foodstuff. The detergent manufacturing companies have observed increase in demand for the product owing to the prohibition on the usage of phosphates, mainly in liquid detergents. Increasing demand for recyclable detergents too projected to take an optimistic influence on the market above the subsequent eight years.
Access Glucaric Acid Market Report with TOC @ https://www.millioninsights.com/industry-reports/glucaric-acid-market
Glucaric acid’s use could, likewise, be traced in foodstuff constituents. It was responsible for 22.1% stake of the market by means of income in the year 2016. Increasing consciousness regarding the prominence of this product in keeping the stages of important nutrients has caused in augmented ingestion in daily mealtime. This has performed an important part in motivating its demand. The Glucaric Acid market on the source of Type of Product could spanD-GlucaricAcid-1, 4-Lactone, Calcium D-Glucarate, Potassium Sodium D-Glucarate, Pure GlucaricAcid, and others. The Calcium D-Glucarate is estimated to develop at a CAGR of 8.4% by price, for the duration of prediction, because of widespread uses in the foodstuff manufacturing boosting the stages of minerals and vitamins in the body. Therefore, protecting the important body part; for instance, liver and lungs.
The D-GlucaricAcid-1, 4-Lactone, is one of the extensively utilized by-products. It is expected to develop at the subsequent maximum CAGR of 10.4% by means of price, for the duration of prediction. The product is utilized in the treatment of cancer. It has observed increasing demand from the developing medicinal subdivision of Asia Pacific, particularly from nations having a greater occurrence of this sickness, like in India and China. The Glucaric Acid market on the source of Area with respect to Trades in terms of intake, Profits, Market stake and Development percentage in these areas, for the duration of the prediction could span North America [U.S.A], Europe [Germany, U.K.], Asia Pacific [Japan, China], Central & South America [Brazil], Middle East & Africa.
By the source of geography, Asia Pacific observed the maximum demand for Glucaric acid and its byproducts in the year 2016. This area is likewise estimated to develop at the maximum CAGR of 11.6% for the duration of prediction. Increasing demand for this product from the manufacturers of foodstuff and detergent, particularly in developing nations such as India and China, has boosted the development of the market above the subsequent eight years. Taiwan, China, and India are known to have plentiful of sources of raw material and inexpensive manual labor, as equated with North American and European nations. Therefore, most important companies comprising Rennovia and River top have set up production plants in these developing nations of Asia Pacific.
North America held the subsequent biggest stake of 22.6% by means of income, in the year 2016. It was the innovator in presenting this product. As it is a carbon-based product, the usage of Glucaric acid in this nation has been cheered by the governing organizations for example Environmental Protection Agency [EPA], additionally initiating the demand in the market.
The statement revises Trades in terms of intake of Glucaric Acid in the market; particularly in North America, Europe, Asia Pacific, Central & South America, and Middle East & Africa. It concentrates on the topmost companies operating in these regions. Some of the important companies operating in the field on international basis are Shanghai Meicheng Chemical Co. Ltd., River top Renewables, Chemo’s, Rennovia Inc., and, Kalion Inc.
Request a Sample Copy of Glucaric Acid Market Report @ https://www.millioninsights.com/industry-reports/glucaric-acid-market/request-sample
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Calcium Silicate Market 2021 Global Industry Size, Segments, Share and Growth Factor Analysis, Top Key Players Research Report 2027
Active calcium silicate Market – Market Overview
Active calcium silicate is gaining high importance in construction industry owing to superior properties such as low thermal conductivity and thermal shock resistance. It is extensively used in fire protection and acoustic insulation sector replacing asbestos in high temperature insulation application. Increasing government regulations towards fire safety standard coupled with penetration of passive fire protection in infrastructure activities is expected to positively influence the market growth.
Calcium Silicate Market is used in building brick and board form of electric furnace, blast furnace and oil refinery. Moreover, rising penetration of high temperature insulation in end use industries such as steel and petrochemical industry will further boost the market growth. Active calcium silicate is prepared through raw materials such as limestone, sodium silicate and hydrochloric acid. These materials act as intermediate in processing other chemical compounds and help providing structure and surface to active calcium silicate. Thus, dynamics of these aforementioned raw materials significantly impact prices of active calcium silicate market.
Robust industry growth of ceramic industry owing to rising modern structure in housing sector also anticipated to drive the product demand over the forecast period. These products are used in flooring owing to its characterises such as light weight, high hardness and resistance from thermal and shock. Furthermore, rising product penetration in false ceilings and roofing tiles for construction industry and automotive plants is projected to drive the market growth. Increasing government expenditure for building airports, roads and harbours are expected to provide lucrative opportunity to manufacturer. In addition, increasing developments in residential and commercial projects in emerging markets such as China, India and Brazil are anticipated to fuel the market growth over the forecast period. Europe is leading region in active calcium silicate market owing to advance technology and stringent regulations towards product standards and quality of products. Initiatives taken to preserve historical monuments by providing special paints & coatings to protect from fire and corrosion will boost the demand for active calcium silicate in the coming years. Asia Pacific is second largest market. China is the leading producing country in the active calcium silicate market due to strong industry base including rubber, paints & coatings and plastic industry. In addition, rising consumer awareness towards decorative walls and ceilings for better aesthetic appearance is anticipated to propel the global active calcium silicate market. Changing trade statistics in South Africa will boost the demand of active calcium silicate market growth.
Additionally, regulatory trends laid by OSHA and NIOSH towards product exposure can hinder the market growth. Excess exposure to product can cause severe damage to human health. These regulations are pertaining to high manufacturing cost, thereby leading to hamper the market growth.
Active calcium silicate Market – Competitive Analysis
Active calcium silicate market fragmented with presence of small scale as well as strong regional players from tier 1 market. The key players in the market are adopting strategies such as partnership or agreement with distributors to meet global demand of active calcium silicate and strengthen competitive aspects. The major players are investing heavily in R&D in order to meet environmental legislation and minimize impact on environment. Increasing online portals can also open new lucrative opportunity for manufactures. These manufacturers are optimizing new techniques assuring their customers with the consistency in product & service quality thereby, increasing product offerings to the customers.
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Key Players:
Promat International, Weifang Hong Yuan Chemical Co., HIL Limited, Imerys Filtration Minerals Co., 2K Technologies Ltd., R.K. Oil Industries, Ramco Industries, Skamol limited, Xella Sverige AB, and Magnesia GmbH among others are some of the prominent players at the forefront of competition in the Global Active Calcium Silicate Market and are profiled in MRFR Analysis.
Industry/ Innovation/ Related News:
January 2016 – Promat International opened a new facility in Middle East at Dubai Investment Park. The DIP location provides good link to Abu Dhabi and other gulf countries. The production facility provides PROMASPRAY® FMII, PROMASPRAY® P300, and CAFCO® 400 and significant warehouse capacity for Promat boards, fire stopping and HPI products. This help the company to strengthen its position in Middle East market.
October 2017 –BASF developed a material containing high thermal insulation based on engineering plastic Ultradur brand for window profiles. With increasing demand of restoration and interior designing of residential projects BASF is developing product to the reduce steel with PVC compact materials. Active calcium silicate is one of the intermediate used in manufacturing plastic materials.
December 2016 – Brunel university in London had developed new form of insulation that can meet environmental regulation. The substance is prepared from aerogel, a Nano insulation material that posses low thermal conductivity than any other insulation material in the market. This material is affordable and effective in wall insulation that can resist any weather conditions.
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At Market Research Future (MRFR), we enable our customers to unravel the complexity of various industries through our Cooked Research Report (CRR), Half-Cooked Research Reports (HCRR), & Consulting Services.
MRFR team have supreme objective to provide the optimum quality market research and intelligence services to our clients. Our market research studies by products, services, technologies, applications, end users, and market players for global, regional, and country level market segments, enable our clients to see more, know more, and do more, which help to answer all their most important questions.
In order to stay updated with technology and work process of the industry, MRFR often plans & conducts meet with the industry experts and industrial visits for its research analyst members.
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Glucaric Acid Market In-deep Analysis And Experts Review Report till 2025
February 16, 2021: The global Glucaric Acid Market is estimated to touch US$ 1.30 billion by the completion of the prediction period. The market was appreciated at US$ 550.40 million in the year 2016. The prohibition on the usage of phosphates in the manufacturing of detergents owing to their poisonous characteristics, growing demand from manufacturing industries of foodstuff constituents, Detergents, soaps and its use such as de-icing, erosion inhibitors has augmented demand for Glucaric acid.
The demand for this acid is estimated to rise due to strict rules limiting the usage of unsafe chemicals, thereby restricting ecological destruction. Increasing manufacture of liquid detergent, it was the biggest end user of this product in the year 2016, estimated to perform an important part in boosting the demand in the market. The market estimated to develop at a CAGR of 10.1% for the duration of the prediction.
The Glucaric Acid market on the source of Type of Application could span De-icing applications, Detergents, Erosion inhibitors, Foodstuff constituents, and others. The manufacturer of detergent is the biggest end user of this product tracked by manufacturing of foodstuff. The detergent manufacturing companies have observed increase in demand for the product owing to the prohibition on the usage of phosphates, mainly in liquid detergents. Increasing demand for recyclable detergents too projected to take an optimistic influence on the market above the subsequent eight years.
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Glucaric acid’s use could, likewise, be traced in foodstuff constituents. It was responsible for 22.1% stake of the market by means of income in the year 2016. Increasing consciousness regarding the prominence of this product in keeping the stages of important nutrients has caused in augmented ingestion in daily mealtime. This has performed an important part in motivating its demand.
The Glucaric Acid market on the source of Type of Product could spanD-GlucaricAcid-1, 4-Lactone, Calcium D-Glucarate, Potassium Sodium D-Glucarate, Pure GlucaricAcid, and others. The Calcium D-Glucarate is estimated to develop at a CAGR of 8.4% by price, for the duration of prediction, because of widespread uses in the foodstuff manufacturing boosting the stages of minerals and vitamins in the body. Therefore, protecting the important body part; for instance, liver and lungs.
The D-GlucaricAcid-1, 4-Lactone, is one of the extensively utilized by-products. It is expected to develop at the subsequent maximum CAGR of 10.4% by means of price, for the duration of prediction. The product is utilized in the treatment of cancer. It has observed increasing demand from the developing medicinal subdivision of Asia Pacific, particularly from nations having a greater occurrence of this sickness, like in India and China.
The Glucaric Acid market on the source of Area with respect to Trades in terms of intake, Profits, Market stake and Development percentage in these areas, for the duration of the prediction could span North America [U.S.A], Europe [Germany, U.K.], Asia Pacific [Japan, China], Central & South America [Brazil], Middle East & Africa.
By the source of geography, Asia Pacific observed the maximum demand for Glucaric acid and its byproducts in the year 2016. This area is likewise estimated to develop at the maximum CAGR of 11.6% for the duration of prediction. Increasing demand for this product from the manufacturers of foodstuff and detergent, particularly in developing nations such as India and China, has boosted the development of the market above the subsequent eight years.
Taiwan, China, and India are known to have plentiful of sources of raw material and inexpensive manual labor, as equated with North American and European nations. Therefore, most important companies comprising Rennovia and River top have set up production plants in these developing nations of Asia Pacific.
North America held the subsequent biggest stake of 22.6% by means of income, in the year 2016. It was the innovator in presenting this product. As it is a carbon-based product, the usage of Glucaric acid in this nation has been cheered by the governing organizations for example Environmental Protection Agency [EPA], additionally initiating the demand in the market.
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The statement revises Trades in terms of intake of Glucaric Acid in the market; particularly in North America, Europe, Asia Pacific, Central & South America, and Middle East & Africa. It concentrates on the topmost companies operating in these regions. Some of the important companies operating in the field on international basis are Shanghai Meicheng Chemical Co. Ltd., River top Renewables, Chemo’s, Rennovia Inc., and , Kalion Inc.
Market Segment:
Glucaric Acid Product Outlook (Volume, Tons; Revenue, USD Thousand, 2014 - 2025)
• Pure glucaric acid
• Calcium D-glucarate
• Potassium sodium D-glucarate
• D-Glucaric acid-1,4-lactone
• Others
Glucaric Acid Application Outlook (Volume, Tons; Revenue, USD Thousand, 2014 - 2025)
• Food ingredients
• Detergents
• Corrosion inhibitors
• De-icing applications
• Others
Glucaric Acid Regional Outlook (Volume, Tons; Revenue, USD Thousand, 2014 - 2025)
• North America
• U.S.
• Europe
• Germany
• UK
• Asia Pacific
• China
• Japan
• Central & South America
• Brazil
• Middle East & Africa
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Calcium Silicate Market Share 2022 Trends, Opportunities and Future Outlook by 2030
Calcium silicate is a powder procured from limestone and diatomaceous earth. It is extensively used across different end-user industries and is likely to witness rising applications in the years to come. Market Research Future (MRFR) has conducted an analysis recently which states that the Calcium Silicate Market Share is projected to be worth USD 321 Million by 2028, registering a CAGR of 4.61% during the forecast period (2021 - 2028). The growth pace of the market can be accredited to the key advantages offered by the product such as passiveness towards the fire.
Calcium silicate has paved its way across the construction sector which is poised to influence the revenue growth of the market primarily. It is anticipated to catalyze revenue creation for the players of the Calcium Silicate Market Share over the next few years. In addition, the implementation of favorable regulatory laws for protecting the health of the workers at construction sites are also projected to support the expansion of the market in the forthcoming years. In addition, rapid industrialization has also unleashed developmental opportunities to the Calcium Silicate Market Share. The use of the product for insulation in industries is likely to lead the proliferation of the market in the years to come.
Calcium silicate is expected to observe an upsurge in demand for the production of sealants. It helps in sealing micropores which are anticipated to expedite demand generation across the projection period. In addition, it is also likely to gain popularity as an anti-caking agent in food preparation. Also, the product is poised to pave its way across the food & beverage industry as a food additive. These factors are poised to accelerate revenue creation for the participants of the Calcium Silicate Market Share over the next couple of years.
Market Segmentation:
The Global Calcium Silicate Market Share is segmented on the basis of the Application and Region.
On the Basis of the Application, the Global Calcium Silicate Market Share is segmented into building materials, insulation, sealants, food additive, pharmaceuticals, and others.
The Global Calcium Silicate Market Share is segmented into five key regions namely Asia Pacific, Europe, North America, Latin America, and the Middle East & Africa.
Competitive Analysis:
Some of the prominent manufacturers in the global market of Calcium Silicate are American Elements (U.S.), Promat International NV (Belgium), Morgan Advanced Materials (U.K), Prochem, Inc. (U.S.), Spectrum Chemical Manufacturing Corp. (U.S.), Materion Corporation (U.S.), Associated Ceramics & Technology, Inc. (U.S.), Mil-Spec Industries Corporation (New York), Pyrotek (India), Skamol (Denmark), ZIRCAR CERAMICS (India), and Industrial Insulation Group, LLC (U.S.).
Industry News
Dec 2021 - The Ma Hong facility of Ganfeng Lithium, opened in 2012, is located in Xinyu City, Jiangxi Province's High-tech Development Zone. The total designed volume of battery-grade lithium hydroxide in the plant will reach 81,000 tonnes after a project with an yearly output of 50,000 tonnes of lithium hydroxide is put into operation; it can also produce 15,000 tonnes of lithium carbonate, 12,000 tonnes of lithium chloride, and other compound products each year. The facility runs on natural gas instead of coal, recycles 100% of condensed water, supports the use of by-products, and transports items such as calcium silicate slag, sodium sulfate, calcium sulfate slag, and other by-products produced during the manufacturing process.
Nov 2021 - Researchers have identified a high-pressure calcium silicate perovskite (CaSiO3) is a naturally occurring mineral from Earth's lower mantle for the first time. The scientists termed the newly discovered crystalline compound davemaoite. It was discovered trapped as an inclusion inside a deep-earth diamond that developed at extreme pressure and heat more than 660 kilometers below the Earth's surface.
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POTASH ORES MARKET ANALYSIS
Potash Ores Market - Size, Share, Trends, and Forecast 2019 – 2027
Potash ore is the primary source for manufacturing potash, which is used in chemicals and fertilizers. Generally, it consists of potassium chloride, sodium chloride, silicate anhydrate, and carbonate. Potash ore is processed with various methods including chemical processes with hot leaching, and mechanical methods such as floatation. In the chemical method, potash ore is processed by hot leaching with crystallization potash salts from unsaturated salt brines. Furthermore, in floatation method halite and sylvite surfaces are moistened with water by the addition of acting chemicals namely surfactants. Potash finds major applications in fertilizers industry as potassium the third major plant and crop nutrient after phosphorus and nitrogen. As elemental potassium is not available in nature due to its violent reactive nature with water, potash ores have high demand.
Market Outlook
Global potash ores market size is projected to increase during the forecast period (2019-2027), owing to increasing demand for potassium from various industries around the world. Increasing demand for potash ore from the fertilizer industry is expected to support growth of the market in the near future. This demand is attributed to increasing demand for organic food and growing population around the world. Potash is an important nutrient for crops, which improves the yield and quality. Hence, this is expected to drive the market growth. Furthermore, increasing demand for sodium chloride from various industries is expected to increase the demand for potash ores and subsequently support the market growth. Sodium chloride has witnessed increasing demand from chemical industry for the production of caustic soda, sodium chloride, etc. Moreover, it is also used for the product in fish preservation.
However, increasing health concerns regarding consumption of potash fertilizers is expected to restrain the global potash ores market growth. Moreover, fluctuating prices of potassium chloride are also expected to hamper the market growth during the forecast period. Furthermore, increasing the use of potash mobilizing biofertilizers is expected to pose excellent growth opportunities for market players.
Market Regional Analysis
North America along with Europe is projected to gain the largest market share in the global potash ores market. This gain is attributed to largest consumer of organic food in regions. Furthermore, Asia Pacific is also projected to witness significant growth during the forecast period, owing to rising disposable incomes and growing trend towards healthy food. Moreover, increasing demand for food from emerging economies such as India and China is expected to support the market growth in the region.
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Market Players
Key players operating in the global potash ores market include Israel Chemicals Ltd., PotashCorp, Uralkali, Agrium Inc., and K+S GmbH.
Key Developments
Major players operating in the market are adopting several strategies such as mergers & acquisitions and marketing & promotional activities through attending seminars or exhibitions in order to maintain their position in the competitive business environment.
For instance, in February 2017, EvoEvogene Ltd., one of the leading companies engaged in the improvement of crop productivity and ICL Innovation, a subsidiary of ICL, entered into an R& D collaboration to produce crop enhancers in order to improve the nutrient use efficiency in certain crops
In June 2017, Potash Corporation, based in Saskatchewan, Canada, one of the world’s leading producer of fertilizer by capacity, announced the collaboration with Agrium to form Nutrien. Nutrien aims to become second leading producer of nitrogen fertilizer with operations in more than 18 countries with 20,000 employees globally.
In November 2019, Dmitry Osipov represented Uralkali, one of the leading potash producers in business program of the XII International Conference “Mineral Fertilizers-2019���.
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Growing Demand from the Rapidly Growing End Use Industries Foster the Global Sodium Methylate Market; MRFR Reveals Insights for 2019-2027
Description :
Global Sodium Methylate Market Research Report: Information By Type (Solid and Liquid), Application (Pharmaceuticals, Agrochemicals, Plastics & Polymers, Personal Care, Analytical Reagent, Biodiesel and others) and Region (Asia-Pacific, Europe, North America, Latin America, and the Middle East & Africa) - Forecast till 2027
Keywords :
Sodium Methylate, Sodium Methylate Market, Global Sodium Methylate Market, Sodium Methylate Market Trends, Sodium Methylate Market Share, Sodium Methylate Market Size, Sodium Methylate Market Price, Sodium Methylate Market Growth, Sodium Methylate Market Analysis, Sodium Methylate Market Analysis, Sodium Methylate Market Demand, Sodium Methylate Market Report
The global sodium methylate market is growing continually, mainly due to the growing use of these substrates in biodiesel production. Also, the surging demand for biodiesel blend, alongside the rising competitiveness of biodiesel exports and functional solutions business lines, substantiates the market growth. Moreover, factors such as the continual investments in biodiesel plants due to the increase in soybean and biodiesel production accelerate the growth of the market to furthered height.
According to Market Research Future (MRFR), the global sodium methylate market was valued at USD 354.7 MN in 2018, which is projected to appreciate further at 4& CAGR during the review period (2019-2025). This growth is due to the increased absorption of sodium methylate by the prominent end-use industries. Besides, the extensive use of sodium methylate in the pharmaceutical industry, and the healthy growth of the pharmaceutical industry across the globe drive the growth of the market.
Also, the growing uses of biodiesel in the automotive and many other industries act as a major driving force for the market growth. Additional factors such as the growth of the automotive industry, and growing awareness of global warming are fueling the market growth, driving the demand for biodiesel. On the other hand, the price volatility and the demand-supply of methanol, which is the key raw material required for sodium methylate are estimated to hamper the growth of the market during the forecast period.
Nevertheless, augmenting demand for sodium methylate, which is projected to rise further in the emerging economies, would support the market growth throughout the analyzed period, offering many growth opportunities for the producers. Also, the need for de-carbonizing the emissions in the transportation industry led by the rising awareness for adverse impacts of fossil fuels on the environment are expected to push the market growth in the near future.
Global Sodium Methylate Market - Segments
The analysis is segmented into three market dynamics.
By Type : Solid and Liquid.
By Application : Pharmaceuticals, Agrochemicals, Plastics & Polymers, Personal Care, Analytical Reagent, Biodiesel, and others.
By Regions : North America, Europe, APAC, and Rest of the World.
Global Sodium Methylate Market - Regional Analysis
Asia Pacific region dominates the global sodium methylate market. The largest market share attributes to the raw material advantages in the region. Besides, factors such as the increasing demand for sodium methylate across industrial verticals on account of the rapid industrialization rate and growing economy in the region drive the market growth.
Rapidly growing markets in countries such as China, India, and Japan contribute to the regional market growth majorly, witnessing the rising demand for sodium methylate. The APAC sodium methylate market is estimated to grow at 4.3% CAGR during the review period.
North America accounts for the second-significant share in the global sodium methylate market. The market is majorly driven by the strict regulatory framework, and the high adoption of improved manufacturing technology in sodium methylate production in the region.
The U.S., among other North American countries, accounts for the major contributor to the market growth due to the greater penetration of end-user industries in the country. The North American sodium methylate market had valued at USD 84.0 MN in 2018, which is estimated to grow further at a modest CAGR during the review period.
The sodium methylate market in the European region is growing continually. Factors such as the rapid industrialization and the presence of major industry players in the region drive the growth of the market. Also, the availability of advanced manufacturing techniques and the growing number of exports substantiate regional market growth.
Furthermore, the surging demand for sodium methylate and growing investments in industries fostering due to the improved living standard in the region influence market growth. The European sodium methylate market is estimated to register CAGR during the review period.
Sodium Methylate Market - Competitive Landscape
Fiercely competitive, the global sodium methylate market appears to be fragmented due to the presence of many well-established players. To gain a larger competitive share, players incorporate strategic initiatives such as mergers & acquisitions, collaboration, product/technology, and expansion.
Major Players:
Players leading the global sodium methylate market include BASF SE (Germany), Evonik Industries AG (Germany), New Heaven Chemicals INC Iowa LLC (US), Anhui Jinbang Medicine Chemical Co., Ltd. (China), Zhengzhou Saihang Chemical Technology Co. Ltd (China), Shandong Xisace New Materials Technology Co. Ltd (China), Inner Mongolia Lantai Industrial Co., Ltd (China), Supra Group of Companies (India), Shandong Daze Chemical Group (China), Envirocat (France), American Elements (US), and LIAN Chemical Development Co. (Iran), among others.
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Industry/ Innovation/ Related News:
December 03, 2019 ---- Evonik Industries (Germany), a leading global specialty chemicals company, announced its plans to expand its sodium methylate capacity in Rosario, Argentina. The chemical major said that it would increase its production capacity for the biodiesel catalyst sodium methylate at from 60,000 to 90,000 metric tons. The new plant will be built out in two stages and is expected to be complete in 2021. Evonik’s decision to expand its biodiesel catalyst production is driven by soaring biodiesel demand in Argentina and Brazil and several recent biodiesel production capacity additions in the region.
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HYDROGEN PEROXIDE MARKET ANALYSIS(2019-2027)
Hydrogen Peroxide Market, by Product Type (35% Hydrogen Peroxide, 50% Hydrogen Peroxide, and Others), by Application (Paper & Pulp, Textile, Chemical Synthesis, Wastewater Treatment, Personal & Home Care Products, Food, and Others), and by Region (North America, Latin America, Asia Pacific, Europe, Middle East, and Africa) - Size, Share, Outlook, and Opportunity Analysis, 2019 – 2027
Hydrogen Peroxide Market – Insights
Hydrogen peroxide (H2O2) is a colorless liquid slightly viscous than water and bitter in taste at room temperature. Hydrogen peroxide easily decomposes into water and oxygen. It undergoes spontaneous reaction when it comes in contact with any organic material. Lower concentration of hydrogen peroxide (3-9%) is used for medical applications and as a bleach for cloth & hair. Higher concentrations (35%, 50%, 70%) are generally used in paper & pulp, textile, chemical industries, and as a part of rocket fuel.
Technological advancements in the production of hydrogen peroxide is projected to drive growth of the market in the near future. For instance, in January 2019, researchers at Ulsan Institute of Science and Technology (UNIST, South Korea) announced that they developed a new catalyst to produce hydrogen peroxide using electricity. The researchers developed a high-performance carbon catalyst, which can convert oxygen to hydrogen peroxide.
Hydrogen peroxide is used to make sodium perborate and sodium percarbonate, which are further utilized as bleaching agents in detergent manufacturing. Industry grade hydrogen peroxide is expected to witness increasing demand among consumers due to large number of applications and expansion of the paper and pulp industry across the world.
Hydrogen peroxide is extensively used in various food applications, owing to its biological degradability and remarkable chemical properties. It is the most commonly used as oxidizing reagent for bleaching purpose in the food processing industry. Hydrogen peroxide is majorly used in products such as natural sugars, starches, gums, natural oils, and waxes among others. Hydrogen peroxide is also used in food products such as cheese, whey, instant tea, natural fatty acid emulsifiers, and herring.
Stringent regulations imposed by agencies such as Occupational Safety and Health Administration (OSHA) based on exposure of hydrogen peroxide is expected to hamper the hydrogen peroxide market growth. Also, policies implemented by regulatory agencies such as the Food & Drug Administration (FDA), Environmental Protection Agency (EPA), and Registration, Evaluation, Authorisation and Restriction of Chemicals (REACH) is expected to hinder growth of the hydrogen peroxide market over the forecast period. For instance, the U.S. Food and Drug Administration (FDA) warn consumers not to use highly concentrated hydrogen peroxide such as 35% food grade hydrogen peroxide for medicinal purposes.
The global hydrogen peroxide market was pegged at 4,944.8 Kilo Tons in 2018 and is expected to register a CAGR of 3.4% in terms of volume over the forecast period (2019– 2027).
Among application, paper & pulp segment accounted for the largest market volume share of 46% in the global hydrogen peroxide market in 2018. This segment is expected to hold dominant position in the market over the forecast period, owing to rising adoption of hydrogen peroxide as a clean oxidizing agent by paper & pulp industries.
Figure 1: Global Hydrogen Peroxide Market Share (%), By Application, 2018
Source: Coherent Market Insights, 2018
Asia Pacific region accounted for the largest market share of around 44.9% in 2018, owing to high demand & presence of hydrogen peroxide manufacturers in the region. Local players operating in China, India, and South East Asia are investing in hydrogen peroxide industry to tap potential local market. For instance, In India, Meghmani Finechem Ltd (MFL) invested US$ 56 Mn for expansion of existing projects and a new project at its facility in Dahej, Gujarat. The company received funding for its projects through internal accruals and the plant was commissioned by June 30, 2019.
Figure 2: Global Hydrogen Peroxide Market Share (%), By Region, 2018
Source: Coherent Market Insights, 2018
Major players operating in the global hydrogen peroxide market include Arkema S.A., Evonik Industries A.G., Solvay S.A., Mitsubishi Gas Chemical Company, Inc., Kemira Oyj, Thai Peroxide Limited (TPL), Taekwang Industrial Co., Ltd., PeroxyChem LLC, Hansol Chemical, and Nouryon among others.
Key local players are investing into hydrogen peroxide market to meet rising demand from consumers. For instance, in November 2018, Indian Peroxide established its new hydrogen peroxide plant in Gujarat, India. The annual production capacity of plant is 45 Kilo Tons and the plant will offer three concentrations that are 35% Hydrogen Peroxide, 50% Hydrogen Peroxide & 70% Hydrogen Peroxide. Moreover, the company is planning to invest US$ 103 Million in the next 3 to 5 years in India.
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SODIUM METAL MARKET ANALYSIS (2019-2027)
Sodium Metal Market 2017–2027
Sodium is a chemical compound with symbol Na and is soft, silvery alkali metals which belong to group 1. Sodium metal is produced from electrolysis process of fused caustic soda with little carbon and iron. Sodium metal is used as a coolant in a nuclear reactor and also has a wide range of applications across metal, chemical, paper, petroleum, soap, glass, and textile industries. Moreover, sodium metal is also used as a heat transfer fluid in high-temperature pipes. Furthermore, baking soda, ordinary table salt, soaps, and detergents, baking powder and aspirin are some of the sodium products. Moreover, sodium metal is also used to make artificial rubber.
The global sodium metal market is projected to reach around US$ 400.3 million by the end of 2027, in terms of revenue, growing at CAGR of 4% during the forecast period (2019-2027).
Drivers
Growing demand for sodium metal for the production of indigo dye which is further used in the dyeing of cotton yarn is expected to foster the market growth of sodium metal. Sodium metal is a key ingredient used in the production of indigo dye. Hence, growing textile industry, growing demand for denim product and rising per capita income of the developed economies is expected to foster the market growth of sodium metal over the forecast timeframe.
The growing production of biodiesel is projected to augment the market growth of sodium metal. Sodium methylate is one of the key ingredient which is widely used as catalysts for the large-scale production of biodiesel. Sodium methylate is produced, by using sodium metal or sodium hydroxide which is further reacted with methanol to extract sodium methoxide (sodium methylate). Therefore, the rising production of biodiesel is expected to foster the market growth of sodium metal.
On basis of the region, Asia Pacific dominated the global sodium metal market in 2018, accounting for 53% share in terms of volume, followed by North America and Europe, respectively.
Figure 1. Global Sodium Metal Market, Revenue Share (%), By Region, 2018
Market Restraints
Sodium metal is a highly reactive compound and combusts spontaneously when it gets exposed to water to air which is expected to restrict the market growth. Sodium metal is difficult to store and transport and only a few companies are engaged in the production of sodium metals. Hence, this factor is expected to hinder the market growth of sodium metal over the forecast period.
Increasing usage of alternative sodium metal such as magnesium which is used as a reductant in the production of titanium is expected to hamper the market growth to some extent. Major companies are using the alternative of sodium metal because of its hazardous nature and difficulties. Hence, the availability of alternative sodium metal is expected to hamper market growth.
Market Opportunities
The growing pharmaceutical industry where sodium metal is used to produce drugs such as aspirin and other drug products is also expected to augment the market growth of sodium metal. According to the India Brand Equity Foundation, the Indian pharmaceutical industry is expected to expand at a CAGR of 22.4% over 2015–20 to reach US$ 55 billion. India’s pharmaceutical exports stood at US$ 17.27 billion in FY18 and have reached US$ 19.14 billion in FY19.
The growing glass industry is another major factor that is projected to propel the market growth of sodium metal. Sodium metal is widely used in the production of glass. According to Alliance Europe, in 2018, the EU-28 glass production reached a volume of 36.5 million tons, a slight increase of 0.2% compared with 2017. Therefore, growing production of glass is expected to augment the market growth.
Figure 2. Global Sodium Metal Market– Opportunity Analysis
Market Trends
Growing demand for rubber products and sodium metal is used in the production of rubber is expected to accelerate the market growth over the forecast period. Moreover, the growing consumption of sodium metal for producing various sodium compounds across the various end-user industry is further expected to foster market growth.
Key players are investing in order to strengthen their share in the market and to cater to the rising demand for sodium metal, especially from countries such as China and the U.S. is expected to accelerate the market growth. For instance, in 2016, Inner Mongolia LanTai Industrial Co., Ltd., largest sodium manufacturer with a plant in China, announced its plans for investment in capacity ramp-up for sodium production by nearly 20,000 metric tons in order to meet the demand for sodium from domestic so also from overseas market.
Figure 3. Global Sodium Metal Market, Revenue Share (%), By Application, in 2018
On the basis of application in 2018, chemical synthesis has accounted the largest market share of 70.8% in terms of value, followed by metal manufacturing & refining and pharmaceutical respectively.
Figure 4. Global Sodium Metal Market– Value Chain Analysis
Competitive Section:
Key players operating in global sodium metal maket Inner Mongolia LanTai Industrial Co., Ltd, Wanji Holdings Group Limited Ltd, MSSA S.A.S., Shandong Moris Tech Co., Ltd., and American Elements.
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What Michael Moore’s new film gets wrong about renewable energy
In the film Planet of the Humans, producer and director Jeff Gibbs and executive producer Michael Moore take aim at renewable energy technologies and the environmental organizations such as 350.org and the Sierra Club that promote them. The film’s premise is that green tech is not so green and that turning to this technology as a cure for climate change would be worse than the disease.
Scientists and environmental activists have already disputed many of the assertions in the movie, which was released on YouTube on April 21. One commonly cited problem is that the film’s renewable energy claims are often a decade out of date — ancient in green tech years — and misleading. Here’s a closer look at five of those claims.
Making solar cells is not environmentally friendly.
As the film notes, traditional photovoltaic solar cells are made with high-grade, extremely pure silicon, gleaned from quartz mined from mountains and then melted at very, very high temperatures. That takes a lot of energy, which may be generated from coal or other fossil fuels, therefore releasing climate-warming carbon emissions (SN: 2/27/08).
Solar cell manufacturing also creates environmentally harmful by-products, such as liquid silicon tetrachloride. Tetrachloride can be recycled, but if released into the environment, it can react with water to form hydrochloric acid. However, researchers are investigating alternatives to using chlorine-based compounds during manufacturing, which would eliminate tetrachloride as a by-product.
Meanwhile, solar cell technology is advancing rapidly. Thin-film solar cells involve layers of light-absorbing semiconductors such as cadmium telluride or copper indium gallium selenide that are deposited on glass, metal or plastic. This technology uses only a fraction of the silicon needed to make the thick silicon wafers of a standard photovoltaic cell. Thin-film cells also eliminate the use of dangerous hydrofluoric acid to clean the wafers.
Although industry uses some thin-film cells, they are generally too pricey to be appealing for widespread use. But there’s a promising thin-film prospect on the horizon, which uses a coating of a light-absorbing material called perovskite (SN: 7/26/17). As Nature reported in 2019, right now the race is on to make perovskite solar cells cheap enough to be commercially viable.
Solar cells are really inefficient.
In one memorable scene, Gibbs visits the Cedar Street Solar Array in Lansing, Mich. A representative from the Lansing Board of Water and Light tells him that the array’s solar cells have less than 8 percent efficiency (the amount of generated energy relative to the incoming solar energy). The utility has roughly 800 solar panels in the array, which can power maybe 10 houses for a year, he says.
That plant, however, was installed in 2008, which is multiple generations ago in solar cell technology time. Efficiencies for standard photovoltaics are much higher now, hovering close to 20 percent. Perovskite solar cells push that efficiency even higher, up to 25 percent. And by creating “tandem” solar cells that layer perovskite on top of silicon, manufacturers can maximize the ability of the cells to absorb light in different parts of the spectrum, increasing the efficiency still further.
Planet of the Humans questions the value of renewable energy technologies, suggesting that, for example, manufacturing the solar cells for a power plant releases more fossil fuel emissions than the plant’s carbon-free solar power would save.LeoPatrizi/E+/Getty Images
Solar cells and wind turbines have such short life spans that manufacturing replacements uses up more fossil fuels than the renewable energies save.
Planet of the Humans suggests that the carbon emissions released from the energy involved in manufacturing new parts and machinery for wind and solar power are greater than any saved emissions from the facilities. “You use more fossil fuels to do this than you’re getting benefit from it,” says Ozzie Zehner, one of the movie’s producers. “You would have been better off burning the fossil fuels in the first place instead of playing pretend.”
But that statement isn’t supported by data. For example, the film claims that “some solar panels” last only 10 years, but today’s solar panels are built to last 20 to 30 years. Similarly, wind turbines have a life span of about 20 to 25 years, according to the U.S. Energy Information Administration.
A 2017 study in Nature Energy reported that the lifetime carbon footprints of solar, wind and nuclear energy power plants are just a fraction of the lifetime footprints of coal and natural gas plants. The study also projects that, in 2050, the energy involved in constructing and operating a solar or wind power plant will be just 3 to 8 percent of its electricity output.
Solar and wind power are too intermittent to ever fully replace fossil fuels.
The question of storing energy generated by renewables so it’s available when the sun isn’t shining or the wind isn’t blowing has dogged renewables for decades (SN: 1/9/17). But battery storage does exist: Some renewable companies use lithium-ion batteries, for example (SN: 5/7/19). And renewable energy utilities in the United States, Australia, Germany, Japan and elsewhere use battery storage systems, though so far they are primarily for short-term storage, amounting to a few hours.
In the film, Gibbs suggests that battery storage capacity — how much energy the batteries can store — is the main obstacle to updating the traditional energy grid. He shows a pie chart apparently based on data from the Paris-based International Energy Agency, which he says shows that current total battery storage capacity is 51 trillion British thermal units. That’s “less than one-tenth of 1 percent of what’s needed” for a year’s worth of energy usage around the globe.
The problem with that argument is that it’s a false premise: To integrate renewables into the grid, it’s not necessary to have enough capacity to match peak global demand — meaning, all of the world’s global energy needs, all at the same time. Instead, as energy writer Ketan Joshi noted on Twitter, an optimized mix of different renewable technologies (and some storage) can work together to keep the lights on.
Rather than capacity, the real obstacle to utility-scale energy storage is price. A 2019 study in Joule noted that for wind and solar power to completely power the United States, energy storage would need to be highly cost-competitive, with a maximum price tag of just $20 per kilowatt-hour, about 90 percent cheaper than it currently is. The materials in lithium-ion batteries are too expensive to hit that target, but researchers are developing other battery materials, such as sodium sulfur and sodium nickel chloride, that could be much cheaper.
Replacing coal plants with natural gas plants isn’t an improvement.
Across the United States, utilities have been moving away from coal — partly due to costly environmental regulations and partly due to increasing competition from other sources of electricity. As a result, many energy giants, such as Duke Energy, say they are replacing these coal plants with clean energy sources. As Planet of the Humans correctly notes, this very often means a replacement with another type of fossil fuel: natural gas.
By around 2016, natural gas replaced coal as the leading source of electrical power in the United States, according to the EIA. In 2019, natural gas provided about 38 percent of the nation’s electricity compared with coal’s roughly 24 percent.
The movie suggests that companies are greenwashing this shift by calling these natural gas power plants clean. Sure. The movie also suggests that environmental groups such as the Sierra Club, which has led the charge to retire U.S. coal-fired power plants, are equally culpable for not making the distinction between natural gas and renewable energies when talking about clean energy. This is demonstrably untrue.
Bottom line, natural gas isn’t clean, but it is cleaner than coal. Natural gas emits as little as 50 to 60 percent of the carbon dioxide of a coal plant. Coal burning also adds toxic heavy metals such as mercury and arsenic to the atmosphere and to waterways, not to mention the polluted waterways and denuded mountaintops that come with coal mining. For these reasons, eliminating coal has been (and should be) a top priority for environmental activists.
But it’s fair to say that natural gas has some problems (oddly not ones discussed in the movie), and there’s good reason to be cautious. About two-thirds of new U.S. oil and gas wells are using hydraulic fracturing, breaking apart shale and other rocks deep underground to extract the gas (SN: 8/24/12). Fracking has a host of possible hazardous consequences, not least its link to earthquakes (SN: 1/18/18). Moreover, natural gas plants can leak large amounts of the potent greenhouse gas methane to the atmosphere due to faulty infrastructure as well as venting (SN: 4/22/20).
By pointing out problems, Gibbs and Moore have said that they just wanted Planet of the Humans to start a conversation about the renewable energy industry. Indeed, the film poses many questions about the industry and the environmental groups that advocate for it. But the film offers no alternative solutions (it hints that perhaps there are just too many people on the planet for any sustainable solution but stops short of advocating for outright population control).
This “just asking questions” trope is another way that the movie feels out of date. As last year’s climate protests revealed, people don’t need this movie to spur them to outrage or activism (SN: 12/16/19). They’re already there. And they definitely don’t need bad or incomplete information with which to combat the climate crisis.
from Tips By Frank https://www.sciencenews.org/article/what-michael-moore-new-film-gets-wrong-about-renewable-energy
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