#Zeolite 5A Molecular Sieve
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Zeolite 5A as a Molecular Sieve for Gas Separation and Purification
Choose Zeolite 5A for efficient purification and separation of gases in various applications such as natural gas processing, medical oxygen generation, and more. Regenerable and versatile, this molecular sieve is a top choice for removing moisture, hydrocarbons, and carbon dioxide from gas streams. Learn about its uses and specifications here.
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Unlocking the Power of Zeolite Molecular Sieve: A Comprehensive Guide
Zeolite molecular sieves have revolutionized a wide range of industries by providing an efficient way to purify, separate, and dehydrate gases and liquids. This unique material boasts incredible adsorption capabilities, making it an essential component in industries like petrochemicals, pharmaceuticals, and environmental protection. In this blog, we’ll dive deep into what a zeolite molecular sieve is, how it works, and the diverse range of applications that benefit from its extraordinary properties.
What is a Zeolite Molecular Sieve?
A zeolite molecular sieve is a type of crystalline aluminosilicate that contains a three-dimensional, porous structure. These tiny, uniform pores have the unique ability to selectively adsorb molecules based on their size, shape, and polarity. This makes zeolite molecular sieves particularly effective in separating or capturing specific gases, liquids, or even impurities.
The name "molecular sieve" comes from this ability to "sieve" molecules based on their dimensions. The precise pore size within the zeolite framework allows it to exclude larger molecules while adsorbing smaller, targeted ones. This selective adsorption process is what makes zeolite molecular sieves so valuable in a wide range of industrial applications.
How Zeolite Molecular Sieves Work
Zeolite molecular sieves work via a process called adsorption, where molecules adhere to the surface of the sieve’s internal pores. Each sieve is designed to capture specific molecules, such as water, carbon dioxide, or various gases, depending on the application.
What makes zeolite molecular sieves especially powerful is their precise and uniform pore structure, which allows for the efficient removal of moisture, gases, or other contaminants. This means that they can separate, purify, or dry substances with incredible accuracy.
Key Features of Zeolite Molecular Sieves:
Precise Molecular Adsorption: Zeolite sieves adsorb molecules based on size, ensuring accurate separation.
Thermal and Chemical Stability: Zeolite molecular sieves are highly durable, withstanding harsh environments.
Reusability: These sieves can be regenerated for long-term use, making them a cost-effective solution.
Wide Range of Pore Sizes: Zeolite molecular sieves come in different grades (3A, 4A, 5A, etc.) to cater to various molecular sizes.
Applications of Zeolite Molecular Sieves
1. Gas Dehydration
In industries such as petrochemicals, natural gas processing, and air separation, moisture removal is critical. Zeolite molecular sieves are widely used to dry gases by adsorbing water vapor, ensuring high-quality and safe operations. Whether it's hydrogen, nitrogen, or oxygen, zeolite sieves play a vital role in gas drying applications by offering superior moisture control.
2. Air Purification
Zeolite molecular sieves are commonly used in air separation processes to remove carbon dioxide, moisture, and other impurities from the air. Their precision allows for the production of high-purity oxygen and nitrogen, which are critical for medical, industrial, and scientific applications.
3. Liquid Purification and Separation
The capability of zeolite molecular sieves extends to liquid purification as well. From ethanol dehydration to the purification of industrial solvents, zeolite sieves ensure that contaminants and water are efficiently removed. This results in higher-quality products and improves overall efficiency in manufacturing processes.
4. Environmental Protection
Zeolite molecular sieves have a crucial role in environmental applications, particularly in reducing air pollution. They are used in filters to capture harmful gases like volatile organic compounds (VOCs) and sulfur oxides (SOx). These sieves help industries meet regulatory standards for clean air and reduce harmful emissions.
5. Petrochemical and Refinery Processes
In the petrochemical industry, zeolite molecular sieves are critical for processes such as catalytic cracking and gas sweetening. Their ability to remove impurities like hydrogen sulfide (H2S) and carbon dioxide (CO2) ensures higher quality in refined products and boosts efficiency in refinery operations.
Types of Zeolite Molecular Sieves
Zeolite molecular sieves come in several varieties, each designed to adsorb specific molecules. The pore size is determined by the type of zeolite used, allowing for precise molecular separation.
3A Zeolite Molecular Sieve: Ideal for adsorbing water from liquids and gases, commonly used in ethanol dehydration and natural gas drying.
4A Zeolite Molecular Sieve: Known for removing water and certain gases like carbon dioxide, this sieve is widely used in air and gas purification.
5A Zeolite Molecular Sieve: Capable of adsorbing larger molecules such as hydrocarbons, commonly employed in separating natural gas and refining processes.
13X Zeolite Molecular Sieve: Designed for removing both water and CO2, this molecular sieve is often used in air separation and medical oxygen concentrators.
Advantages of Zeolite Molecular Sieves
Zeolite molecular sieves offer several benefits that make them stand out from other adsorbents like silica gel or activated alumina. Their high selectivity and ability to operate under extreme conditions make them ideal for challenging industrial environments.
Key Advantages:
Selective Adsorption: Zeolite molecular sieves excel at targeting specific molecules, ensuring the highest levels of purity.
Thermal Durability: Capable of withstanding extreme temperatures without losing effectiveness.
High Adsorption Capacity: Zeolite molecular sieves can hold large amounts of moisture or gases, improving efficiency in operations.
Reusability: These sieves can be regenerated through heating, providing a cost-effective, long-term solution.
Regeneration of Zeolite Molecular Sieves
One of the main benefits of zeolite molecular sieves is their ability to be regenerated. After adsorbing gases or moisture, these sieves can be heated to release the trapped molecules, restoring their adsorption capacity. This process can be repeated multiple times, making zeolite molecular sieves a highly sustainable option for industrial use.
Regeneration is usually performed by applying heat or reducing pressure, which allows the adsorbed molecules to desorb from the zeolite structure. Once the sieve is regenerated, it can continue performing with high efficiency, reducing the need for frequent replacements and minimizing operational costs.
The versatility and efficiency of zeolite molecular sieves have made them indispensable in a wide range of industries. From gas drying to liquid purification, these highly selective adsorbents ensure superior results by capturing moisture and impurities with precision. Their durability, reusability, and ability to operate in extreme conditions make them a go-to solution for industries looking to optimize performance and improve the quality of their products.
Whether you’re in the petrochemical, environmental, or medical field, investing in zeolite molecular sieves will offer you a reliable and efficient way to purify, separate, and dry gases and liquids. With a broad spectrum of applications, zeolite molecular sieves are key to maximizing operational efficiency while maintaining a clean, high-quality output.
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Molecular Sieves Market Research Methodology, Structure, Forecast to 2027
Molecular Sieves Market Overview
The global Molecular Sieves market is projected to be valued at USD 3,068.48 million by the end of 2028, registering a CAGR of 4.68% during the forecast period.
Molecular Sieves are crystalline materials with pores of uniform size and structure, usually natural or synthetic zeolite.Molecular sieve desiccants act as a drying agent for drying liquids and gases andfor separating molecules based on their shapes and sizes.
Market Dynamics
The high-performance characteristics of molecular sieves are fueling the growth of the global molecular sieves market. Furthermore, the growing demand for molecular sieves from the automotive, transportation, and oil & gas industries is one of the major factors drivingthe market growth. The growth of the global market is also driven by an increasing number of petrochemical projects in emerging economies.
Molecular sieves have distinctive selective adsorption properties a performs excellently even at high temperature. This results in an increase in their prices compared to other alternative products such as silica gel, montmorillonite clay, calcium sulfate, and calcium oxide. Hence, the high cost associated with molecular sieves is hindering the growth of this market.
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Covid Impact
The covid-19 has significantly disrupted the chemicals and materials supply chain, international trade, and manufacturing operations across the globe. The chemicals and materials production facilities have also faced disruptions. Various market players had to shut down the production facilities to limit the spread of Covid-19.
The global molecular sieves market is facing a deep recession caused by the effects of lockdowns in most of the geographies.The major consumers of molecular sieves such as packaging, coating, and automotive have also shut down their production facilities resulting in a decline in demand for molecular sieves globally
Segment Analysis
The global Molecular sieves market has been segmentedon the basis of type, shape, product, end-use, and region.
The global market, based on type, has been segmented into 4A, 3A, 5A, 13X, zeolite Y, and others. The 4A segment accounted for the largest market share of more than 20% in 2020, followed by 3A.
Based on shape, the market is classified into bead, pellet, and powder. Among these, in 2020, bead accounted for the largest market share, followed by pellet and powder.
On the basis of product, the global molecular sieves market has been segmented into zeolites, activated carbon, clay, and others. The zeolites segment dominated the market in 2020, accounting for a market share of more than 40%.
The end-use is bifurcated into oil & gas, automotive, packaging, coatings, wastewater treatment, detergents, and others.
On the basis of region, Asia-Pacific dominated the global molecular sieves market in 2020 owing to growing end-use industries such as packaging and the oil & gas industry.
Key Findings of the Study:
The global molecular sieves market is projected to reach a value of USD3,068.48millionby 2028,with a CAGR of around 4.68%during the forecast period.
Asia-Pacific accounted for the major market share and emerged as the fastest-growing regionin the global molecular sieves market.The growth of the region is attributed to the growing demand from the oil & gas and packaging end-use industries. Also, the growing demand from the pharmaceutical manufacturing sector in Japan, China, and other Southeast Asian countries, is further driving the growth of this market.
Based on type, the global market has been segmented into 4A, 3A, 5A, 13X, zeolite Y, and others. The 4A segment dominated the market in 2020. It is used to remove moisture from gas and liquid streams and is preferred for drying perishable food packaging, chemical, medicine & diagnostic kit packaging, electronics & electrical systems.
By shape, the beads segment accounted for the largest market share due to its application for drying air and compressed gases.
In 2020, zeolites product type accounted for the largest market share in terms of value. These are suitable for purifying, drying, and separating a wider variety of feeds than any other adsorbent.
Based on end-use, In 2020, the others segment held the largest market share of 27.2%, while the packaging sector is expected to register the highest CAGR during the forecast period;however, the oil and gas industry is expected to dominate the market in the coming years
Some of the leading players operating in the Molecular Sieves market are Tosoh Corporation (Japan), Arkema (France), BASF SE (Germany), Honeywell International Inc (US), W. R. Grace & Co (US), Zeochem AG (Switzerland), Merck KgaA (Germany), Sorbead India (India), KNT Group (Russia), MolsivCN (China), Union Showa K.K. (Japan), Van Air, Inc (US).
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Molecular Sieves Market Projected to Gain Significant Value by 2027
The global Molecular Sieves market is projected to be valued at USD 3,068.48 million by the end of 2028, registering a CAGR of 4.68% during the forecast period.
Molecular Sieves are crystalline materials with pores of uniform size and structure, usually natural or synthetic zeolite.Molecular sieve desiccants act as a drying agent for drying liquids and gases andfor separating molecules based on their shapes and sizes.
Market Dynamics
The high-performance characteristics of molecular sieves are fueling the growth of the global molecular sieves market. Furthermore, the growing demand for molecular sieves from the automotive, transportation, and oil & gas industries is one of the major factors drivingthe market growth. The growth of the global market is also driven by an increasing number of petrochemical projects in emerging economies.
Molecular sieves have distinctive selective adsorption properties a performs excellently even at high temperature. This results in an increase in their prices compared to other alternative products such as silica gel, montmorillonite clay, calcium sulfate, and calcium oxide. Hence, the high cost associated with molecular sieves is hindering the growth of this market.
Covid Impact
The covid-19 has significantly disrupted the chemicals and materials supply chain, international trade, and manufacturing operations across the globe. The chemicals and materials production facilities have also faced disruptions. Various market players had to shut down the production facilities to limit the spread of Covid-19.
The global molecular sieves market is facing a deep recession caused by the effects of lockdowns in most of the geographies.The major consumers of molecular sieves such as packaging, coating, and automotive have also shut down their production facilities resulting in a decline in demand for molecular sieves globally
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Segment Analysis
The global Molecular sieves market has been segmentedon the basis of type, shape, product, end-use, and region.
The global market, based on type, has been segmented into 4A, 3A, 5A, 13X, zeolite Y, and others. The 4A segment accounted for the largest market share of more than 20% in 2020, followed by 3A.
Based on shape, the market is classified into bead, pellet, and powder. Among these, in 2020, bead accounted for the largest market share, followed by pellet and powder.
On the basis of product, the global molecular sieves market has been segmented into zeolites, activated carbon, clay, and others. The zeolites segment dominated the market in 2020, accounting for a market share of more than 40%.
The end-use is bifurcated into oil & gas, automotive, packaging, coatings, wastewater treatment, detergents, and others.
On the basis of region, Asia-Pacific dominated the global molecular sieves market in 2020 owing to growing end-use industries such as packaging and the oil & gas industry.
Key Findings of the Study:
The global molecular sieves market is projected to reach a value of USD3,068.48millionby 2028,with a CAGR of around 4.68%during the forecast period.
Asia-Pacific accounted for the major market share and emerged as the fastest-growing regionin the global molecular sieves market.The growth of the region is attributed to the growing demand from the oil & gas and packaging end-use industries. Also, the growing demand from the pharmaceutical manufacturing sector in Japan, China, and other Southeast Asian countries, is further driving the growth of this market.
Based on type, the global market has been segmented into 4A, 3A, 5A, 13X, zeolite Y, and others. The 4A segment dominated the market in 2020. It is used to remove moisture from gas and liquid streams and is preferred for drying perishable food packaging, chemical, medicine & diagnostic kit packaging, electronics & electrical systems.
By shape, the beads segment accounted for the largest market share due to its application for drying air and compressed gases.
In 2020, zeolites product type accounted for the largest market share in terms of value. These are suitable for purifying, drying, and separating a wider variety of feeds than any other adsorbent.
Based on end-use, In 2020, the others segment held the largest market share of 27.2%, while the packaging sector is expected to register the highest CAGR during the forecast period;however, the oil and gas industry is expected to dominate the market in the coming years
Some of the leading players operating in the Molecular Sieves market are Tosoh Corporation (Japan), Arkema (France), BASF SE (Germany), Honeywell International Inc (US), W. R. Grace & Co (US), Zeochem AG (Switzerland), Merck KgaA (Germany), Sorbead India (India), KNT Group (Russia), MolsivCN (China), Union Showa K.K. (Japan), Van Air, Inc (US).
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Molecular Sieves Market 2021 | Covid19 Impact Analysis | Size, Share, Sales and Forecast to 2026: BASF SE, W.R. Grace and Company, Xian Lvneng Purification Technology Co., Ltd., Clariant Corp, etc.
Global Molecular Sieves Market 2021 report is comprised of an in-depth analysis of the global industry which aims to deliver comprehensive market intelligence study associated with major market components. The report includes an overview of these markets on different fronts such as market size, market share, market penetration of the product and services, market downstream fields, key vendors operating within the territory, market price analysis and more. This might help readers across the worldwide business industry to comprehend a lot about the regional as well as key domestic markets for Molecular Sieves. Reports include an overview and examination of the major companies operating within the industry which are considered to be revenue drivers for the market.
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Top Key players of Molecular Sieves Market Covered In The Report: BASF SE W.R. Grace and Company Xian Lvneng Purification Technology Co., Ltd. Clariant Corp Blue Pacific Mineral Limited Bear River Zeolite Company Alfa Aesar Luoyang Jianlong Micro-Nano New Materials Co., Ltd. Tosoh Corporation Honeywell International Inc. Acuro Organics Limited Arkema Zeolyst International Inc. Tricat Inc ZEOX Corp Key Market Segmentation of Molecular Sieves:
On the basis of types, the Molecular Sieves market from 2015 to 2025 is primarily split into:
Type 3A Type 4A Type 5A Type 13X Type Y Pentacil Mordenite On the basis of applications, the Molecular Sieves market from 2015 to 2025 covers:
Catalyst Adsorbent Desiccants
The Molecular Sieves report includes the study of these ventures on parameters such as market share, company profile, revenue figures, sales data, market presence, product or service portfolio, past performance, expected performance, and more. This may assist those who are willing to enhance their know-how of the competitive scenario of the Molecular Sieves Market.
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Key Highlights from Molecular Sieves Market Study:
Income and Sales Estimation – Historical Revenue and deals volume is displayed and supports information is triangulated with best down and base up ways to deal with figure finish market measure and to estimate conjecture numbers for key areas shrouded in the Molecular Sieves report alongside arranged and very much perceived Types and end-utilize industry. Moreover, macroeconomic factors and administrative procedures are discovered explanation in Molecular Sieves industry advancement and perceptive examination.
Assembling Analysis – The Molecular Sieves report is presently broken down concerning different types and applications. The Molecular Sieves market gives a section featuring the assembling procedure examination approved by means of essential data gathered through Industry specialists and Key authorities of profiled organizations.
Competition Analysis – Molecular Sieves Leading players have been considered relying upon their organization profile, item portfolio, limit, item/benefit value, deals, and cost/benefit.
Demand and Supply and Effectiveness –
Molecular Sieves report moreover gives support, Production, Consumption and (Export and Import).
Molecular Sieves Market Region Mainly Focusing: — Europe Molecular Sieves Market (Austria, France, Finland, Switzerland, Italy, Germany, Netherlands, Poland, Russia, Spain, Sweden, Turkey, UK), — Asia-Pacific and Australia Molecular Sieves Market (China, South Korea, Thailand, India, Vietnam, Malaysia, Indonesia, and Japan), — The Middle East and Africa Molecular Sieves Market (Saudi Arabia, South Africa, Egypt, Morocco, and Nigeria), — Latin America/South America Molecular Sieves Market (Brazil and Argentina), — North America Molecular Sieves Market (Canada, Mexico, and The USA)
The Molecular Sieves Market report concludes with sharing vital report findings with readers. Here on the basis of study of historical data, examination of the current scenarios overserved in various markets including regional and domestic and trends recorded, it delivers forecast of the market. This includes segmental forecast, regional market forecast, market size forecast, consumption forecast.
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Global and Regional Zeolite Molecular Sieve Industry Status and Prospects Professional Market Research Report Standard Version 2021-2027
The global Zeolite Molecular Sieve market was valued at 1170.46 Million USD in 2020 and will grow with a CAGR of 1.86% from 2020 to 2027, based on our Researcher newly published report.
The prime objective of this report is to provide the insights on the post COVID-19 impact which will help market players in this field evaluate their business approaches. Also, this report covers market segmentation by major market verdors, types, applications/end users and geography(North America, East Asia, Europe, South Asia, Southeast Asia, Middle East, Africa, Oceania, South America).
Zeolite molecular sieves are crystalline, highly porous materials, which belong to the class of aluminosilicates and are available in the form of beads, pellets and powder. These crystals are characterised by a three-dimensional pore system, with pores of precisely defined diameter. The corresponding crystallographic structure is formed by tetrahedras of (AlO4) and (SiO4). Molecular sieves are available in four primary generic forms, 3A, 4A, 5A and 13X. Each form has its own specific properties and applications, and all retain a polar preference for adsorption of water. At present, in Europe and USA, the zeolite molecular sieve industry is generally at a more advanced level. The world`s large enterprises are mainly concentrated in these regions.
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By Market Verdors:
Company A
Company B
?
By Types:
3A
4A
5A
TypeX
zsm - 5
By Applications:
Air Separation
Petroleum Refining
Petrochemicals
Refrigerants
Natural Gas
Key Indicators Analysed
Market Players & Competitor Analysis: The report covers the key players of the industry including Company Profile, Product Specifications, Production Capacity/Sales, Revenue, Price and Gross Margin 2016-2027 & Sales with a thorough analysis of the market?s competitive landscape and detailed information on vendors and comprehensive details of factors that will challenge the growth of major market vendors.
Global and Regional Market Analysis: The report includes Global & Regional market status and outlook 2016-2027. Further the report provides break down details about each region & countries covered in the report. Identifying its sales, sales volume & revenue forecast. With detailed analysis by types and applications.
Market Trends: Market key trends which include Increased Competition and Continuous Innovations.
Opportunities and Drivers: Identifying the Growing Demands and New Technology
Porters Five Force Analysis: The report provides with the state of competition in industry depending on five basic forces: threat of new entrants, bargaining power of suppliers, bargaining power of buyers, threat of substitute products or services, and existing industry rivalry.
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To gain insightful analyses of the market and have comprehensive understanding of the global market and its commercial landscape.
Assess the production processes, major issues, and solutions to mitigate the development risk.
To understand the most affecting driving and restraining forces in the market and its impact in the global market.
Learn about the market strategies that are being adopted by leading respective organizations.
To understand the future outlook and prospects for the market.
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Table of content
Chapter 1 Industry Overview 1.1 Definition 1.2 Assumptions 1.3 Research Scope 1.4 Market Analysis by Regions 1.4.1 North America Market States and Outlook (2022-2027) 1.4.2 East Asia Market States and Outlook (2022-2027) 1.4.3 Europe Market States and Outlook (2022-2027) 1.4.4 South Asia Market States and Outlook (2022-2027) 1.4.5 Southeast Asia Market States and Outlook (2022-2027) 1.4.6 Middle East Market States and Outlook (2022-2027) 1.4.7 Africa Market States and Outlook (2022-2027) 1.4.8 Oceania Market States and Outlook (2022-2027) 1.4.9 South America Market States and Outlook (2022-2027) 1.5 Global Zeolite Molecular Sieve Market Size Analysis from 2022 to 2027 1.5.1 Global Zeolite Molecular Sieve Market Size Analysis from 2022 to 2027 by Consumption Volume 1.5.2 Global Zeolite Molecular Sieve Market Size Analysis from 2022 to 2027 by Value 1.5.3 Global Zeolite Molecular Sieve Price Trends Analysis from 2022 to 2027 1.6 COVID-19 Outbreak: Zeolite Molecular Sieve Industry Impact Chapter 2 Global Zeolite Molecular Sieve Competition by Types, Applications, and Top Regions and Countries 2.1 Global Zeolite Molecular Sieve (Volume and Value) by Type 2.1.1 Global Zeolite Molecular Sieve Consumption and Market Share by Type (2016-2021) 2.1.2 Global Zeolite Molecular Sieve Revenue and Market Share by Type (2016-2021) 2.2 Global Zeolite Molecular Sieve (Volume and Value) by Application CONTACT US: 276 5th Avenue, New York , NY 10001,United States International: (+1) 646 781 7170 / +91 8087042414 Email: [email protected] Follow Us On linkedin :- https://www.linkedin.com/company/grand-research-store/
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Molecular Sieves Market 2019 Latest Advancement Analysis and Precise Outlook 2025
16 May 2019: Global Molecular Sieves Market Research Report includes In-depth Analysis of industry by recent technologies, trends, opportunities, challenges, key players and business strategies considering types, segment, and future analysis. Global molecular sieves market is expected to grow at a significant CAGR of 4.87% in the upcoming period. The Molecular Sieves Market Report Provides Growth History, Sales Channel, Manufacturers Profiled in Molecular Sieves Business, Market Share of Product, Application and Regional Scope of Molecular Sieves which makes the research report a helpful resource for marketing people, forecasters, industry executives & consultants, sales, product managers, Strategy Advisor, potential investors to understand the present as well as future market size, situations in terms of growth rate and revenue. This report will help the viewer in Better Decision Making.
The key players of molecular sieves market are Zeolyst International, Arkema, Zeochem AG, Axens, Union Showa KK, BASF SE, Honeywell International Inc., Tosoh Corporation, Bete Ceramics Co. Ltd.
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Molecular sieves are synthetic zeolite materials contrived with pores of specific and uniform size and structure. Based on polarity and molecular size it absorbs liquids and gases. Zeolites are highly porous crystalline solids that belong to the chemical class called as aluminosilicates.
The factors that are playing a major role in the growth of the molecular sieves market are the growing awareness among populace regarding treatment for hazardous organic materials in wastewater and low cost of crude oil. However, the threat from enzymes and chemical composites may restrain overall market growth in the years to come. Molecular sieves market is segmented based on grade, product type, form, material, end-user, and region.
13X, 10X, 5A, 4A, 3A, and the other grades could be explored in molecular sieves in the forecast period. Grade 3A sector accounted for the substantial market share of molecular sieves and is estimated to lead the overall market in the years to come. The reason could be it helps to remove moisture from liquefied gases.
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Key regions
• North America
• Europe
• Asia Pacific
• Middle East and Africa
• South America
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Global Molecular Sieve Market Size, Share, Growth, Trends and Forecast 2018 - 2023
According to a comprehensive study by KD Market Insights analyzes and forecasts the Molecular Sieve Market at both global and regional level. The report provides an analysis of 6 years, in which 2017 is the base year, 2018 as an estimated year and 2019-2023 is forecasted period. The report consists of overall market size in 2017 and its anticipated growth in further 6 years. It gives grasp about the high demanding region for Molecular Sieve. It also includes the factors that drive the growth of the market along with emerging and current opportunities. The competitor's strategies for long-term and short-term goals are also a key part of this research methodology.
The report includes an in-depth price chain analysis, that provides an in depth read of the world Molecular Sieve Market. The Porter’s 5 Forces analysis provided within the report helps to know the competitive state of affairs within the international Molecular Sieve Market. The study incorporates market attractiveness analysis, whereby the market segments for product type and application square measure benchmarked supported their market size, rate of growth, and attractiveness in terms of chance. so as to grant an entire analysis of the general competitive state of affairs within the Molecular Sieve Market, each geographical area mentioned within the report is supplied with attractiveness analysis.
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A market Overview chapter explains the market trends and dynamics that embody the market drivers, restraining factors, and opportunities for the present and future Molecular Sieve Market. Market outlook analysis has been provided globally within the report. to boot, the report conjointly provides analysis of various business ways being adopted by market leaders of the Molecular Sieve Market. Market introduction chapter assists in gaining an inspiration of various trends and services associated with Molecular Sieve.
The research offers a comprehensive analysis of Molecular Sieve Market with respect to various sub-markets. The segmentation of Molecular Sieve is by Product Type, by application and by global regions. By Product Type, the market is sub-segmented into directed 3A, 4A, 13X, Other grades including 5A and 10X. By Application, the market is sub-segmented into directed Oil and gas, Petrochemical, Process, Construction.
The report covers every segment so that every segment is analyzed properly, and every area is considered while preparing the report so that requirements from that particular area can be analyzed and further modification can be made accordingly. The Geographical areas covered in this report are North America (U.S. & Canada), Europe (Germany, United Kingdom, France, Italy, Russia, Spain and rest of Europe), Middle East & Africa (GCC, North Africa, South Africa and Rest of Middle East & Africa), Latin America (Argentina, Mexico, Brazil and Rest of Latin America). The report covers the leading trends in the market, insights and plan and policies adopted by the competitors in the market that can hamper the conditions of the market.
The report describes the key competitors ruling in the market and plans and strategies adopted by them to grab their target market and working with consistency in the market so that company can prepare itself beforehand for the unforeseen circumstances. The key players profiled in the global Molecular Sieve Market includes Arkema, BASF, Honeywell, Tosoh, Bear River Zeolite, Blue Pacific Mineral, ZEOX, W.R. Grace, Clariant, Zeolyst, Tricat and Others Major & Niche Key Players. Companies are focusing on expanding their business through strategic acquisitions and partnerships with several end-use industries.
In the last section of the report, the current scenario of the market has been shown to provide a better overview of the market. The report highlights the data collected by the report. A perfect combination of the primary, as well as secondary research, has been made to collect all the facts and figures about the market and the company itself. Primary data research includes telephonic interviews; e-mail conversation, face to face interviews whereas secondary research includes the annual report depicting the financial position of the company, government regulations, shareholders reviews and statistical database. The further secondary method has been considered as a reliable method as a comparison to primary data.
By Product Type
- 3A
- 4A
- 13X
- Other grades including 5A and 10X
By Application
- Oil and gas
- Petrochemical
- Process
- Construction
Competitive Landscape
- Arkema
- BASF
- Honeywell
- Tosoh
- Bear River Zeolite
- Blue Pacific Mineral
- ZEOX
- W.R. Grace
- Clariant
- Zeolyst
- Tricat
- Others Major & Niche Key Players
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Table of Contents@
Research Methodology
Market Definition and List of Abbreviations
1. Executive Summary
2. Growth Drivers & Issues in Global Molecular Sieve Market
3. Global Molecular Sieve Market Trends
4. Opportunities in Global Molecular Sieve Market
5. Recent Industry Activities, 2017
6. Porter's Five Forces Analysis
7. Market Value Chain and Supply Chain Analysis
8. Global Molecular Sieve Market Size (USD Million), Growth Analysis and Forecast, (2017-2023)
9. Global Molecular Sieve Market Segmentation Analysis, By Product Type
9.1. Introduction
9.2. Market Attractiveness, By Product Type
9.3. BPS Analysis, By Product Type
9.4. 3A
9.5. 4A
9.6. 13X
9.7. Other grades including 5A and 10X
10. Global Molecular Sieve Market Segmentation Analysis, By Application
10.1. Introduction
10.2. Market Attractiveness, By Application
10.3. BPS Analysis, By Application
10.4. Oil and gas
10.5. Petrochemical
10.6. Process
10.7. Construction
11. Geographical Analysis
11.1. Introduction
11.2. North America Molecular Sieve Market Size (USD Million) & Volume, 2017-2023
11.2.1. By Product Type
11.2.2. By Application
11.2.3. By Country
11.2.3.1. Market Attractiveness, By End-user
11.2.3.2. BPS Analysis, By End-User
11.2.3.3. U.S. Market Size (USD Million) 2017-2023
11.2.3.4. Canada Market Size (USD Million 2017-2023
11.3. Europe Molecular Sieve Market Size (USD Million) & Volume, 2017-2023
11.3.1. By Product Type
11.3.2. By Application
11.3.3. By Country
11.3.3.1. Market Attractiveness, By Country
11.3.3.2. BPS Analysis, By Country
11.3.3.3. Germany Market Size (USD Million) 2017-2023
11.3.3.4. United Kingdom Market Size (USD Million) 2017-2023
11.3.3.5. France Market Size (USD Million) 2017-2023
11.3.3.6. Italy Market Size (USD Million) 2017-2023
11.3.3.7. Spain Market Size (USD Million) 2017-2023
11.3.3.8. Russia Market Size (USD Million) 2017-2023
11.3.3.9. Rest of Europe Market Size (USD Million) 2017-2023
11.4. Asia Pacific Molecular Sieve Market Size (USD Million), 2017-2023
11.4.1. By Product Type
11.4.2. By Application
11.4.3. By Country
11.4.3.1. Market Attractiveness, By Country
11.4.3.2. BPS Analysis, By Country
11.4.3.3. China Market Size (USD Million) 2017-2023
11.4.3.4. India Market Size (USD Million) 2017-2023
11.4.3.5. Japan Market Size (USD Million) 2017-2023
11.4.3.6. South Korea Market Size (USD Million) 2017-2023
11.4.3.7. Indonesia Market Size (USD Million) 2017-2023
11.4.3.8. Taiwan Market Size (USD Million) 2017-2023
11.4.3.9. Australia Market Size (USD Million) 2017-2023
11.4.3.10. New Zealand Market Size (USD Million, 2017-2023
11.4.3.11. Rest of Asia Pacific Market Size (USD Million) 2017-2023
11.5. Latin America Molecular Sieve Market Size (USD Million) 2017-2023
11.5.1. By Product Type
11.5.2. By Application
11.5.3. By Country
11.5.3.1. Market Attractiveness, By Country
11.5.3.2. BPS Analysis, By Country
11.5.3.3. Brazil Market Size (USD Million) 2017-2023
11.5.3.4. Mexico Market Size (USD Million) 2017-2023
11.5.3.5. Rest of Latin America Market Size (USD Million, 2017-2023
11.6. Middle East & Africa Molecular Sieve Market Size (USD Million) 2017-2023
11.6.1. By Product Type
11.6.2. By Application
11.6.3. By Geography
11.6.3.1. Market Attractiveness, By Geography
11.6.3.2. BPS Analysis, By Geography
11.6.3.3. GCC Market Size (USD Million) 2017-2023
11.6.3.4. North Africa Market Size (USD Million) 2017-2023
11.6.3.5. South Africa Market Size (USD Million) 2017-2023
11.6.3.6. Rest of Middle East & Africa Market Size (USD Million) 2017-2023
Continue…
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#Molecular Sieve Market#Molecular Sieve Market Size#Molecular Sieve Market Share#Molecular Sieve Market Trends#Molecular Sieve Market Growth
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High-Purity Hydrogen Production with 5A Molecular Sieve
5A molecular sieve is used to purify and produce high-purity hydrogen through the PSA process. Learn about its effective pore size, adsorbing qualities, and regeneration methods in this comprehensive guide. Improve the efficiency and purity of your hydrogen production with 5A molecular sieve.
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#5A molecular sieve#5 angstroms#molecular sieve#PSA hydrogen purification#5A zeolite adsorbent#5A molecules#Molecular Sieve For Hydrogen Purification
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The Power of Molecular Sieve Beads: Enhancing Industrial Efficiency
In the realm of industrial processes, where precision and efficiency are paramount, molecular sieve beads stand out as essential components. These tiny, yet powerful beads are engineered to perform a variety of crucial functions, from moisture removal to gas purification. Understanding their role and benefits can significantly enhance the effectiveness of various industrial applications.
What Are Molecular Sieve Beads?
Molecular sieve beads are synthetic zeolites with a crystalline structure that contains pores of uniform size. These pores enable the beads to selectively adsorb molecules based on their size, shape, and polarity. The beads are named according to the size of the pores, such as 3A, 4A, 5A, and 13X, each tailored to specific industrial needs.
These beads are widely used as desiccants, which means they are highly effective in absorbing moisture from gases and liquids. The ability to control moisture levels is vital in many industries, preventing corrosion, product degradation, and other moisture-related issues.
Key Applications of Molecular Sieve Beads
Moisture Control: In industries like natural gas processing, air drying, and petroleum refining, controlling moisture levels is critical. Molecular sieve beads can adsorb water molecules from gases and liquids, ensuring that the processes remain dry and free from moisture-related complications.
Gas Purification: Molecular Sieve Beads are indispensable in the purification of gases such as hydrogen, nitrogen, and oxygen. By selectively removing impurities, these beads help in producing high-purity gases that meet stringent industrial standards.
Catalysis: In the field of catalysis, molecular sieve beads serve as catalysts or catalyst supports, promoting chemical reactions while maintaining high selectivity. This is particularly useful in petrochemical processes where the quality and yield of the product are of utmost importance.
Petroleum Refining: The refining of petroleum products often involves separating different hydrocarbons. Molecular sieve beads can separate normal paraffins from branched-chain hydrocarbons, playing a critical role in the production of high-octane fuels.
Pharmaceuticals: The pharmaceutical industry relies on molecular sieve beads to maintain the integrity of sensitive compounds by removing moisture and other impurities during production.
Advantages of Using Molecular Sieve Beads
High Selectivity: The uniform pore size of molecular sieve beads allows for precise separation and adsorption of molecules, making them highly selective and efficient in their function.
Thermal Stability: Molecular sieve beads are thermally stable, meaning they can withstand high temperatures without losing their adsorption capabilities. This makes them suitable for a wide range of industrial applications.
Regenerability: One of the key benefits of molecular sieve beads is their ability to be regenerated. After adsorbing moisture or impurities, they can be heated to release the adsorbed molecules and reused in the process, making them cost-effective.
Versatility: With a variety of pore sizes available, molecular sieve beads can be customized to meet specific industrial requirements, offering flexibility in their application.
Choosing the Right Molecular Sieve Beads
Selecting the appropriate type of molecular sieve beads depends on the specific needs of your application. Factors such as the size of the molecules to be adsorbed, the operating conditions, and the desired level of purity should all be considered when choosing the right beads.
Molecular sieve beads are a critical component in numerous industrial processes, offering unparalleled efficiency in moisture control, gas purification, and more. By understanding their unique properties and applications, industries can optimize their operations, improve product quality, and reduce operational costs.
Whether you're in the field of petrochemicals, pharmaceuticals, or gas processing, molecular sieve beads can make a significant difference in your operations. Invest in high-quality molecular sieve beads to unlock the full potential of your industrial processes and ensure optimal performance.
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Molecular Sieves Market Trends | Revenue, Opportunity, Forecast and Value Chain-2027
Market Dynamics
The high-performance characteristics of molecular sieves are fueling the growth of the global molecular sieves market. Furthermore, the growing demand for molecular sieves from the automotive, transportation, and oil & gas industries is one of the major factors drivingthe market growth. The growth of the global market is also driven by an increasing number of petrochemical projects in emerging economies.
Molecular sieves have distinctive selective adsorption properties a performs excellently even at high temperature. This results in an increase in their prices compared to other alternative products such as silica gel, montmorillonite clay, calcium sulfate, and calcium oxide. Hence, the high cost associated with molecular sieves is hindering the growth of this market.
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Covid Impact
The covid-19 has significantly disrupted the chemicals and materials supply chain, international trade, and manufacturing operations across the globe. The chemicals and materials production facilities have also faced disruptions. Various market players had to shut down the production facilities to limit the spread of Covid-19.
The global molecular sieves market is facing a deep recession caused by the effects of lockdowns in most of the geographies.The major consumers of molecular sieves such as packaging, coating, and automotive have also shut down their production facilities resulting in a decline in demand for molecular sieves globally
The global Molecular Sieves market is projected to be valued at USD 3,068.48 million by the end of 2028, registering a CAGR of 4.68% during the forecast period.
Molecular Sieves are crystalline materials with pores of uniform size and structure, usually natural or synthetic zeolite.Molecular sieve desiccants act as a drying agent for drying liquids and gases andfor separating molecules based on their shapes and sizes.
Segment Analysis
The global Molecular sieves market has been segmentedon the basis of type, shape, product, end-use, and region.
The global market, based on type, has been segmented into 4A, 3A, 5A, 13X, zeolite Y, and others. The 4A segment accounted for the largest market share of more than 20% in 2020, followed by 3A.
Based on shape, the market is classified into bead, pellet, and powder. Among these, in 2020, bead accounted for the largest market share, followed by pellet and powder.
On the basis of product, the global molecular sieves market has been segmented into zeolites, activated carbon, clay, and others. The zeolites segment dominated the market in 2020, accounting for a market share of more than 40%.
The end-use is bifurcated into oil & gas, automotive, packaging, coatings, wastewater treatment, detergents, and others.
On the basis of region, Asia-Pacific dominated the global molecular sieves market in 2020 owing to growing end-use industries such as packaging and the oil & gas industry.
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Key Findings of the Study:
The global molecular sieves market is projected to reach a value of USD3,068.48millionby 2028,with a CAGR of around 4.68%during the forecast period.
Asia-Pacific accounted for the major market share and emerged as the fastest-growing regionin the global molecular sieves market.The growth of the region is attributed to the growing demand from the oil & gas and packaging end-use industries. Also, the growing demand from the pharmaceutical manufacturing sector in Japan, China, and other Southeast Asian countries, is further driving the growth of this market.
Based on type, the global market has been segmented into 4A, 3A, 5A, 13X, zeolite Y, and others. The 4A segment dominated the market in 2020. It is used to remove moisture from gas and liquid streams and is preferred for drying perishable food packaging, chemical, medicine & diagnostic kit packaging, electronics & electrical systems.
By shape, the beads segment accounted for the largest market share due to its application for drying air and compressed gases.
In 2020, zeolites product type accounted for the largest market share in terms of value. These are suitable for purifying, drying, and separating a wider variety of feeds than any other adsorbent.
Based on end-use, In 2020, the others segment held the largest market share of 27.2%, while the packaging sector is expected to register the highest CAGR during the forecast period;however, the oil and gas industry is expected to dominate the market in the coming years
Some of the leading players operating in the Molecular Sieves market are Tosoh Corporation (Japan), Arkema (France), BASF SE (Germany), Honeywell International Inc (US), W. R. Grace & Co (US), Zeochem AG (Switzerland), Merck KgaA (Germany), Sorbead India (India), KNT Group (Russia), MolsivCN (China), Union Showa K.K. (Japan), Van Air, Inc (US).
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The global Molecular Sieve Market has been segmented, By Product Type, By Application, By Product Type (3A, 4A, 13X, Other grades including 5A and 10X), By Application (Oil and gas, Petrochemical, Process, Construction) The report shows an analysis of every area that is directly or indirectly related to this study.
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Global Molecular Sieve Adsorbents Market Research Report 2021 Professional Edition
The global Molecular Sieve Adsorbents market was valued at 100.5 Million USD in 2020 and will grow with a CAGR of 4.9% from 2020 to 2027, based on Our Researcher newly published report.
The prime objective of this report is to provide the insights on the post COVID-19 impact which will help market players in this field evaluate their business approaches. Also, this report covers market segmentation by major market verdors, types, applications/end users and geography(North America, East Asia, Europe, South Asia, Southeast Asia, Middle East, Africa, Oceania, South America).
Molecular Sieve Adsorbents market, molecular sieves are crystalline, highly porous materials, which belong to the class of aluminosilicates and are available in the form of beads, pellets and powder. These crystals are characterised by a three-dimensional pore system, with pores of precisely defined diameter. The corresponding crystallographic structure is formed by tetrahedras of (AlO4) and (SiO4). Molecular sieve adsorbent are crystalline, highly porous materials, which belong to the class of aluminosilicates and are available in the form of beads, pellets and powder. These crystals are characterised by a three-dimensional pore system, with pores of precisely defined diameter. The corresponding crystallographic structure is formed by tetrahedras of (AlO4) and (SiO4). Molecular sieves adsorbent is widely used in industrial applications, such as air separation, petroleum refining, petrochemicals, etc. The production of molecular sieve adsorbent is estimated from 229557 MT in 2012 to 305928 MT in 2016, at a CAGR of more than 7.44%. In 2016, the global zeolite molecular sieve market is led by EU. China is the second-largest region-wise market. At present, the major manufacturers of zeolite molecular sieve are fragmented. The top players cover UOP (Honeywell), CECA (Arkema), Tosoh Corporation, Grace and Zeochem AG etc., which are playing important roles in global Molecular Sieve Adsorbents market. UOP (Honeywell) is the world leader, holding 24.30% production market share in 2016. Molecular sieve adsorbent downstream is widely, the major fields are petroleum refining and air separation, etc. In recent years, petroleum refining industry has developed rapidly. Increasing demand for petroleum refining is expected to drive the demand of the zeolite molecular sieve market. EU and Asia are driven regions, the demand for zeolite molecular sieve is high in these areas. For demand market of molecular sieve adsorbent, there is also a certain space in the next few years, especially in the Chinese market.
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By Market Verdors:
UOP (Honeywell)
CECA (Arkema)
Tosoh Corporation
Grace
Zeochem AG
CWK
KNT Group
Zeolites & Allied Products
Haixin Chemical
Shanghai Hengye
Fulong New Materials
Pingxiang Xintao
Zhengzhou Snow
Luoyang Jianlong Chemical
Henan Huanyu Molecular Sieve
Shanghai Jiu-Zhou Chemical
Anhui Mingmei Minchem
Shanghai Zeolite Molecular Sieve
Zhongbao Molecular Sieve
By Types:
3A
4A
5A
Type X
By Applications:
Air Separation
Petroleum Refining
Petrochemicals
Refrigerants
Natural Gas
Key Indicators Analysed
Market Players & Competitor Analysis: The report covers the key players of the industry including Company Profile, Product Specifications, Production Capacity/Sales, Revenue, Price and Gross Margin 2016-2027 & Sales with a thorough analysis of the market?s competitive landscape and detailed information on vendors and comprehensive details of factors that will challenge the growth of major market vendors.
Global and Regional Market Analysis: The report includes Global & Regional market status and outlook 2016-2027. Further the report provides break down details about each region & countries covered in the report. Identifying its sales, sales volume & revenue forecast. With detailed analysis by types and applications.
Market Trends: Market key trends which include Increased Competition and Continuous Innovations.
Opportunities and Drivers: Identifying the Growing Demands and New Technology
Porters Five Force Analysis: The report provides with the state of competition in industry depending on five basic forces: threat of new entrants, bargaining power of suppliers, bargaining power of buyers, threat of substitute products or services, and existing industry rivalry.
Key Reasons to Purchase
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Table of content
1 Report Overview 1.1 Study Scope 1.2 Key Market Segments 1.3 Players Covered: Ranking by Molecular Sieve Adsorbents Revenue 1.4 Market Analysis by Type 1.4.1 Global Molecular Sieve Adsorbents Market Size Growth Rate by Type: 2021 VS 2027 1.4.2 3A 1.4.3 4A 1.4.4 5A 1.4.5 Type X 1.5 Market by Application 1.5.1 Global Molecular Sieve Adsorbents Market Share by Application: 2022-2027 1.5.2 Air Separation 1.5.3 Petroleum Refining 1.5.4 Petrochemicals 1.5.5 Refrigerants 1.5.6 Natural Gas 1.6 Study Objectives 1.7 Years Considered 1.8 Overview of Global Molecular Sieve Adsorbents Market 1.8.1 Global Molecular Sieve Adsorbents Market Status and Outlook (2016-2027) 1.8.2 North America 1.8.3 East Asia 1.8.4 Europe 1.8.5 South Asia 1.8.6 Southeast Asia 1.8.7 Middle East 1.8.8 Africa 1.8.9 Oceania 1.8.10 South America 1.8.11 Rest of the World 2 Market Competition by Manufacturers 2.1 Global Molecular Sieve Adsorbents Production Capacity Market Share by Manufacturers (2016-2021) 2.2 Global Molecular Sieve Adsorbents Revenue Market Share by Manufacturers (2016-2021) 2.3 Global Molecular Sieve Adsorbents Average Price by Manufacturers (2016-2021) 2.4 Manufacturers Molecular Sieve Adsorbents Production Sites, Area Served, Product Type 3 Sales by Region 3.1 Global Molecular Sieve Adsorbents Sales Volume Market Share by Region (2016-2021) 3.2 G
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A Primer on Molecular Sieves
Molecular sieves don't look like the strainers you find in the kitchen. They don’t feature a mesh barrier or a handle; rather, they’re a bunch of synthetic crystalline zeolite spheres or pellets.
Each piece of this mineral is made up of atoms that have a precise arrangement, containing pores within its molecular structure. If you take a close look at a natural or synthetic zeolite, you'll notice that the cavities have an exact shape and uniform size.
How Does It Work?
Because of the sieve's structure, it's used to modify the composition of various compounds that pass through it. Within its zeolite matrix, the substance's bigger particles bounce off the pellets' surface, the smaller ones enter the pores and get adsorbed, and the rest gets caught in between. In much simpler terms, these minerals function to remove moisture and filter molecules of certain shapes and sizes.
What Are Its Types and Uses?
Because these tools deal with the molecular dimension, its diameters are measured in angstroms (A). There are 4 main types of sieves, each one named after its pore's size:
· 3A: This variant has cavities that measure 3 angstroms. It's typically used to adsorb water in insulated gas and polyurethane. The petrochemical industry uses it to dehydrate hydrocarbon streams, such as acetylene, butadiene, propylene, and cracked gas. Polar liquids like ethanol and methanol may also be dried.
· 4A: This has 4 angstrom-sized pores that can adsorb water, carbon, sulfur dioxide, and more. It’s commonly used to keep items dry in sealed spaces, such as the packaging of food, medicines, chemicals, and electronic devices. The separation of natural gases and alkenes can also be done.
· 5A: Its gaps are 5 angstroms big, which means that it can adsorb substances such as carbon dioxide, hydrogen sulfide, and natural gas mercaptans. These sieves are also used by the aviation industry for degreasing and pour point depression, processes that prepare airplane fuels for use in higher altitudes and lower temperatures.
· 13X: Unlike the previously mentioned types, this is labeled with an X. It means that its pore openings are as big as 10A. Aluminum oxide, sodium dioxide, and sulfur hexafluoride are just a few of the substances it can adsorb. This kind is used for modifying gases and liquids. Natural and petroleum gases may be desiccated, desulfurized, and purified through this variant.
Aside from those 4, sieves can come in many other types that may be used for other purposes, including purifying air in vacuums and maintaining oxygen quality in tanks.
These are just a few of the many cool bits of information on molecular sieves. To see and use these spheres or pellets yourself, get in touch with companies that supply these awesome tools.
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Global Molecular Sieve Adsorbents Market 2019 | Manufacturers In-Depth Analysis Report to 2024
The latest trending report Global Molecular Sieve Adsorbents Market 2019-2024 added by DecisionDatabases.com
Molecular Sieve Adsorbents market, molecular sieves are crystalline, highly porous materials, which belong to the class of aluminosilicates and are available in the form of beads, pellets and powder. These crystals are characterised by a three-dimensional pore system, with pores of precisely defined diameter. The corresponding crystallographic structure is formed by tetrahedras of (AlO4) and (SiO4).
The worldwide market for Molecular Sieve Adsorbents is expected to grow at a CAGR of roughly 4.6% over the next five years, will reach 1320 million US$ in 2024, from 1010 million US$ in 2019.
This report focuses on the Molecular Sieve Adsorbents in global market, especially in North America, Europe and Asia-Pacific, South America, Middle East and Africa. This report categorizes the market based on manufacturers, regions, type and application.
Browse the complete report and table of contents @ https://www.decisiondatabases.com/ip/28597-molecular-sieve-adsorbents-market-analysis-report
Market Segment by Manufacturers, this report covers
· UOP (Honeywell)
· CECA (Arkema)
· Tosoh Corporation
· Grace
· Zeochem AG
· CWK
· KNT Group
· Zeolites & Allied Products
· Haixin Chemical
· Shanghai Hengye
· Fulong New Materials
· Pingxiang Xintao
· Zhengzhou Snow
· Luoyang Jianlong Chemical
· Henan Huanyu Molecular Sieve
· Shanghai Jiu-Zhou Chemical
· Anhui Mingmei Minchem
· Shanghai Zeolite Molecular Sieve
· Zhongbao Molecular Sieve
Market Segment by Regions, regional analysis covers
· North America (United States, Canada and Mexico)
· Europe (Germany, France, UK, Russia and Italy)
· Asia-Pacific (China, Japan, Korea, India and Southeast Asia)
· South America (Brazil, Argentina, Colombia etc.)
· Middle East and Africa (Saudi Arabia, UAE, Egypt, Nigeria and South Africa)
Market Segment by Type, covers
· 3A
· 4A
· 5A
· Type X
· Other
Market Segment by Applications, can be divided into
· Air Separation
· Petroleum Refining
· Petrochemicals
· Refrigerants
· Natural Gas
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The content of the study subjects, includes a total of 15 chapters: Chapter 1, to describe Molecular Sieve Adsorbents product scope, market overview, market opportunities, market driving force and market risks. Chapter 2, to profile the top manufacturers of Molecular Sieve Adsorbents, with price, sales, revenue and global market share of Molecular Sieve Adsorbents in 2017 and 2018. Chapter 3, the Molecular Sieve Adsorbents competitive situation, sales, revenue and global market share of top manufacturers are analyzed emphatically by landscape contrast. Chapter 4, the Molecular Sieve Adsorbents breakdown data are shown at the regional level, to show the sales, revenue and growth by regions, from 2014 to 2019. Chapter 5, 6, 7, 8 and 9, to break the sales data at the country level, with sales, revenue and market share for key countries in the world, from 2014 to 2019. Chapter 10 and 11, to segment the sales by type and application, with sales market share and growth rate by type, application, from 2014 to 2019. Chapter 12, Molecular Sieve Adsorbents market forecast, by regions, type and application, with sales and revenue, from 2019 to 2024. Chapter 13, 14 and 15, to describe Molecular Sieve Adsorbents sales channel, distributors, customers, research findings and conclusion, appendix and data source.
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Global Molecular Sieve Adsorbents 5A Market 2019 - Research Report, Demand, Price, Region and Forecast to 2025
Global Molecular Sieve Adsorbents 5A Market This report tracks the major market events including product launches, development trends, mergers & acquisitions and the innovative business methodologies selected by key market players. Along with strategically analyzing the key markets, the report also focuses on industry-specific drivers, restraints, opportunities and challenges in the Molecular Sieve Adsorbents 5A market. This research report offers in-depth analysis of the market size (revenue), market share, major market segments, SWOT analysis and different geographic regions, forecast for the next seven years, key market players and industry trends.
Access Free Sample Copy of Research Report: http://marketdesk.us/report/global-molecular-sieve-adsorbents-5a-market-2019-99s/60775/#requestForSample
The study objectives of this report are:
1) To analyze global Molecular Sieve Adsorbents 5A status, future forecast, growth opportunity, key market and key players.
2) Comprehensive assessment of all opportunities and risk in the market.
3) Support you to display competitors export or import activities.
4) Detailed study of business strategies for growth of the Molecular Sieve Adsorbents 5A market-leading players.
5) Conclusive study about the growth plot of Molecular Sieve Adsorbents 5A market for forthcoming years.
6) In-depth understanding of market-particular drivers, constraints and major micro Molecular Sieve Adsorbents 5A markets.
7) Favorable impression inside vital technological and market latest trends striking the market.
The next part of this report serves a comparative study of crucial market players. A dashboard view of the dominant players along with their organization profile, product specification, market shares, marketing plans, and accomplishment in the previous years are also covered. The report gives an in-depth analysis of Molecular Sieve Adsorbents 5A that enfolds market drivers, challenges, standardization, opportunities, limitations, ecosystem player profiles, and strategies.
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The report is reliable source of:
- Market trends and dynamics
- Supply and demand
- Current trends/opportunities/challenges
- Market segments and sub-segments
- Technological breakthroughs
- Market size
- Value chain and stakeholder analysis
- Competitive landscape
Key Players
UOP (Honeywell) CECA (Arkema) Tosoh Corporation Grace Zeochem AG CWK KNT Group Zeolites & Allied Products Haixin Chemical Shanghai Hengye Fulong New Materials Pingxiang Xintao Zhengzhou Snow Luoyang Jianlong Chemical Henan Huanyu Molecular Sieve Shanghai Jiu-Zhou Chemical Anhui Mingmei Minchem Shanghai Zeolite Molecular Sieve Zhongbao Molecular Sieve
Product Types
Technical Grade Industry Grade
Applications/End User
Air Separation Petroleum Refining Petrochemicals Refrigerants Natural Gas
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