Zeolites Market : Business Growth, Regional Trends, Sales Revenue, Size, Development Status, Key Players Analysis And Comprehensive Research Study Till 2025

“Credence Research”
According to a new market report published by Credence Research, “Zeolites Market Growth, Future Prospects and Competitive Analysis, 2017 – 2025,” the global Zeolites market is expected to at a CAGR of 3.7% from 2017 to 2025.

Market Insights:

The global zeolites market is expected to witness high growth during the forecast period 2017 to 2025. Strong demand from detergents industry is anticipated to drive the demand for the zeolites in upcoming years. The global zeolites market  is projected to grow a CAGR of 3.7% from 2017 to 2025.

By product type, zeolites market segmentation includes natural and synthetic type; of which, in 2016, natural form dominated the market in terms of revenue contribution and is further expected to remain dominant during the forecast period of 2017 to 2025. Currently, growing demand for natural zeolites catalyst, adsorbent, etc. is fueling the demand for natural form of zeolites. However, synthetic form segment is expected to register high growth in the near future. Owing to rapidly growing demand for synthetic zeolite as a catalyst, adsorbent and detergent builder.

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Browse the full Zeolites Market by form natural and synthetic, by application Medical Application, Catalyst, Adsorbent, Detergent builders and Others – Growth, Future Prospects and Competitive Analysis, 2017 – 2025 report at https://www.credenceresearch.com/report/zeolites-market

On the basis of applications, the global zeolites market is segmented into catalysts, adsorbents, detergent builders and other applications. Among these, detergents supplements segment dominated the market. This segment is projected to maintain its dominance over the next eight years. Furthermore, decrease in the use of phosphates will help in the growth of the global zeolites market as they are the most preferred substitute for phosphates. Some of the other factors fuelling the zeolites market growth include demand from water treatment, refinery, nuclear, biogas, detergents, construction, medical, agriculture, etc. applications

For the purpose of this study, the global zeolites market is categorized into regional markets viz., North America, Europe, Asia Pacific and Latin America and Middle East and Africa. In base year 2016, Europe and Asia pacific were observed as the largest market for zeolites. In Asia Pacific, China and India serve potential markets for zeolites in the next five to six years. Growing consumption of zeolite as detergent builders and absorbent especially in China and India, along with commercialization measures for zeolite as an absorbent in various end-use industries is likely to fuel the zeolite market growth.

Furthermore, zeolites market is moderately consolidated due to the presence of a few established players. Companies present in Asia pacific and Europe are extensively focusing on research and development for developing blend formulations comprising zeolites as a catalyst, absorbent, etc. and focusing on expanding their business network, across regional markets. Anhui Mingmei MinChem Co. Ltd., Arkema Group, BASF SE, Chemiewerk Bad Köstritz GmbH (CWK), Clariant, Dalian Haixin Chemical Industrial Co.Ltd., Grace Catalysts Technologies, Interra Global Corporation, KNT Group, Tosoh Corporation, Tricat Group, Union Showa K.K. (USKK), UOP LLC, Yingkou Zhongbao Molecular Sieve Co.Ltd., Zeochem AG and Zeox Corporation. are few key manufacturers in zeolites market.

Key Trends:

  • Growing consumer inclination towards synthetic zeolites
  • Increasing array of applications
  • Asia pacific is expected to register the highest growth rate
  • High prices of zeolites products is acting as a restrain to growth of the market
  • Strong demand from emerging economies


Chapter 1 Preface
1.1 Report Description
1.1.1 Purpose of the Report
1.1.2 Target Audience
1.1.3 USP and Key Offerings
1.2 Research Scope
1.3 Research Methodology
1.3.1 Phase I – Secondary Research
1.3.2 Phase II – Primary Research
1.3.3 Phase III – Expert Panel Review
1.3.4 Approach Adopted

Chapter 2 Executive Summary
2.1 Market Snapshot: Global Zeolites Market
2.2 Zeolites Market (Tons) (US$ Mn), by Product Type, 2016
2.3 Zeolites Market (Tons) (US$ Mn), by Application, 2016
2.4 Zeolites Market (Tons) (US$ Mn), by Geography, 2016

Chapter 3 Market Dynamics
3.1 Market Overview
3.2 Value Chain Analysis
3.3 Market Drivers
3.3.1 Growing Use Of Zeolite As Refrigeration Adsorbents
3.3.2 Rising Demand from the Detergent Industry
3.4 Challenges
3.4.1 High Prices of Zeolites Products
3.4.2 Concerns Over Side Effects and Stringent Regulations
3.5 Future Prospects
3.5.1 Strong Demand from Emerging Economies
3.6 Impact Analysis of Drivers, Challenges and Opportunities
3.7 Porter’s Five Forces Analysis
3.7.1 Bargaining Power of Suppliers
3.7.2 Bargaining Power of Buyers
3.7.3 Threat of Substitutes
3.7.4 Threat Of New Entrants
3.7.5 Industry Rivalry

Chapter 4 Global Zeolites Market Analysis, by Product Type
4.1 Overview
4.2 Global Zeolites Market Revenue Share, By Type, 2016 & 2025 (% Value)
4.3 Attractive Investment Proposition, by Product Type, 2016
4.4 Natural
4.4.1 Global Natural Zeolites Market, 2015 – 2025 (Tons) (US$ Mn)
4.5 Synthetic
4.5.1 Global Synthetic Zeolites Market, 2015 – 2025 (Tons) (US$ Mn)

Chapter 5 Global Zeolites Market, By Application
5.1 Overview
5.1.1 Global Zeolites Market Revenue Share, By Application, 2016 & 2025 (% Value)
5.1.2 Attractive Investment Proposition, by Application, 2016
5.2 Catalyst 
5.2.1 Global Zeolites Market, by Food Supplements Application, 2015 – 2025 (Tons) (US$ Mn)
5.3 Adsorbent 
5.3.1 Global Zeolites Market, by Beverages Application, 2015 – 2025 (Tons) (US$ Mn)
5.4 Detergent builders 
5.4.1 Global Zeolites Market, by Confectionery Application, 2015 – 2025 (Tons) (US$ Mn)
5.5 Others (Dietary Supplements, Wound Care, Silver Zeolite, etc.)
5.8.1 Global Zeolites Market, by Other Applications, 2015 – 2025 (Tons) (US$ Mn)

………………………toc continued

Browse the full Zeolites Market by form natural and synthetic, by application Medical Application, Catalyst, Adsorbent, Detergent builders and Others – Growth, Future Prospects and Competitive Analysis, 2017 – 2025 report at https://www.credenceresearch.com/report/zeolites-market

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Synthetic zeolites, as other mesoporous materials (e.g. MCM-41), are widely used as catalysts in the petrochemical industry, for instance in fluid catalytic cracking and hydrocracking. Zeolites confine molecules in small spaces, which causes changes in their structure and reactivity. The acidic forms of zeolites prepared are often powerful solid-state solid acids, facilitating a host of acid-catalyzed reactions, such as isomerisation, alkylation, and cracking. Catalytic cracking uses reactor and a regenerator. Feed is injected onto hot, fluidized catalyst where large gasoil molecules are broken into smaller gasoline molecules and olefins. The vapor-phase products are separated from the catalyst and distilled into various products. The catalyst is circulated to a regenerator where air is used to burn coke off the surface of the catalyst that was formed as a byproduct in the cracking process. The hot regenerated catalyst is then circulated back to the reactor to complete its cycle. Zeolites have uses in advanced nuclear-waste reprocessing methods, where their micro-porous ability to capture some ions while allowing others to pass freely allows many fission products to be efficiently removed from the waste and permanently trapped. Equally important are the mineral properties of zeolites. Their alumino-silicate construction is extremely durable and resistant to radiation even in porous form. Additionally, once they are loaded with trapped fission products, the zeolite-waste combination can be hot pressed into an extremely durable ceramic form, closing the pores and trapping the waste in a solid stone block. This is a waste form factor that greatly reduces its hazard compared to conventional reprocessing systems. Zeolites are also used in the management of leaks of radioactive materials. For example, in the aftermath of the Fukushima Daiichi nuclear disaster, sandbags of zeolite were dropped into the seawater near the power plant to adsorb radioactive caesium which was present in high levels.The German group Fraunhofer e.V. announced that they had developed a zeolite substance for use in the biogas industry for long-term storage of energy at a density 4x more than water. Ultimately, the goal is to be able to store heat both in industrial installations and in small combined heat and power plants such as those used in larger residential buildings. -wikipedia”


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