Maleic Anhydride Market Trend 2022: Industry Upcoming Developments, Global Economics, Market Dynamics, Size, Share, Emerging Trends, Business Strategies of Top Key Players, Revenue Forecast 2031

Global Maleic Anhydride report from Global Insight Services is the single authoritative source of intelligence on Maleic Anhydride market. The report will provide you with analysis of impact of latest market disruptions such as Russia-Ukraine war and Covid-19 on the market. Report provides qualitative analysis of the market using various frameworks such as Porters’ and PESTLE analysis. Report includes in-depth segmentation and market size data by categories, product types, applications, and geographies. Report also includes comprehensive analysis of key issues, trends and drivers, restraints and challenges, competitive landscape, as well as recent events such as M&A activities in the market.

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MARKET SEGMENTS

By Raw Material

  • n-butane
  • Benzene

By Application

  • UPR
  • 1,4-BDO
  • Lubricating Oil Additives
  • Copolymers
  • Others
KEY PLAYERS
  • Huntsman Corporation
  • Ineos
  • Ashland Inc.
  • Flint Hills Resources, LLC (USA),
  • Changzhou Yabang Chemical Co., Ltd.
  • Shanxi Qiaoyou Chemical Co., Ltd.
  • Polynt-Reichhold Group
  • Zibo Qixiang Tengda Chemical Co., Ltd.
  • Mitsubishi Chemical Corporation

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KEY TRENDS

The key trends in Maleic Anhydride technology are the development of new synthesis methods, the use of new catalysts, and the development of new uses for Maleic Anhydride.

The traditional method for producing Maleic Anhydride is the thermal oxidation of n-butane. However, this process has several drawbacks, including the need for high temperatures and pressures, and the formation of by-products that can be difficult to remove. As a result, there has been a push to develop new synthesis methods that are more efficient and produce fewer by-products.

One promising new synthesis method is the direct oxidation of benzene. This process uses a catalyst to convert benzene into Maleic Anhydride at lower temperatures and pressures than the traditional process. This method also produces less of the by-products that can be difficult to remove.

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