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catalyst - メーカー・企業5社の製品一覧とランキング

更新日: 集計期間:Oct 08, 2025~Nov 04, 2025
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catalystのメーカー・企業ランキング

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  1. 英商事 本社 Aichi//Resin/Plastic
  2. MP GOKYO FOOD&CHEMICAL CO.,LTD Osaka//Chemical
  3. 蝶理 無機ファイン部 Osaka//Chemical
  4. 4 シーエムシー・リサーチ Tokyo//Service Industry
  5. 5 Panorama Data Insights Ltd. Tokyo//Testing, Analysis and Measurement

catalystの製品ランキング

更新日: 集計期間:Oct 08, 2025~Nov 04, 2025
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  1. DMC catalyst for the ring-opening polymerization of new high-performance olefin oxides. MP GOKYO FOOD&CHEMICAL CO.,LTD
  2. Catalyst "Kasumi Catalyst" 英商事 本社
  3. [Technical Data] Kasumi Catalyst - Low-Temperature Chemical Decomposition Carbonization 英商事 本社
  4. Russian-made neodymium bars (bersate) 蝶理 無機ファイン部
  5. 4 Book "Latest Catalytic Technologies Aiming for Carbon Neutrality" シーエムシー・リサーチ

catalystの製品一覧

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Book "Latest Catalytic Technologies Aiming for Carbon Neutrality"

An introduction to the latest technologies by leading experts fighting on the front lines towards a future where renewable energy, green hydrogen, and CO2 are expected to become sources of energy and raw materials for chemicals.

In 2050, Japan's carbon neutrality is expected to rely on renewable energy, green hydrogen produced from renewable energy, and CO2 from the atmosphere as raw materials for energy and chemicals. Oil refining facilities and naphtha crackers will be eliminated. Consequently, petrochemicals will shift from naphtha-derived ethylene centers to new chemical centers based on CO2 and green hydrogen. The development of processes using new catalysts and fermentation methods will be necessary. On the other hand, waste plastics and waste that are polluting the environment are valuable carbon resources. These must be recycled. Catalysts are essential for chemical recycling. This time, we have invited leading experts who are at the forefront of the fight against global warming to introduce the latest technologies. We hope this will be beneficial to many researchers. 【Features of this book】 ➢ In 2050, Japan's carbon neutrality will rely on renewable energy, green hydrogen produced from renewable energy, and atmospheric CO2 as raw materials for energy and chemicals. ➢ Introduction of the latest technologies by leading experts in the fight against global warming.

  • Fuel Cells
  • Other energy equipment
  • Chemicals

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Catalyst "Kasumi Catalyst"

Decomposition and carbonization of organic molecules through chemical reactions.

The "Kasumi Catalyst" is a catalyst for the decomposition and carbonization of organic materials. By bringing this catalyst into contact with all organic materials, a chemical reaction (decomposition carbonization reaction) occurs, transforming them into powdered carbon. It does not work at room temperature and is adjusted to exhibit catalytic action at temperatures of about 80°C or higher, making it safe to touch at room temperature. 【Features】 ■ The base material is insoluble in water. ■ It is possible to manufacture a variety of catalysts that correspond to reaction devices and decomposition carbonization targets, including different particle shapes, sizes, and materials. ■ As a characteristic of the catalyst, it works well with a dosage of 3-5 wt% for the decomposition target and maintains its effectiveness even after repeated use for several days. ■ Since it involves a chemical reaction at low temperatures, there is no generation of carbon dioxide (CO2) dioxins. *For more details, please download the PDF or feel free to contact us.

  • Chemicals
  • Other polymer materials

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[Technical Data] Kasumi Catalyst - Low-Temperature Chemical Decomposition Carbonization

We will build a new circulation system with new technology. Introducing the Kasumi catalyst.

This document contains technical information about the patented product "Kasumi Catalyst" from Eishoji Co., Ltd. The Kasumi Catalyst is a carbon-based catalyst that chemically separates the molecular chains of organic substances. By stirring the Kasumi Catalyst with organic materials in a temperature range of approximately 80°C to 200°C, powdered carbon is produced through catalytic action. Unlike pyrolysis, dioxins and tar are not generated during the decomposition process. 【Contents (Excerpt)】 ■ What is Kasumi Catalyst ■ How to use Kasumi Catalyst ■ Carbonization equipment using Kasumi Catalyst ■ Features of carbonization equipment using Kasumi Catalyst ■ Goals with Kasumi Catalyst *For more details, please refer to the PDF document or feel free to contact us.

  • Chemicals
  • Other polymer materials

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Russian-made neodymium bars (bersate)

We are engaged in the integrated production of separating and extracting ore (phosphogypsum) from within Russia and producing the final product domestically.

We have the technology to separate and extract rare earth elements, achieving consistent production within Russia. In the future, we also plan to commercially produce medium and heavy rare earths. Neodymium versatate is used as a catalyst in the production of isoprene rubber (IR) and butadiene rubber (BR). Please also visit our inorganic fine chemicals department's website.

  • Chemicals
  • Rubber
  • Other polymer materials

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[Market Report] Global Catalyst Market

The global catalyst market is driving transformation in the industry, with steady growth expected.

The global catalyst market generated approximately $35.5 billion in sales in 2022 and is poised to ignite transformation and innovation. Industry experts predict that this market will achieve an estimated revenue of $54.6 billion by 2031. This anticipated surge highlights a stable compound annual growth rate (CAGR) of 4.9% during the forecast period from 2023 to 2031. Catalysts are the invisible sparks that fuel various chemical reactions and play an essential role in the manufacturing processes of countless products that are part of our daily lives. From petroleum refining and pharmaceutical manufacturing to environmental conservation, catalysts are agents of transformation that enable industries to optimize efficiency and minimize waste. For application methods, please check the [PDF download] button or apply directly through the related links.

  • others

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DMC catalyst for the ring-opening polymerization of new high-performance olefin oxides.

It is used for the synthesis of olefin oxide polyethers with initiators having 1 to 6 functional groups.

The "Coating Materials and Industrial Chemicals Division" of MP Five Cooperation Food & Chemical provides raw materials for inks and paints that protect automobiles, mobile phones, and home appliances from scratches, dirt, and friction while also imparting functionality and stability. Additionally, it sells coating materials that smooth the surfaces of flat panel displays and enhance their dirt resistance and toughness. Introducing the "New High-Performance Catalyst for the Ring-Opening Polymerization of Olefin Oxides." It is used for the synthesis of olefin oxide polyethers with initiators having 1 to 6 functional groups. [Main Applications] ■ Synthesis of Olefin Oxide Polyethers *For more details, please refer to the PDF materials or feel free to contact us.

  • Composite Materials

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