We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for catalyst.
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catalyst Product List and Ranking from 98 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Dec 31, 2025~Jan 27, 2026
This ranking is based on the number of page views on our site.

catalyst Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Dec 31, 2025~Jan 27, 2026
This ranking is based on the number of page views on our site.

  1. イリス 東京本社、大阪支店、名古屋支店 Tokyo//Industrial Machinery
  2. 希少金属材料研究所 Okayama//Ferrous/Non-ferrous metals
  3. KANTO CHEMICAL CO., INC. Biochemical Dept Tokyo//Chemical
  4. 中部 Aichi//Trading company/Wholesale
  5. 5 null/null

catalyst Product ranking

Last Updated: Aggregation Period:Dec 31, 2025~Jan 27, 2026
This ranking is based on the number of page views on our site.

  1. Hot stamp roller heat-type continuous heating furnace device イリス 東京本社、大阪支店、名古屋支店
  2. "TiO2 Alternative" Deodorizing Antibacterial Catalyst 'CLARUS-W' 希少金属材料研究所
  3. For food processing plants! Photocatalytic coating 'Nanozone Coat' 中部
  4. 4 (Petroleum-based) Liquid Fuel Active Catalyst Tank Tiger PS-1 エコアドバンスジャパン 本社、研究施設、製造工場
  5. 4 Mold Monitoring Device PLUS-E PE-700 [Free Demo Available!] ウシオライティング

catalyst Product List

211~225 item / All 260 items

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[Research Material] World Market for Environmental (Mobile Emission) Catalysts

Global Market for Environmental (Mobile Emission) Catalysts: Combustion Catalysts, Nitrogen Oxide Purification Catalysts, Automotive Exhaust Catalysts, Small Vehicles, Large Vehicles, Motorcycles

This research report (Global Environmental (Mobile Emission) Catalyst Market) investigates and analyzes the current state and future outlook of the global market for environmental (mobile emission) catalysts over the next five years. It includes information on the overview of the global environmental (mobile emission) catalyst market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The market segments by type include combustion catalysts, nitrogen oxide purification catalysts, and automotive exhaust catalysts, while the segments by application focus on small vehicles, large vehicles, and motorcycles. The regional segments are divided into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa, to calculate the market size for environmental (mobile emission) catalysts. The report also includes the market share of major companies in the environmental (mobile emission) catalyst sector, product and business overviews, and sales performance.

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[Research Material] World Market for Environmental Catalysts

Global Market for Environmental Catalysts: VOC Oxidation Catalysts, CO Oxidation Catalysts, Selective Catalytic Reduction Catalysts, Others, Manufacturing Industry, Automotive

This research report (Global Environmental Catalysts Market) investigates and analyzes the current state and outlook for the global environmental catalysts market over the next five years. It includes information on the overview of the global environmental catalysts market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The market segments by type include VOC oxidation catalysts, CO oxidation catalysts, selective catalytic reduction catalysts, and others, while the segments by application focus on manufacturing and automotive industries. The regional segments are categorized into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa to calculate the market size for environmental catalysts. It also includes the market share of major companies in the environmental catalysts sector, product and business overviews, and sales performance.

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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.

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Catalytic Technology Q&A Course

This is a beginner to intermediate level Q&A format course that summarizes questions about "catalyst" technology that have been raised by the instructor so far, making it easy to understand and reference.

★Why can't catalysts be used indefinitely? How can their activity be increased? What are the methods for removing catalyst poisons? ★What is the optimal filling method for catalysts? What types of measurement devices are available for catalyst properties? What are the recently notable petrochemical catalysts? ★Take this opportunity to use the free time Q&A to address the challenges you face on a daily basis with the instructor. 【Instructor】Takahiro Muroi, Representative of IC Lab (Advisor at BASF Japan, Part-time Lecturer at Kanagawa University, Visiting Researcher at Waseda University) 【Venue】Industrial Promotion Hall, Room 2 【Kawasaki Station, Kanagawa】 【Date and Time】December 21, 2010 (Tuesday) 10:30-16:30 【Lecture ends at 16:00. Free time Q&A from 16:00-16:30】

  • Company:AndTech
  • Price:Less than 10,000 yen
  • Technical Seminar
  • catalyst

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Trends in the shale gas revolution and catalyst technology, future prospects in the petrochemical field.

A thorough explanation of the knowledge essential for catalysts in chemical manufacturing!

Shale Gas Revolution: The Technical Shift of Petrochemical Manufacturing Processes, the Catalyst, the Future, etc. ★ Full-scale utilization of shale gas is predicted to begin in a few years! ★ How will processes and catalysts change with the reorganization of materials!? 【Speaker】 Takaki Muroi, Representative of IC Lab 【Venue】 Tekuno Kawasaki, 1F, Room 1【Kanagawa, Kawasaki】 【Date and Time】August 26, 2013 (Monday) 13:30-16:30

  • Company:AndTech
  • Price:10,000 yen-100,000 yen
  • Technical Seminar
  • catalyst

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Activator (Pd alternative) DynaAct PB-830Z

Silver colloid activator

The Dainakuchi PB-830Z is a silver (Ag) colloid activator used as a catalyst additive for electroless copper plating on various plastics, coating resin films, fibers, and paper. It can be used as an alternative to traditional palladium catalysts, providing adhesion properties equivalent to those of palladium (Pd). Additionally, since there is no residual Pd smut, it prevents issues caused by overflow during subsequent electroless Ni to Au plating after copper plating.

  • Chemicals
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Fuel efficiency tests conducted by Unified Corporation's Philippine branch using the "101iSaver."

[Experiment Report] It was found that heavy oil consumption was reduced by approximately 28 liters per hour. The fuel-saving device "101iSaver" achieves even greater feats!

This is a test of fuel consumption for heavy oil at the Philippine base of the renowned Taiwanese company, Uni-President Enterprises, using the fuel-saving device iSaver "GT-03" from 101 Environmentally Friendly Green Energy for ships and boilers. We measured and recorded the fuel consumption before and after installing the fuel-saving device "101iSaver GT-03" on the number 2 boiler used for instant noodle production. The results showed an average fuel consumption of 186.44ℓ/hr before installation and 158.59ℓ/hr after installation, indicating a fuel saving of approximately 28ℓ/hr (fuel saving rate of 14.93%). If operated continuously for 24 hours, this means that about 672ℓ of fuel can be saved. For more details, please download the catalog or contact us.

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The benefits of using photocatalysts.

Deodorizing effect and the ability to decompose and remove harmful substances! The antibacterial effect is also attractive.

Our company is engaged in the manufacturing of photocatalysts. Do you know what photocatalysts are? In fact, by utilizing photocatalysts, you can enjoy many benefits, so I would like to briefly introduce them this time. *For detailed content of the column, you can view it through the related links. For more information, please feel free to contact us.*

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Iridium catalyst for amine synthesis

This is an iridium catalyst that can synthesize amine compounds in water and under atmospheric conditions.

We sell an iridium catalyst for amine synthesis developed by Professor Emeritus Ryohei Yamaguchi and Professor Kenichi Fujita of Kyoto University. This catalyst allows for the synthesis of amine compounds using alcohol as an alkylating agent and ammonia or amine compounds as a nitrogen source, even under aqueous or atmospheric conditions. 【Features】 ■ Reactions proceed under aqueous and atmospheric conditions ■ Achieves high atomic efficiency ■ Catalyst can be reused multiple times For more details, please download the catalog or feel free to contact us.

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Non-uniform interstitial moving catalyst (simplified Maruoka catalyst)

Natural and non-natural α-amino acids can be synthesized with high efficiency and high selectivity!

Metal-free asymmetric organic catalysts are environmentally friendly catalysts that can avoid the contamination of waste liquids and products with metals after the reaction. The asymmetric phase-transfer catalyst (simplified Maruoka catalyst) developed by Professor Maruoka and his team at Kyoto University can synthesize important natural and non-natural α-amino acids, which are raw materials for pharmaceutical intermediates, with high efficiency and high selectivity. For more details, please download the catalog or feel free to contact us.

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Nickel catalyst for direct cross-coupling reactions (Ni-dcype)

A coupling reaction of combinations that was previously impossible is now possible!

At Kanto Chemical, we are selling a nickel catalyst (Ni-dcype) developed by Professor Kenichiro Itami from Nagoya University’s Institute of Transformative Bio-Molecules (WPI-ITbM) and Professor Junichiro Yamaguchi from Waseda University’s School of Advanced Science and Engineering. By using this catalyst, it is possible to synthesize coupling compounds between hetero compounds and phenolic derivatives, aromatic esters, enol derivatives, or unsaturated esters with high efficiency. 【Features】 ■ Enables coupling reactions with combinations that were previously impossible ■ Minimal environmental impact as it does not use organometallic reagents or organic halides ■ Utilizes ubiquitous nickel instead of the rare metal palladium For more details, please download the catalog or feel free to contact us.

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Carbon-hydrogen bond activation cobalt catalyst (Cp*Co(CO)I2)

It exhibits catalytic performance equivalent to that of rare and expensive rhodium.

The cobalt catalyst for carbon-hydrogen bond activation (Cp*Co(CO)I2), identified for its usefulness by Professor Motoharu Kanai of the University of Tokyo, Professor Shigeki Matsunaga of Hokkaido University, and Assistant Professor Tadahiko Yoshino, can be handled stably in the air and allows for the easy generation of cationic catalytic active species by mixing with silver salts in the reaction vessel. Additionally, it exhibits catalytic performance equivalent to that of rare and expensive rhodium, enabling cost reduction in the process. 【Features】 ■ Alternative to Rhodium (Rh) It demonstrates equivalent performance without using expensive and rare rhodium (Rh). ■ Cost Reduction It can be used as a substitute for rhodium (Rh), allowing for cost reduction in the process. ■ Easy Handling It can be handled stably in the air. For more details, please download the catalog or feel free to contact us.

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Iridium catalyst for oxidation reactions

Oxidation reactions of alcohols (aldehydes, ketones, carboxylic acids)

At Kanto Chemical, we sell iridium catalysts developed by Professor Emeritus Ryohei Yamaguchi and Professor Kenichi Fujita of Kyoto University, which can oxidize primary and secondary alcohols into the corresponding aldehydes, ketones, and carboxylic acid compounds with high efficiency without using oxidants. Please utilize them as one of the synthetic tools in product development. 【Features】 ■ Cp*Ir cat. 1 For ketone synthesis, reacts under neutral conditions, cost-effective ■ Cp*Ir cat. 2 For ketone and aldehyde synthesis, reacts under neutral conditions and in air atmosphere, reusable catalyst ■ Cp*Ir cat. 3 For ketone and aldehyde synthesis, reacts under neutral conditions and in air atmosphere, higher activity compared to Cp*Ir cat. 1 and 2 ■ Cp*Ir cat. 4 For carboxylic acid synthesis, under basic, aqueous conditions For more details, please download the catalog or feel free to contact us.

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Dehydrogenation iridium catalyst

It is possible to efficiently produce hydrogen from a methanol aqueous solution!

At Kanto Chemical, we sell anionic iridium complex catalysts (Cp*Ir catalyst) developed by Professor Emeritus Ryohei Yamaguchi and Professor Kenichi Fujita of Kyoto University. This catalyst demonstrates high performance in the dehydrogenation reaction that occurs during the hydrogen generation process, allowing for the efficient production of hydrogen from methanol aqueous solution under milder conditions than conventional methods. 【Features】 ■ Mild reaction conditions (dilute base concentration, no need for excess organic solvent, low reflux temperature) ■ High catalytic activity ■ Stable in aqueous media For more details, please download the catalog or feel free to contact us.

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Non-uniform cyanation catalyst

Asymmetric cyanation catalyst that allows for the recovery and reuse of complexes!

Our company sells the "asymmetric cyanation catalyst" developed by Professor Okuma and others at Hokkaido University. This asymmetric cyanation catalyst is stable in air and easy to handle. This complex does not exhibit catalytic activity on its own, but by adding lithium sources such as lithium chloride, lithium carbonate, or lithium phenoxide to the reaction system, it forms a complex with lithium, demonstrating high catalytic activity and stereoselectivity. This catalyst can react not only with aldehydes and ketones but also with α,β-unsaturated ketones and aldimines, which have not previously been known to react efficiently, allowing for the easy and high-yield production of cyanides with high optical purity. The recovery and reuse of the complex are also possible. For more details, please download the catalog or feel free to contact us.

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