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Methanol process

Johnson Matthey is one of the world’s leading methanol technology and catalyst providers, with over half of the world’s licensed methanol plants based on our DAVY™ technology.

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Pd-100

Bis(triphenylphosphino)palladium chloride | CAS: 13965-03-2

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Fischer Tropsch technology

Johnson Matthey have collaborated with BP to produce our proprietary fixed-bed Fischer Tropsch (FT) technology – a simple and robust system which forms the heart of our gas-to-liquids (GTL) process.

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Bottoms upgrading FCC additive

Information on bottoms upgrading FCC additive.

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Ir-113, iridium trichloride solid

Iridium(III) chloride solid | CAS: 14996-61-3

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Karstedt catalysts

Explore our range of Karstedt catalysts.

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Steam methane reforming catalysts

Selecting the right steam methane reforming catalyst is crucial for the production rates and plant efficiency of hydrogen, ammonia and methanol plants.

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Coatings and surface solutions

Our innovative and customised coatings and surface solutions enable new technologies for medical devices by enhancing surface functionality of various metallic, polymeric, and ceramic components.

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10R128M | 10% Platinum/Carbon

10% Platinum/Carbon

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5R374

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5R395

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Ir-115

CAS Number: 12354-84-6

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Ethanolamine hexahydroxyplatinic acid (Platinum EA solution)

Ethanolamine hexahydroxyplatinic acid

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Platinum plating salts

In a Proton Exchange Membrane (PEM) electrolysis cell, two bipolar plates surround the membrane and electrodes. These transport water and product gases to and from the membrane, as well as conducting electricity and circulating coolants.

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A310050-5

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Thermocouple wire

Our precious metal thermocouples are internationally renowned for highly accurate and reliable temperature measurement.

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Hydroformylation catalyst

Johnson Matthey offers a complete range of rhodium compound catalysts for the hydroformylation reaction, including rhodium chloride, rhodium acetate or the original Wilkinson catalyst RhCl(PPh3)3.

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Hydroprocessing catalysts

Johnson Matthey offers a range of high quality hydroprocessing catalysts to the global refinery market.

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Dimethyl formamide (DMF) process

Dimethyl formamide (DMF) is produced by reacting dimethylamine with carbon monoxide in the presence of a catalyst at low temperature and pressure in a specialised reactor. Johnson Matthey license the DAVY™ DMF process, which is well-proven commercially.

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Methane oxidation catalysts

Clean air solutions: our system offers cost-effective, low-temperature oxidation of methane from active and abandoned coal mines.

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Pd-201

CAS Number: 2548904-13-6

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Mixed oxide catalyst pellets and honeycombs

Clean air solutions: Johnson Matthey’s SINOx® mixed oxide catalysts can be used alone or in combination with precious metal oxidation catalysts for more efficient and economical catalyst systems.

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Pt-112

Bis(diethylsulphide)platinum(II) chloride | CAS: 15337-84-5

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Buchwald palladacycle kit

This kit contains a range of 2nd and 3rd generation Buchwald palladacycles that are air stable complexes and can be rapidly activated under mild conditions.

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OROBRAZE

Gold-copper OROBRAZE™ filler metals show good wetting on Fe, Ni, Co, Ta, Nb and W.

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Platinum blacks

Explore our range of platinum black products.

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Platinum P Salt in ammonia

Diamminedinitroplatinum(II) in ammoniacal solution | CAS: 14286-02-3

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C1-330

CAS Number: 124069-39-2

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C1-340

CAS Number: 126251-92-1

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C1-351

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FORMOX formaldehyde process

Johnson Matthey license the FORMOX™ formaldehyde process, with plant capacities ranging from 70 MTPD to nearly 840 MTPD. The process enables the production of concentrations up to 55%, which means reduced costs of downstream production, storage and transport.

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RTA-104

Aromatic and aliphatic primary amines can be obtained using our Transaminases

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RTA-105

Aromatic and aliphatic primary amines can be obtained using our Transaminases

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RTA-45

Aromatic and aliphatic primary amines can be obtained using our Transaminases

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RTA-25

Aromatic and aliphatic primary amines can be obtained using our Transaminases

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RTA-40

Aromatic and aliphatic primary amines can be obtained using our Transaminases

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STA-1

Aromatic and aliphatic primary amines can be obtained using our Transaminases

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RTA-58

Aromatic and aliphatic primary amines can be obtained using our Transaminases

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RTA-57

Aromatic and aliphatic primary amines can be obtained using our Transaminases

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STA-118

Aromatic and aliphatic primary amines can be obtained using our Transaminases

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