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Emissions control solutions
For power generation, shipping, mining and industrial processes.
ExploreFischer Tropsch (FT) technology
Johnson Matthey's innovative Fischer Tropsch (FT) technology.
ExploreGas turbine emissions control
Johnson Matthey has been setting the standard in gas turbine emissions control since pioneering the first oxidation catalyst in the 1970s.
ExploreCareers
Are you as curious about the world as we are? Search our job listings to find your place in the team behind the tech that's creating a cleaner, healthier world.
ExploreJM Platinum Group Metal Award Scheme
Our Johnson Matthey Platinum Group Metal Award Scheme, through which academic and research groups can apply for research-quantities of PGM, which can be used in any field to further their understanding and application.
ExploreLow carbon solutions
Technology to revamp and decarbonise steam methane reformers; methanol technology to decarbonise chemical and refining value chains; low carbon hydrogen flowsheets; and more.
ExploreJohnson Matthey drives world-leading fuel cell performance, increasing power density by 20%
Johnson Matthey (JM), as part of leading European consortium GAIA, has helped deliver a fuel cell power density of 1.8 W/cm2 @ 0.6V.
ExploreJohnson Matthey partners with European Metal Recycling (EMR) on a sustainable, circular solution for lithium-ion battery recycling in the UK
News
ExploreJM partners with Stena Recycling Group on sustainable, circular solution for lithium ion battery recycling
News: We've concluded a Memorandum of Understanding with Stena Recycling Group to develop an efficient value chain in Europe for recycling of lithium ion batteries and cell manufacturing materials.
ExploreSilicones market
Many chemical processes employ platinum catalysts but the most significant in terms of platinum demand is the manufacture of speciality silicones.
ExploreSilicones market
Many chemical processes employ platinum catalysts but the most significant in terms of platinum demand is the manufacture of speciality silicones.
ExploreSilicones market
Many chemical processes employ platinum catalysts but the most significant in terms of platinum demand is the manufacture of speciality silicones.
ExploreCCS-enabled (blue) hydrogen
Manufacturing CCS-enabled blue hydrogen at scale is an essential early step in reducing global carbon dioxide emissions, enabling the planet to achieve net zero emissions. Our LCH™ technology (using GHR + ATR) delivers the highest process efficiency and lowest LCOH commercially available today.
ExploreChairman's statement
Read the Chairman's statement as he discusses group performance, strategic focus, board matters and more.
ExploreJohnson Matthey joins Greentown Labs as Gigawatt Partner
News: We've partnered with startup incubator to drive cleantech innovation.
ExploreCarbon Neutral Fuels selects Johnson Matthey and Honeywell technologies to accelerate groundbreaking UK e-fuels project
News
ExploreKellas Midstream enters FEED for its H2NorthEast hydrogen project on Teesside
Kellas Midstream, the Aberdeen-based independent energy infrastructure company, has started front end engineering design (FEED) work on its H2NorthEast hydrogen project in Teesside.
ExploreHyCOgen and FT CANS, innovative technologies to enable sustainable fuel production selected for Repsol and Aramco’s synthetic fuel plant in Bilbao
News
ExploreJohnson Matthey technology selected for one of the largest planned e-methanol plants in Europe
ExploreBiocatalysis
Watch a video explaining what biocatalysis is, read about our continued work and improvements in biocatalysis and discover what you can expect in the future.
ExplorePgm Market Report May 2019 out now
News: Our Pgm Market Report for May 2019 is out now, reviewing supply and demand for the platinum group metals.
ExploreFuel cell vehicles to boost European competitiveness and the Green Deal
The PGM industry is calling for an accelerated rollout of fuel cell vehicles in Europe to complement existing climate strategy while unlocking greater industrial competitiveness and security of critical raw materials supply.
Explore"Euston, this is emission control": Upgrading buses to make London's air cleaner
News: Retrofit technology enables Johnson Matthey and partners to take a twelve-year-old bus and achieve emissions comparable to a modern bus.
ExploreJohn Cockerill, Johnson Matthey and ETFuels Announce Strategic Partnership for 120,000 tonne Texas e-Methanol Project
ETFuels has selected John Cockerill and Johnson Matthey as key strategic partners for its 120,000 tonne per year e-methanol project in Texas.
ExploreAlaDH-6
Alanine dehydrogenase (AlaDH) catalyses the reductive amination of pyruvate to L-alanine.
ExplorePd-118
[1,1-Bis(di tert butylphosphino)ferrocene] dichloropalladium (II) | CAS Number:95408-45-0
ExploreFDH-102
Formate dehydrogenase (FDH) oxidises formate to carbon dioxide while reducing in turn NAD+ to NADH.
ExploreNR-48
Nitroreductase for the reduction of nitroaromatic compounds to their corresponding anilines
ExploreNR-55
Nitroreductase for the reduction of nitroaromatic compounds to their corresponding anilines
ExploreNR-14
Nitroreductase for the reduction of nitroaromatic compounds to their corresponding anilines
ExploreNR-20
Nitroreductase for the reduction of nitroaromatic compounds to their corresponding anilines
ExploreNR-23
Nitroreductase for the reduction of nitroaromatic compounds to their corresponding anilines
ExploreNR-24
Nitroreductase for the reduction of nitroaromatic compounds to their corresponding anilines
ExploreNR-5
Nitroreductase for the reduction of nitroaromatic compounds to their corresponding anilines
ExploreNR-36
Nitroreductase for the reduction of nitroaromatic compounds to their corresponding anilines
ExploreLDH-4
Lactate dehydrogenase (LDH) catalyses the reduction of pyruvate to either (R)- or (S)- lactate, while oxidising in turn NADH to NAD+, which is then regenerated using glucose dehydrogenase (GDH).
ExploreGDH-8
Glucose dehydrogenase (GDH) catalyses the oxidation of D-glucose to D-glucolactone, while reducing in turn NAD+ or NADP+ to NADH and NADPH, respectively.
Explore