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Vinyl chloride monomer (VCM) process
Johnson Matthey offers a well-established VCM technology which is recognised by industry as the most advanced acetylene-to-VCM process worldwide.
ExploreOxo alcohols process
Johnson Matthey offers oxo-alcohol processes and a complete range of catalysts suitable for oxo-alcohol manufacture. The LP OxoSM technology is the world’s leading technology for use in the manufacture of oxo alcohols from olefins.
ExploreGold chloride solution (40% w/w Au)
Hydrogen tetrachloroaurate(III) solution | CAS: 16903-35-8
ExploreChloroiridic acid crystal (CIA) Ir-114
Hydrogen hexachloroiridate(IV) solid | CAS: 16941-92-7
ExploreSynthesis technology
Johnson Matthey's DAVYâ„¢ synthesis technologies convert syngas (CO, CO2 & H2) to methanol creating exothermic reactions that have a limited conversion rate, so several passes through a reactor are required to produce sufficient methanol.
ExploreEnvironmental oxidation process
Environmental concerns about industrial emissions to air and water have been continually growing. In response, Johnson Matthey has targeted key issues by applying our expertise in catalysts and catalytic technology.
ExploreNatural detergent alcohols process
Johnson Matthey has licensed the greatest number of plants worldwide for the production of natural detergent alcohols (NDA), also known as fatty alcohols.
ExploreMethylamines process
Johnson Matthey's DAVYâ„¢ methylamines (MA) flowsheet is the most extensively licensed process of its kind in the world. As such, it is well-proven through extensive use across a majority of operating MA plants. We have continued to improve our process and today offer an improved derivative of our original design.
ExploreDiesel particulate filter
Mobile emission controls: a diesel particulate filter (DPF) removes particulate matter from diesel exhaust by physical filtration.
ExploreEPA Tier 4 compliance
Clean air solutions: our integrated SCRT® technology for US EPA Tier 4 diesel engine compliance.
ExploreMethanation catalysts
Methanation is the reaction by which carbon oxides and hydrogen are converted to methane and water. The reaction is catalysed by nickel catalysts. In industry, there are two main uses for methanation, to purify synthesis gas (i.e. remove traces of carbon oxides) and to manufacture methane.
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.
ExploreIRED-72
An imine reductase (IRED) that catalyses the reductive amination of ketones with small aliphatic amines.
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