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Johnson Matthey's fluorination catalysts are based on chromia for the vapour phase fluorination of alkenes and halocarbons with HF for the production of a wide range of fluorochemicals.
Our amination catalysts are used for a variety of speciality amines production and downstream of our oxo-alcohol catalysts.
The latest products in our low temperature shift range combine high activity and poisons resistance with excellent selectivity to give low methanol by-product formation.
Read about our high temperature shift catalysts. Our latest high activity products are the result of extensive catalyst development in high temperature duties.
Johnson Matthey is the world's leading supplier of sour shift catalysts with the KATALCO K8-11 series of products.
Medium temperature shift (MTS) and isothermal shift (ITS) catalysts are becoming more common in use.
CAS Number: 64536-78-3
EASY-FLO™ products are general-purpose silver brazing fluxes. They can be used on the common engineering metals including copper, copper alloys, nickel alloys, steel, stainless steel and tungsten carbide.
STOP-FLO™ No.1 and STOP-FLO No.2 are two stop-off or ‘parting’ compounds formulated to prevent the flow and wetting of molten brazing filler metal across the surface of a component during the brazing process.
The ARGENTEL™ range of products are designed for the brazing of steel or copper components and also for brazing steel to tungsten carbide in tooling applications.
See our range of lead-free, silver-lead, tin-lead and low-melting indium soft solders.
Potassium tetrachloroplatinate(II) | CAS: 10025-99-7
We have a range of high quality platinum group metal (pgm) tube used in industrial and jewellery applications, available in a range of materials, diameters and shapes.
Expansion of our DAVY™ process portfolio is a key element of our business strategy, and this is accomplished by a combination of in-house developments, acquisition and collaborative programmes.
Depending on feedstock, operating conditions and desired end product specification, our experienced technical specialists will advise you on the most appropriate HTC type - or a combination thereof.
An alcohol dehydrogenase (ADH) for the reduction of ketones and aldehydes to the corresponding alcohols
An alcohol dehydrogenase (ADH) for the reduction of ketones and aldehydes to the corresponding alcohols.
Aromatic and aliphatic primary amines can be obtained using Amine Dehydrogenases.
Aromatic and aliphatic primary amines can be obtained using our Transaminases
Ene reductase enzymes for the reduction of C=C double bonds in the presence of an electron withdrawing group
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