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Showing results 1021-1040 / 1650

NR-48

Nitroreductase for the reduction of nitroaromatic compounds to their corresponding anilines

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NR-55

Nitroreductase for the reduction of nitroaromatic compounds to their corresponding anilines

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CATACEL SSR catalyst for steam reforming

Johnson Matthey’s CATACEL SSR tailored catalyst technology is a proven high performance, direct replacement catalytic solution for producing hydrogen from natural gas through the steam reforming process.

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Ir-125

[Ir{dF(CF₃)ppy}₂(dtbbpy)][PF₆] | CAS # 870987-63-6

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Ir-127

IrCl(COD)(dppe) | CAS 688063-93-6

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Ir-125

[Ir(ppy)₂(dtbbpy)][PF₆] | CAS # 676525-77-2

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Substitute natural gas (SNG) process

With over 20 years' experience, Johnson Matthey is the market leader in the supply of SNG catalysts and technology, with our DAVY™ licensed plants providing more than half of global SNG production.

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Ni-114

NiCl2(dppp) | CAS 19999-87-2

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ARGO-BRAZE™ filler metals

ARGO-BRAZE™ products are most commonly used for brazing cemented tungsten carbide and tungsten carbide faced PCD tips.

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PALLABRAZE - filler metals

PALLABRAZE™ products can be used to braze a variety of materials from stainless steel to metalised ceramics.

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Ir-70

Ir(acac)₃ | CAS 15635-87-7

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Ir-95

[Ir(cod)(Me₄phen)]Cl • THF | CAS 15635-87-7

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Ir-121

[Ir(Cp*)I₂]₂ | CAS 33040-12-9

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Ir-121

Ir(C₈H₁₂){PCH₃(C₆H₅)₂}₂PF₆ | CAS 38465-86-0

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Purification by catalytic oxidation

Our PURAVOC™ technology provides a catalytic oxidation solution to remove a broad variety of volatile organic compounds (VOCs), oxygen, hydrogen and carbon monoxide from various gas stream sources.

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PGM Platinum

Platinum is used in a wide variety of applications with platinum jewellery accounting for almost a quarter of annual platinum demand, but the largest use is in automotive catalytic converters..

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B312099-5

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PRECISION Methanol technology

Our PRECISION Methanol process is based on autothermal reforming, and it is the best solution for lighter feedstocks with low levels of CO2 and inert gases. It achieves high natural gas efficiency without the need to import H2, delivering low OPEX, economy of scale and the fastest pay-back time for medium to large methanol capacities.

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Waste to methanol

Waste is a source of valuable carbon and hydrogen that can be transformed into methanol. This reduces the amount of waste destined to landfill and incineration and replaces natural gas and coal-based feedstocks, enabling the production of more sustainable fuels and chemicals with a lower carbon footprint.

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CO2 to methanol

Methanol produced using electrolytic hydrogen is an attractive alternative and potentially carbon neutral fuel. It can be directly used as a road and maritime transportation fuel or as a low carbon intensity intermediate to produce Sustainable Aviation Fuel (SAF) or green gasoline.

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