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Titlebook: Chemicals from Synthesis Gas; Catalytic Reactions Roger A. Sheldon Book 1983 Springer Science+Business Media Dordrecht 1983 Ion.oxygen.syn

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Book 1983pared on an industrial scale from by-products (ethylene and propylene) of oil refining. This oil-based petrochemical industry, with lower olefms and aromatics as the key building blocks, rapidly developed into the enormous industry it is today. A multitude of products that are indispensible to moder
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Umsetzung der Konzeption bei der Drive AG,the production of liquid fuels (syn fuels). It is unavoidable, therefore, that any treatment of hydrocarbon synthesis should include a discussion of liquid fuels production using the classical Fischer—Tropsch process or the more recently developed methanol conversion over the ZSM-5 catalyst (see below).
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https://doi.org/10.1007/978-3-8350-9222-8y involves reaction of the olefin with one of the three abundantly available reagents: water, molecular oxygen or carbon monoxide. Examples of reactions of olefins with water and molecular oxygen are the conversion of propylene to isopropanol (Reaction 1) and acrolein (Reaction 2), respectively.
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Umsetzung der Konzeption bei der Drive AG,cond involves methanol synthesis and subsequent reactions of methanol with carbon monoxide or syn gas. In this chapter we shall discuss a third approach, namely the direct conversion of syn gas to C. and higher oxygenates.
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Umsetzung der Konzeption bei der Drive AG, single raw material for both liquid fuels and chemicals places the chemical industry in an extremely vulnerable position. This vulnerability has become increasingly evident in recent years and has led to a burgeoning research effort on alternative sources of industrial chemicals.
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Hydrocarbon Synthesis,the production of liquid fuels (syn fuels). It is unavoidable, therefore, that any treatment of hydrocarbon synthesis should include a discussion of liquid fuels production using the classical Fischer—Tropsch process or the more recently developed methanol conversion over the ZSM-5 catalyst (see below).
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Olefin Hydroformylation,y involves reaction of the olefin with one of the three abundantly available reagents: water, molecular oxygen or carbon monoxide. Examples of reactions of olefins with water and molecular oxygen are the conversion of propylene to isopropanol (Reaction 1) and acrolein (Reaction 2), respectively.
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