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Titlebook: Catalytic Conversions of Synthesis Gas and Alcohols to Chemicals; Richard G. Herman Book 1984 Plenum Press, New York 1984 Metall.Methanol.

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Interconnections: Theory, Myth, and Sciencessing. Most synthesis gas produced today comes from natural gas by catalytic reforming, but commercial production of synthesis gas by partial oxidation of heavy-liquids is also widely practiced. Only a minor amount of synthesis gas is produced today by solid fuel gasification.
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Conversion of Synthesis Gas to Olefins over Physical Mixtures of High SiO2/Al2O3 ZSM-5 And Fe(K)ing with hydroxide gel, while Caesar et al [2] used a composite catalyst of separate 700 to 1500µm diameter particles of ZSM-5 and the Fischer-Tropsch component. The latter paper showed that a mixture of potassium-promoted fused iron catalyst with a volume excess of ZSM-5 generated a C.-200°C aromatic gasoline with a research octane number of 92.
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https://doi.org/10.1007/978-3-031-15363-1balt. With these catalysts, high yields of higher alcohols were obtained under methanol synthesis conditions, and, in contrast with other copper-cobalt systems [1–2], there was no appreciable methanation, and little [3] or moderate [4] formation of higher hydrocarbons.
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Effects of Cobalt on Synthesis Gas Reactions over Copper-Based Catalystsbalt. With these catalysts, high yields of higher alcohols were obtained under methanol synthesis conditions, and, in contrast with other copper-cobalt systems [1–2], there was no appreciable methanation, and little [3] or moderate [4] formation of higher hydrocarbons.
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Identifying Traction in Cattle Bones,unds of the type LaNi5 [2]. Since hydrogen storage alloys functioned by breaking the hydrogen bond and storing atomic hydrogen [3,4], they were logical candidates for study as hydrogenation catalysts. Synthesis of methane was the first reaction studied.
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