首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Thermal decomposition of bulk K-CoMoS_x mixed alcohol catalyst precursors and effects on catalyst morphology and performance
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Thermal decomposition of bulk K-CoMoS_x mixed alcohol catalyst precursors and effects on catalyst morphology and performance

机译:本体K-CoMoS_x混合醇催化剂前体的热分解及其对催化剂形态和性能的影响

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摘要

Cobalt molybdenum sulfide-type mixed alcohol catalysts were synthesized via calcination of precipitated bulk sulfides and studied with temperature programmed decomposition analysis. Precursors containing aqueous potassium were also considered. Precipitates thermally decomposed in unique events which released ammonia, carbon dioxide, and sulfur. Higher temperature treatments led to more crystalline and less active catalysts in general with ethanol productivity falling from 203 to 97 g (kg cat)~(-1) h~(-1) when the calcination temperature was increased from 375 to 500 °C. The addition of potassium to the precursor led to materials with crystalline potassium sulfides and good catalytic performance. In general, less potassium was required to promote alcohol selectivity when added before calcination. At calcination temperatures above 350 °C, segregated cobalt sulfides were observed, suggesting that thermally decomposed sulfide precursors may contain a mixture of molybdenum and cobalt sulfides instead of a dispersed Co-Mo-S type of material. When dimethyl disulfide was fed to the precursor during calcination, crystalline cobalt sulfides were not detected, suggesting an important role of free sulfur during decomposition.
机译:通过煅烧沉淀的本体硫化物合成了钴钼硫化物型混合醇催化剂,并进行了程序升温分解分析。还考虑了含钾水溶液的前体。沉淀物在独特的事件中发生热分解,释放出氨,二氧化碳和硫。当煅烧温度从375°C升高到500°C时,较高的温度处理通常会导致更多的结晶和较少活性的催化剂,乙醇生产率从203降至97 g(kg cat)〜(-1)h〜(-1)。将钾添加到前体中导致材料具有结晶硫化钾和良好的催化性能。通常,在煅烧之前添加时,需要较少的钾来促进醇的选择性。在高于350°C的煅烧温度下,观察到偏析的硫化钴,这表明热分解的硫化物前体可能包含钼和钴的混合物,而不是分散的Co-Mo-S型材料。当在煅烧过程中将二甲基二硫醚加到前体中时,未检测到结晶的硫化钴,这表明游离硫在分解过程中起着重要的作用。

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