首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Supercritical solvothermal synthesis under reducing conditions to increase stability and durability of Mo/ZSM-5 catalysts in methane dehydroaromatization
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Supercritical solvothermal synthesis under reducing conditions to increase stability and durability of Mo/ZSM-5 catalysts in methane dehydroaromatization

机译:降低条件下的超临界溶剂热量,以提高Mo / ZSM-5催化剂的甲烷脱氢催化剂的稳定性和耐久性

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摘要

Natural gas is currently envisioned as a potential energy and hydrocarbon feedstock in the forthcoming years. To overcome the detrimental flaring of this natural gas and the partial release of its major component, methane, novel and more effective strategies are required. These include the development of new, efficient and seemingly stable catalysts able to rapidly convert methane into valuable feedstocks. We show a novel synthesis method of Mo/ZSM-5 based on a solvothermal synthesis under supercritical conditions and reducing atmosphere (SC-STS-E) to improve metal dispersion and enhance catalyst stability and durability during the methane dehydroaromatization (MDA) reaction. In contrast to the conventional impregnation method, SC-STS-E provides a super-high atom-like metal dispersion at the zeolite pores resulting in the most stable Mo/ZSM-5 catalyst for MDA with the highest long-term hydrocarbon yield (x(CH4) = 11.6% and y(C2)(+) = 8.9%, after 15 h on stream) among the catalysts reported in literature for this reaction.
机译:天然气目前设想作为即将到来的年份作为潜在的能量和碳氢化合物原料。为了克服这种天然气的不利燃烧,需要其主要成分的部分释放,需要甲烷,新颖和更有效的策略。这些包括开发能够快速将甲烷迅速转化为有价值的原料的新型,高效且看似稳定的催化剂。我们基于超临界条件下的溶剂热合成和减少气氛(SC-STS-e)来表现出Mo / ZSM-5的新型合成方法,以改善金属分散体,提高甲烷脱氢致反应期间的催化剂稳定性和耐久性。与常规浸渍方法相比,SC-STS-E在沸石孔中提供了一种超高的原子样金属分散体,导致MDA最稳定的MO / ZSM-5催化剂,具有最高的长期烃产率(x (CH 4)= 11.6%,Y(C2)(+)= 8.9%,在该反应中文文献中报告的催化剂中。

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