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Influence of the presence of ruthenium on the activity and stability of Co-Mg-Al-based catalysts in CO2 reforming of methane for syngas production

机译:钌对合成气生产二氧化碳重整CO2重新加工催化剂活性及稳定性的影响

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摘要

Hydrogen production by methane dry reforming is an important yet challenging process. A performing catalyst will favor the thermodynamic equilibrium while ensuring good hydrogen selectivity. We hereby report the synthesis of Co (x) Mg6-x Al-2 (with x = 2 and 6) mixed oxide catalysts synthesized via hydrotalcite precursors and the synthesis of a ruthenium-based catalyst on a cobalt, magnesium, and aluminum mixed oxide supports Ru/Co (x) Mg6-x Al-2 (with x = 2 and 6). The impregnation of ruthenium on the hydrotalcites was performed in two ways: by impregnation on the dried hydrotalcite and by memory effect on hydrotalcite calcined at 500 A degrees C. The deposition of ruthenium by memory effect of the magnesium and cobalt support allows the generation of both metallic and basic sites which provides an active and stable catalyst for the dry reforming reaction of methane.
机译:通过甲烷干重改造的氢气产生是一个重要但具有挑战性的过程。 表演催化剂将有利于热力学平衡,同时确保良好的氢气选择性。 在此报告通过水滑石前体合成的CO(X)Mg6-X Al-2(用X = 2和6)的合成和在钴,镁和铝混合氧化铝上合成钌基催化剂合成的混合氧化物催化剂 支持Ru / Co(x)mg6-x al-2(x = 2和6)。 以两种方式进行钌对水滑石上的甲钌:通过在500℃下煅烧干燥的水滑石和对水滑石的记忆作用。通过镁和钴的记忆效应沉积钌允许产生两者 金属和碱性位点,为甲烷的干重反应提供活性且稳定的催化剂。

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