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Operando sulfur speciation during sulfur poisoning-regeneration of Ru/SiO2 and Ru/Al2O3 using non-resonant sulfur K alpha(1,2) emission

机译:使用非共振硫Kα(1,2)排放硫磺中毒 - Ru / SiO2和Ru / Al2O3硫中毒再生过程中的操作寿硫类

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摘要

A periodic oxidative regeneration of a sulfur-poisoned methanation catalyst is an alternative to the expensive state-of-the-art process of syngas cleaning using wet scrubbers. Here we have employed operando X-ray emission spectroscopy (XES) to study sulfur speciation on Ru/SiO2 and Ru/Al2O3 during methanation in the presence of H2S and subsequent regeneration in dilute O-2 at 360 degrees C. XES allowed us to obtain semi-quantitative sulfur speciation and to monitor changes in the absolute sulfur concentration. It was established that Al2O3, in contrast to SiO2, forms sulfite/sulfate species by reacting with SO2, which is released from the poisoned Ru surface upon oxidative treatment. The concentration of sulfite/sulfate species is reduced upon switching the feed to H-2/CO while no simultaneous increase in sulfide concentration is observed. For both catalysts, the regenerative treatment removes adsorbed sulfur as SO2 only partially, which we propose is the main reason for the incomplete activity recovery of the poisoned catalyst after regeneration.
机译:硫中毒甲烷化催化剂的周期性氧化再生是备选合成气使用湿式洗涤器清洁的昂贵状态的最先进的过程。在这里,我们已经采用operando X射线发射光谱(XES),以在Ru /二氧化硅和Ru / Al2O3的研究硫形态中H 2 S的存在和随后的再生稀甲烷化过程中O-2在360℃下XES允许我们获得半定量硫形态,并在绝对硫浓度监视器变化。它建立氧化铝,相对于二氧化硅,亚硫酸盐形式/硫酸盐通过与SO 2,这是从在氧化处理的中毒茹表面释放反应物质。亚硫酸盐/硫酸盐物质的浓度时,而在硫化物浓度没有同时提高观察切换进料H-2 / CO被降低。对于这两种催化剂,再生处理去除了吸附硫作为二氧化硫仅部分地,这是我们提出对于再生后的催化剂中毒的不完全活性回收率的主要原因。

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