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用于甲烷水蒸氣重整的鎳基催化劑的失活和再生(英文)

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時(shí)間:2024-08-18 17:27:37
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用于甲烷水蒸氣重整的鎳基催化劑的失活和再生(英文)【摘要】:The deactivation of nickel catalysts used in Arak and Razi p

【摘要】:The deactivation of nickel catalysts used in Arak and Razi petrochemical complexes followed by catalyst regeneration was evalu-ated. The characterization of the different structures was made by powder X-ray diffraction(XRD),scanning electron microscopy(SEM),energy dispersive X-ray spectroscopy(EDS),transmission electron microscopy(TEM),and carbon sulfur analyzer. The Ni particle size was estimated from XRD patterns and TEM graphs. The agglomeration of nickel particle and the poison by sulfur components were recognized as the main reasons in deactivation of Arak and Razi catalysts,respectively. The activity of the used catalysts before and after regeneration was measured on methane steam reforming at a CH4:H2O ratio of 1:3 at 850 oC. The regeneration processes for Arak and Razi samples were performed with CO2 as an oxidative atmosphere and steam as a regenerating agent,respectively. The results show that,(1) no residual sulfur components were on the regenerated Razi catalyst surface without changing the structure of the catalyst and the regenerated catalyst has gained 80% of its catalytic activity,and that(2) the nickel particle size of regenerated Arak specimen decreased remarkably as measured by Debye-Scherrer equation from XRD patterns. TEM images were in agreement with the XRD results and indicated a decrease in nickel particle size of regenerated catalyst. Additionally,in both regenerated catalysts all the coke on the surface of the support was eliminated after regeneration. 【作者單位】: School
【關(guān)鍵詞】nickel catalyst;steam reforming;deactivation;sintering;sulfur poisoning;regeneration
【分類號(hào)】:O643.32
【正文快照】: Hydrogen or mixtures of hydrogen, carbon monoxide, and carbon dioxide (synthesis gas) are used extensively in a wide range of industrial processes [1]. Hydrogen is pre- dicted to become a major source of energy in the future. It is an important raw mater

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