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CNT and H2 Production during CH4 Decomposition over Ni/CeZrO2. II. Catalyst Performance and Its Regeneration in a Fluidized Bed

机译:CNT和H2在Ni / Cezro2上的CH4分解过程中产生。 II。催化剂性能及其在流化床中的再生

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摘要

In this work, a ceria-zirconia supported nickel catalyst (Ni/CeZrO2) was for the first time used in a fluidized bed reactor in order to obtain carbon nanotubes (CNTs) and H2 in the reaction of the decomposition of CH4. The same catalyst was afterward regenerated with H2O, which was accompanied with the production of H2. The impact of catalyst granulation, temperature, and gas hourly space velocity (GHSV) on the amount and type of carbon deposits was determined using thermogravimetric analysis (TGA) and scanning and transmission electron microscopy (SEM and TEM). The presence of randomly oriented and curved CNTs with an outer diameter of up to 64 nm was proved. The Ni/CeZrO2 particles were loosely covered with CNTs, freely dispersed over CNTs, and strongly attached to the external CNT walls. TEM proved the presence of a Ni/CeZrO2@CNT hybrid material that can be further used as catalyst, e.g., in WGS or DRM reactions. The impact of GHSV on hydrogen production during catalyst regeneration was determined. The catalyst was subjected to cyclic tests of CH4 decomposition and regeneration. According to the obtained results, Ni/CeZrO2 can be used in CH4 conversion to CNTs and H2 (instead of CH4 combustion), e.g., in the vicinity of installations that require methane utilization.
机译:在这项工作中,氧化铈 - 氧化锆支持的镍催化剂(Ni / Cezro2)首次用于流化床反应器中,以便在CH 4分解的反应中获得碳纳米管(CNT)和H2。随后与H 2 O再生的相同的催化剂,伴随着产H 2的产生。使用热量分析(TGA)和扫描和透射电子显微镜(SEM和TEM)测定催化剂造粒,温度和气体小时空速(GHSV)对碳沉积物量和型碳沉积物的影响。证明了具有高达64nm外径的随机取向和弯曲的CNT的存在。 Ni / Cezro2颗粒松散地用CNT覆盖,可自由分散在CNT上,并强烈地连接到外部CNT壁。 TEM证明了Ni / Cezro2 @ CNT杂化材料的存在,其可进一步用作催化剂,例如WGS或DRM反应。测定了GHSV对催化剂再生过程中氢生产的影响。催化剂对CH 4分解和再生的环状试验进行循环试验。根据所得结果,Ni / Cezro2可用于CH 4转化为CNT和H 2(代替CH 4燃烧),例如,在需要甲烷利用的装置附近。

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