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Sorption enhanced steam methane reforming based on nickel and calcium looping: a review

机译:基于镍和钙循环的吸附增强蒸汽甲烷重整:综述

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This review is focused on Sorption Enhanced Steam Methane Reforming (SESMR), an emerging process intensification of traditional Steam Methane Reforming (SMR), to produce H-2 by a more environmental friendly exploitation of natural gas, thanks to in-situ CO2 capture. Ni and CaO are respectively the most investigated materials for SMR catalysis and CO2 capture, used either on separated particles or in Combined Sorbent Catalyst Materials (CSCM); the latter is potentially more advantageous from the process point of view. Preferential conditions for SESMR based on Ni and CaO are about 650 degrees C and 1 atm, allowing to obtain H-2 with high purity (more than 95 vol% vs. 76 vol% in industrial SMR, both on dry dilution-free basis). For a continuous process, multicycle CaO regeneration is needed, by means of high temperature calcination (800-950 degrees C). The exploitation of Solid Oxides Fuel Cells (SOFC) flue hot gases, as well as oxy-fuel combustion, are suggested as regeneration strategies in studies concerning SESMR industrial scale-up, in combinations of packed beds or fluidised bed reactors with solid recirculation. Future studies should investigate materials stability in relevant industrial conditions, e.g. more severe regenerations under highly concentrated CO2 at high temperatures, or in presence of steam.
机译:本综述专注于吸附增强蒸汽甲烷重整(SESMR),这是一种新兴过程强化传统蒸汽甲烷重整(SMR),通过进一步的二氧化碳捕获,通过更环保的自然气体生产H-2来生产H-2。 Ni和CaO分别是SMR催化和CO2捕获的最多研究的材料,用于分离的颗粒或组合的吸附剂催化剂材料(CSCM);从过程的角度来看,后者可能更有利。基于Ni和CaO的SESMR的优先条件为约650℃和1atm,允许在无稀释的基础上获得高纯度的H-2(超过95体积%,在工业SMR中,均在干稀释的基础上) 。对于连续过程,需要通过高温煅烧(800-950℃)来进行多运行CAO再生。实体氧化物燃料电池(SOFC)烟道热气体以及氧燃料燃烧的利用被提出为SESMR工业扩展的研究中的再生策略,其中包含固体再循环的包装床或流化床反应器的组合。未来的研究应调查相关工业条件中的材料稳定性,例如,在高温下或在蒸汽存在下,在高浓度的CO 2下更严重的再生。

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