甲烷部分氧化制合成气:钙钛矿催化剂和膜反应器的研究进展

A. H. Elbadawi, L. Ge, Zhiheng Li, Shaomin Liu, Shaobin Wang, Zhonghua Zhu
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引用次数: 58

摘要

甲烷部分氧化(POM)为制氢和费托工艺等下游工艺生产合成气提供了一个很有前途的选择。固定床反应器的POM需要氧气分离装置,运行成本高,存在安全风险。相反,膜反应器可以通过整合氧分离和催化反应过程来提供改进的过程。混合离子-电子导电膜(MIEC)具有高纯度和在催化反应条件下能有效地从空气中分离氧气等优点,在过去的二十年里受到了科学研究领域的广泛关注。本文首先对固定床反应器中不同催化剂的POM进行了综述,重点介绍了钙钛矿基催化剂,然后介绍了MIEC膜反应器的材料筛选,并将其与常规催化剂和钙钛矿催化剂的选择联系起来。分析了催化活性、反应机理和新出现的挑战。强调了膜/催化剂的电子性质、氧通量下的连续还原氧化、化学反应机理等对膜/催化剂的影响,并展望了未来的研究方向。
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Catalytic partial oxidation of methane to syngas: review of perovskite catalysts and membrane reactors
ABSTRACT Partial oxidation of methane (POM) offers a promising option to produce syngas for downstream processes such as hydrogen production and Fischer-Tropsch processes. POM in fixed-bed reactors requires an oxygen separation plant with high operation cost and safety risks. On the contrary, membrane reactors can provide an improved process by integrating both oxygen separation and catalytic reaction processes. With many advantages including high purity and efficient oxygen separation from the air at the catalytic reaction conditions, mixed ionic-electronic conducting membranes (MIEC) caught great attention in the scientific research field over the past two decades. In this review, POM using different catalysts in fixed-bed reactors was firstly summarized with emphasizing on perovskite-based catalysts, and then the material screening of MIEC membrane reactors was introduced and linked to the selection of conventional and perovskite catalysts. The catalytic activity, reaction mechanisms, and emerging challenges have been analyzed. Furthermore, future research directions have been outlined by highlighting the effect of electronic properties, continuous reduction-oxidation in the presence of oxygen flux, and chemical reaction mechanism on membrane/catalyst.
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