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Effects of alloying for steam or dry reforming of methane: a review of recent studies

机译:合金蒸汽或甲烷干燥改革的影响:最近的研究综述

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摘要

Methane is an important chemical resource, not only in natural gas but also in biogas, which can be regarded as a renewable energy resource. Reforming of methane with steam or carbon dioxide, which is important for producing hydrogen and syngas, is conducted at high temperatures using heterogeneous catalysts. To achieve high activity, stability, and low carbon deposition, many studies have been conducted in recent years on the use of alloys as active sites in these catalysts. This review presents a summary of recent studies of alloy catalysts, for which various secondary metals have been added to active metals, such as Ni. Then we summarize the current status of these alloys in terms of their structure, electronic state, and adsorption. The reported effects of alloying include improvement of dispersion and reducibility of the supported metal, change in catalytic performance such as activity and selectivity, and improvement of durability against carbon deposition, sulphur poisoning, and sintering. The directions of future research and development are summarized in terms of sulphur resistance, sintering inhibition, and high activity at low temperatures.
机译:甲烷是重要的化学资源,不仅在天然气中,而且在沼气中也可以被视为可再生能源。使用异质催化剂在高温下进行甲烷或二氧化碳对产生氢和合智的重要性。为了达到高活性,稳定性和低碳沉积,近年来已经对将合金用作这些催化剂中的活性位点进行了许多研究。这篇综述介绍了对合金催化剂的最新研究的摘要,其中已将各种二级金属添加到活性金属(例如Ni)中。然后,我们从这些合金的结构,电子状态和吸附方面总结了这些合金的当前状态。合金的报道作用包括改善分散体和支持金属的可降低性,催化性能的变化,例如活性和选择性,以及提高碳沉积,硫中毒和烧结的耐用性。从硫,烧结的抑制和低温下的高活性来总结未来的研发方向。

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