National Engineering Research Center of Chemical Fertilizer Catalyst (NERC-CFC), School of Chemical Engineering, Fuzhou University, Gongye Road 523, Fuzhou 350002, Fujian, PR China.
Department of Applied Chemistry, School of Engineering, Tohoku University, 6-6-07, Aoba, Aramaki, Aoba-ku, Sendai 980-8579, Japan.
Bioresour Technol. 2015 Feb;178:53-64. doi: 10.1016/j.biortech.2014.10.010. Epub 2014 Oct 13.
Biomass gasification is one of the most important technologies for the conversion of biomass to electricity, fuels, and chemicals. The main obstacle preventing the commercial application of this technology is the presence of tar in the product gas. Catalytic reforming of tar appears a promising approach to remove tar and supported metal catalysts are among the most effective catalysts. Nevertheless, improvement of catalytic performances including activity, stability, resistance to coke deposition and aggregation of metal particles, as well as catalyst regenerability is greatly needed. This review focuses on the design and catalysis of supported metal catalysts for the removal of tar in the gasification of biomass. The recent development of metal catalysts including Rh, Ni, Co, and their alloys for steam reforming of biomass tar and tar model compounds is introduced. The role of metal species, support materials, promoters, and their interfaces is described.
生物质气化是将生物质转化为电能、燃料和化学品的最重要技术之一。阻止该技术商业化应用的主要障碍是产物气中存在焦油。焦油的催化重整似乎是一种有前途的去除焦油的方法,而负载型金属催化剂是最有效的催化剂之一。然而,仍然非常需要提高催化剂的性能,包括活性、稳定性、抗积碳性和金属颗粒的聚集性,以及催化剂的可再生性。本文综述了用于生物质气化中焦油去除的负载型金属催化剂的设计和催化。介绍了包括 Rh、Ni、Co 及其合金在内的金属催化剂在生物质焦油和焦油模型化合物的水蒸气重整方面的最新进展。描述了金属物种、载体材料、促进剂及其界面的作用。