Alptekin Fikret Muge, Celiktas Melih Soner
Solar Energy Institute, Ege University, 35100 Bornova-Izmir, Turkey.
Robert M. Kerr Food and Agricultural Products Center, Oklahoma State University, Stillwater, Oklahoma 74078, United States.
ACS Omega. 2022 Jul 12;7(29):24918-24941. doi: 10.1021/acsomega.2c01538. eCollection 2022 Jul 26.
Sustainable energy production is a worldwide concern due to the adverse effects and limited availability of fossil fuels, requiring the development of suitable environmentally friendly alternatives. Hydrogen is considered a sustainable future energy source owing to its unique properties as a clean and nontoxic fuel with high energy yield and abundance. Hydrogen can be produced through renewable and nonrenewable sources where the production method and feedstock used are indicators of whether they are carbon-neutral or not. Biomass is one of the renewable hydrogen sources that is also available in large quantities and can be used in different conversion methods to produce fuel, heat, chemicals, etc. Biomass gasification is a promising technology to generate carbon-neutral hydrogen. However, tar production during this process is the biggest obstacle limiting hydrogen production and commercialization of biomass gasification technology. This review focuses on hydrogen production through catalytic biomass gasification. The effect of different catalysts to enhance hydrogen production is reviewed, and social, technological, economic, environmental, and political (STEEP) analysis of catalysts is carried out to demonstrate challenges in the field and the development of catalysts.
由于化石燃料的不利影响和有限供应,可持续能源生产已成为全球关注的问题,这就需要开发合适的环境友好型替代能源。氢气因其作为一种清洁无毒、能量产率高且储量丰富的燃料所具有的独特性质,被视为一种可持续的未来能源。氢气可以通过可再生和不可再生资源来生产,所使用的生产方法和原料是其是否为碳中和的指标。生物质是可再生氢气来源之一,其储量也很丰富,可用于不同的转化方法来生产燃料、热能、化学品等。生物质气化是一种有前景的生产碳中和氢气的技术。然而,在此过程中焦油的产生是限制氢气生产以及生物质气化技术商业化的最大障碍。本综述聚焦于通过催化生物质气化生产氢气。综述了不同催化剂对提高氢气产量的影响,并对催化剂进行了社会、技术、经济、环境和政治(STEEP)分析,以展示该领域的挑战和催化剂的发展情况。