合成气
煤油
废物管理
太阳能
工艺工程
环境科学
燃烧
工程类
化学
电气工程
有机化学
氢
作者
Stefan Zoller,Erik Koepf,Dustin Nizamian,Marco Stephan,Adriano Patané,Philipp Haueter,Manuel Romero,José González‐Aguilar,Dick Lieftink,Ellart de Wit,Stefan Brendelberger,A. Sizmann,Aldo Steinfeld
出处
期刊:Joule
[Elsevier BV]
日期:2022-07-01
卷期号:6 (7): 1606-1616
被引量:198
标识
DOI:10.1016/j.joule.2022.06.012
摘要
Developing solar technologies for producing carbon-neutral aviation fuels has become a global energy challenge, but their readiness level has largely been limited to laboratory-scale studies. Here, we report on the experimental demonstration of a fully integrated thermochemical production chain from H 2 O and CO 2 to kerosene using concentrated solar energy in a solar tower configuration. The co-splitting of H 2 O and CO 2 was performed via a ceria-based thermochemical redox cycle to produce a tailored mixture of H 2 and CO (syngas) with full selectivity, which was further processed to kerosene. The 50-kW solar reactor consisted of a cavity-receiver containing a reticulated porous structure directly exposed to a mean solar flux concentration of 2,500 suns. A solar-to-syngas energy conversion efficiency of 4.1% was achieved without applying heat recovery. This solar tower fuel plant was operated with a setup relevant to industrial implementation, setting a technological milestone toward the production of sustainable aviation fuels.
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