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可再生合成燃料研究进展 被引量:5

Progress on renewable synthetic fuels
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摘要 能源是支撑人类文明和发展的源泉,自古以来人类社会的每一次重要进步都伴随着能源利用效率的不断提升.然而,化石燃料的过度开采和利用不仅造成了能源危机,而且还导致了温室气体、颗粒物等污染物过量排放所引发的严重环境问题.如何获得可再生的洁净燃料是人类社会可持续发展面临的重要挑战.19世纪中叶,人类已经开展了制备可再生合成燃料方面的探索,发现利用厌氧微生物可以转化生物质制取富含甲烷的燃气.历经160余年的发展,已经形成了多条直接或间接的可再生合成燃料制备途径.本文围绕可再生燃料的电化学合成、光催化转化、热化学转化、微生物转化四种主要合成路线,综述了利用可再生能源转化二氧化碳制备甲烷、醇醚燃料、烷烃柴油、航空燃油等合成燃料的发展历程、重要进展及挑战,为未来的燃料可持续供给提供新思路. Since ancient times,energy has powered the development and transformation of human society.Every great progress of mankind has been accompanied by the improvement of energy utilization efficiency.In 2018,global energy consumption has reached 13.9 billion tons of crude oil equivalent,of which the proportion of fossil fuels is as high as 84.7%.Excessive exploitation of fossil fuels has led to energy shortage.On the other hand,utilization of fossil fuels has caused massive emission of pollutants such as carbon dioxide,SOx,NOxand heavy metals,which have raised serious environmental issues such as global warming,air pollution and seawater acidification.It is an urgent challenge to secure clean alternative fuel sources to ensure sustainable development of human society.In June 2019,the China Association for Science and Technology(CAST)released twenty crucial scientific and engineering problems which are keys to technological and industrial innovation,among which renewable synthetic fuels production is considered as one of crucial problems.It states"use of renewable energy sources such as solar,wind and biomass to convert carbon dioxide to synthetic fuel molecules suitable for efficient and clean combustion,achieving the molecular conversion CO2+H2 O→CxHyand producing synthetic fuels such as methane,alcohol-ether fuels,alkane diesel,and aviation fuels".There are a number of options for converting renewable energy sources to a variety of synthetic fuels;however,the optimal pathway for such a process has not yet to be defined.Synthetic fuels may be derived from direct routes such as electrochemical synthesis and photocatalysis with direct catalytic reduction of carbon dioxide.Alternatively,synthetic fuels can be sourced from indirect routes via biomass accumulation and conversion process.It is well known that photosynthesis,which is a multi-step process combing light and dark reactions catalyzed by enzymes and usually takes place in land-based plants and aquatic algae,offers a green route for carbon dioxide fixation whilst producing oxygen and accumulating organic materials such as glucose polymers in term of biomass.Biomass can be converted to synthetic fuels either via biological fermentation by microbes and enzymes under an ambient temperature and pressure within a few hours to days,or via thermal conversion with or without catalysts under a high temperature within a few seconds to minutes.In the middle of the 19th century,exploring renewable synthetic fuels was established by human beings via anaerobic digestion of biomass to produce biogas(methane-rich gaseous fuel).After over 160 years of development,various routes were proposed to produce multiple types of renewable synthetic fuels.This paper reviews the developments in synthetic fuels production from renewable energy sources,with the main focus on photocatalysis,electrochemical synthesis,thermochemical conversion and microbial conversion pathways.The progress and challenges of use of renewable energy for converting carbon dioxide to various synthetic gaseous and liquid fuels,such as methane,alcohol-ether fuels,alkane diesel,and aviation fuels,are summarized and discussed.The future trends and research directions are also highlighted.This paper may offer some ideas and guidelines for clean and sustainable energy supply in the future.
作者 夏奡 陈蓉 付乾 朱贤青 朱恂 廖强 Ao Xia;Rong Chen;Qian Fu;Xianqing Zhu;Xun Zhu;Qiang Liao(Key Laboratory of Low-grade Energy Utilization Technologies and Systems,Ministry of Education,Chongqing University,Chongqing 400030,China;Institute of Engineering Thermophysics,School of Energy and Power Engineering,Chongqing University,Chongqing 400030,China)
出处 《科学通报》 EI CAS CSCD 北大核心 2020年第18期1814-1823,共10页 Chinese Science Bulletin
基金 国家自然科学基金(51836001)资助。
关键词 可再生能源 燃料 光催化 电化学合成 热化学转化 微生物转化 renewable energy fuel photocatalysis electrochemical synthesis thermochemical conversion microbial conversion
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