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首页> 外文期刊>Renewable & Sustainable Energy Reviews >Hydrogen donor solvents in liquefaction of biomass: A review
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Hydrogen donor solvents in liquefaction of biomass: A review

机译:氢供体溶剂在生物质液化中的应用

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The environmental impact of global warming, caused by greenhouse gases has also fuelled the needs to utilise biomass, as its energy utilisation creates less environmental pollution and fewer health risks than fossil fuel combustion. Liquefaction of biomass using hydrogen donor solvents is a promising route to obtain clean biofuel using various solvents at moderate to high temperature (250-460 degrees C) and pressure (150-320 bar). Solvents such as sub-and supercritical water, alcohol, decalin, glycerol and tetralin can be used as potential hydrogen donor to enhance liquid oil yield with a reduced of oxygen content. Supercritical water with its excellent transport properties as well as hydrogen donor capability leads to hydrothermal decomposition of biomass and enhancing various compounds depending upon operating parameters. The selection of alcohol as a solvent related to the action of hydrogen donor and to its alkylating ability. The hydrogen donor solvents provide an alternative to hydrogen gas as a reducing gas. The advantage of using hydrogen donor solvent is to stabilise the free radical in the biomass liquefaction and yielding a higher product conversion. Compared with non-hydrogen donor solvents, hydrogen donor solvents such as tetralin and decalin show significant improvement not only in conversion and product distribution to liquid but also on the quality of bio-oil (oxygen content) due to the improvement of hydrogenation and hydrocracking reactions with inhibition of polycondensation. The advantage of hydrogen donor solvents over the molecular hydrogen due to a lower strength bonding of C-H as compared to H-H bond. A review on performances of water, alcohols and other hydrogen donor solvents in liquefaction of biomass has been made. The yield of hydrogen donated in the reaction has also been reported.
机译:温室气体引起的全球变暖对环境的影响也推动了生物质利用的需求,因为其能源利用比化石燃料燃烧产生的环境污染更少,健康风险也更低。使用氢供体溶剂使生物质液化是在中等至高温(250-460摄氏度)和压力(150-320巴)下使用各种溶剂获得清洁生物燃料的有前途的途径。诸如亚临界水和超临界水,醇,十氢化萘,甘油和四氢萘之类的溶剂可用作潜在的氢供体,可通过降低氧含量来提高液体油的产率。超临界水具有出色的传输性能以及氢供体能力,可导致生物质进行水热分解并根据运行参数增强各种化合物。醇作为溶剂的选择与氢供体的作用及其烷基化能力有关。氢供体溶剂提供了氢气作为还原气体的替代方法。使用氢供体溶剂的优点是使生物质液化中的自由基稳定并产生更高的产物转化率。与非氢供体溶剂相比,四氢萘和十氢化萘等氢供体溶剂由于氢化和加氢裂化反应的改善,不仅在转化率和产品向液体的分布方面显着改善,而且在生物油的质量(含氧量)方面也显示出显着改善抑制缩聚。氢供体溶剂相对于分子氢的优势是由于C-H的强度比H-H键低。综述了水,醇和其他氢供体溶剂在生物质液化中的性能。也已经报道了在反应中捐赠的氢的产率。

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