利用y -戊内酯进行高效生物质转化

Frank Xiao, Victoria Zhang, Shan Cecilia Cao
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引用次数: 0

摘要

随着人们意识到全球变暖和温室气体效应的影响,人们正试图找到一种新的方式来为世界提供动力,同时又不牺牲我们的健康和地球的健康。随着化石燃料使用的增加,气候变化和其他污染副产品进入臭氧层的风险加大。当森林生长时,它吸收二氧化碳。当然,这只有在社会能够可持续地管理收获和再生过程的情况下才有可能。如果社会能做到这一点,生物质能就可以无限期地持续下去,这使得生物质能成为一种可再生能源,其造成的破坏远远小于当今社会使用的传统燃料。选择y -戊内酯(GVL)作为溶剂。首先,GVL可以回收,这使得它比化石燃料替代品或任何以前使用的溶剂对环境更好。大多数以前的溶剂是有毒的,因此是可怕的,不环保的。因此,GVL为工程师和科学家创造生物燃料和化学物质提供了希望,这些化学物质可以提高生物燃料和生物质的产量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Efficient Biomass Conversion via Y-valerolactone
With people realizing the effects of global warming and the greenhouse gas effect, people are trying to find a new way to power the world without sacrificing our health and the health of the earth. As the use of fossil fuels increases, it greatens the risk of climate change and other by-products of pollution into the ozone layer. When the forest grows, it absorbs the CO2. Of course, this is only plausible if society is able to sustainably manage the process of harvesting and regrowth. If society can do that, biomass can be continued indefinitely, which makes biomass a renewable source of energy capable of causing far less damage than the traditional fuels society uses today. Y-valerolactone (GVL) was chosen as a solvent due to its properties. First off, GVL is able to be recycled which makes it better for the environment than the fossil fuel alternative or any previous solvent used. Most previous solvents were toxic, and therefore terrible and not eco-friendly. Therefore, GVL provides engineers and scientists hope for creating biofuels and chemicals that can enhance the production of biofuels and biomass.
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