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从谷氨酸生产的生物基化学品与石油化工等价物的环境比较。

Environmental comparison of biobased chemicals from glutamic acid with their petrochemical equivalents.

机构信息

Valorisation of Plant Production Chains, Wageningen University , Bornse Weilanden 9, 6708 WG Wageningen, The Netherlands.

出版信息

Environ Sci Technol. 2011 Oct 1;45(19):8521-8. doi: 10.1021/es201869e. Epub 2011 Sep 9.

Abstract

Glutamic acid is an important constituent of waste streams from biofuels production. It is an interesting starting material for the synthesis of biobased chemicals, thereby decreasing the dependency on fossil fuels. The objective of this paper was to compare the environmental impact of four biobased chemicals from glutamic acid with their petrochemical equivalents, that is, N-methylpyrrolidone (NMP), N-vinylpyrrolidone (NVP), acrylonitrile (ACN), and succinonitrile (SCN). A consequential life cycle assessment was performed, wherein glutamic acid was obtained from sugar beet vinasse. The removed glutamic acid was substituted with cane molasses and ureum. The comparison between the four biobased and petrochemical products showed that for NMP and NVP the biobased version had less impact on the environment, while for ACN and SCN the petrochemical version had less impact on the environment. For the latter two an optimized scenario was computed, which showed that the process for SCN can be improved to a level at which it can compete with the petrochemical process. For biobased ACN large improvements are required to make it competitive with its petrochemical equivalent. The results of this LCA and the research preceding it also show that glutamic acid can be a building block for a variety of molecules that are currently produced from petrochemical resources. Currently, most methods to produce biobased products are biotechnological processes based on sugar, but this paper demonstrates that the use of amino acids from low-value byproducts can certainly be a method as well.

摘要

谷氨酸是生物燃料生产废物流的重要组成部分。它是合成生物基化学品的有趣起始材料,从而减少对化石燃料的依赖。本文的目的是比较四种源自谷氨酸的生物基化学品与它们的石油化工等价物(即 N-甲基吡咯烷酮(NMP)、N-乙烯基吡咯烷酮(NVP)、丙烯腈(ACN)和丁二腈(SCN))的环境影响。进行了一项基于后果的生命周期评估,其中从糖甜菜废酒糟中获得谷氨酸。去除的谷氨酸被甘蔗糖蜜和尿素替代。四种生物基和石油化工产品的比较表明,对于 NMP 和 NVP,生物基版本对环境的影响较小,而对于 ACN 和 SCN,石油化工版本对环境的影响较小。对于后两者,计算了一个优化方案,结果表明,SCN 的工艺可以改进到与石油化工工艺竞争的水平。对于生物基 ACN,需要进行重大改进才能使其具有竞争力与石油化工等价物。这项 LCA 的结果以及之前的研究还表明,谷氨酸可以作为当前由石油化工资源生产的各种分子的构建块。目前,大多数生产生物基产品的方法都是基于糖的生物技术工艺,但本文表明,使用来自低价值副产物的氨基酸肯定也是一种方法。

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