Environmental Systems Analysis, Department of Energy and Environment, Chalmers University of Technology, SE-412 96 Göteborg, Sweden.
Environmental Systems Analysis, Department of Energy and Environment, Chalmers University of Technology, SE-412 96 Göteborg, Sweden.
Bioresour Technol. 2014 Dec;173:148-158. doi: 10.1016/j.biortech.2014.09.044. Epub 2014 Sep 28.
Biofuel production processes at high gravity are currently under development. Most of these processes however use sugars or first generation feedstocks as substrate. This paper presents the results of a life cycle assessment (LCA) of the production of bio-ethanol at high gravity conditions from a second generation feedstock, namely, wheat straw. The LCA used lab results of a set of 36 process configurations in which dry matter content, enzyme preparation and loading, and process strategy were varied. The LCA results show that higher dry matter content leads to a higher environmental impact of the ethanol production, but this can be compensated by reducing the impact of enzyme production and use, and by polyethylene glycol addition at high dry matter content. The results also show that the renewable and non-renewable energy use resulting from the different process configurations ultimately determine their environmental impact.
目前,高浓度生物燃料生产工艺正在开发中。然而,这些工艺大多使用糖或第一代原料作为基质。本文介绍了利用第二代原料——小麦秸秆,在高浓度条件下生产生物乙醇的生命周期评估(LCA)的结果。LCA 采用了一组 36 种工艺配置的实验室结果,其中改变了干物质含量、酶制剂和负荷以及工艺策略。LCA 结果表明,较高的干物质含量会导致乙醇生产的环境影响更高,但这可以通过减少酶生产和使用的影响以及在高干物质含量下添加聚乙二醇来补偿。结果还表明,不同工艺配置所产生的可再生和不可再生能源的使用最终决定了它们的环境影响。