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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >A geographical assessment of vegetation carbon stocks and greenhouse gas emissions on potential microalgae-based biofuel facilities in the United States
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A geographical assessment of vegetation carbon stocks and greenhouse gas emissions on potential microalgae-based biofuel facilities in the United States

机译:对美国潜在的基于微藻类生物燃料设施的植被碳储量和温室气体排放量的地理评估

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摘要

The microalgae biofuels life cycle assessments (LCA) present in the literature have excluded the effects of direct land use change (DLUC) from facility construction under the assumption that DLUC effects are negligible. This study seeks to model the greenhouse gas (GHG) emissions of microalgae biofuels including DLUC by quantifying the CO2 equivalence of carbon released to the atmosphere through the construction of microalgae facilities. The locations and types of biomass and Soil Organic Carbon that are disturbed through microalgae cultivation facility construction are quantified using geographical models of microalgae productivity potential including consideration of land availability. The results of this study demonstrate that previous LCA of microalgae to biofuel processes have overestimated GHG benefits of microalgae-based biofuels production by failing to include the effect of DLUC. Previous estimations of microalgae biofuel production potential have correspondingly overestimated the volume of biofuels that can be produced in compliance with U.S. environmental goals. (C) 2016 Elsevier Ltd. All rights reserved.
机译:文献中提出的微藻生物燃料生命周期评估(LCA)在假设DLUC效应可忽略的前提下,已将直接土地利用变化(DLUC)的效应从设施建设中排除了。这项研究旨在通过建立微藻设施来量化释放到大气中的碳的二氧化碳当量,从而对包括DLUC在内的微藻生物燃料的温室气体(GHG)排放进行建模。利用微藻生产力潜力的地理模型(包括考虑土地可利用性),对因微藻种植设施建设而受到干扰的生物量和土壤有机碳的位置和类型进行了量化。这项研究的结果表明,以前的藻类生物燃料的LCA未能包括DLUC的作用,因此高估了基于藻类生物燃料生产的温室气体效益。先前对微藻生物燃料生产潜力的估计相应地高估了可以符合美国环境目标生产的生物燃料的量。 (C)2016 Elsevier Ltd.保留所有权利。

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