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Biorefining in the prevailing energy and materials crisis: a review of sustainable pathways for biorefinery value chains and sustainability assessment methodologies

机译:生物炼制当前的能源和材料危机:审查生物炼制价值链的可持续发展途径和可持续性评估方法

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摘要

The aim of the current paper is to discuss the sustainability aspect of biorefinery systems with focus on biomass supply chains, processing of biomass feedstocks in biorefinery platforms and sustainability assessment methodologies. From the stand point of sustainability, it is important to optimize the agricultural production system and minimize the related environmental impacts at the farming system level. These impacts are primarily related to agri-chemical inputs and the related undesired environmental emissions and to the repercussions from biomass production. At the same time, the biorefineries need a year-round supply of biomass and about 40–60% of the total operating cost of a typical biorefinery is related to the feedstocks chosen, and thus highlights on the careful prioritization of feedstocks mainly based on their economic and environmental loadings. Regarding the processing in biorefinery platforms, chemical composition of biomasses is important. Biomasses with higher concentrations of cellulose and hemicelluloses compared to lignin are preferred for bioethanol production in the lignocellulosic biorefinery, since the biodegradability of cellulose is higher than lignin. A green biorefinery platform enables the extraction of protein from grasses, producing an important alternative to importing protein sources for food products and animal feed, while also allowing processing of residues to deliver bioethanol. Currently, there are several approaches to integrate biorefinery platforms, which are aimed to enhance their economic and environmental sustainability. Regarding sustainability assessment, the complexities related to the material flows in a biorefinery and the delivery of alternative biobased products means dealing with multiple indicators in the decision-making process to enable comparisons of alternatives. Life Cycle Assessment is regarded as one of the most relevant tools to assess the environmental hotspots in the biomass supply chains, at processing stages and also to support in the prioritization of any specific biobased products and the alternatives delivered from biorefineries.
机译:本文的目的是讨论生物炼制系统的可持续性方面,重点是生物质供应链,生物炼制平台中生物质原料的加工以及可持续性评估方法。从可持续性的角度出发,重要的是优化农业生产系统,并在农业系统级别上最小化相关的环境影响。这些影响主要与农业化学投入以及相关的不良环境排放以及生物质生产的影响有关。同时,生物炼油厂需要全年供应生物质,典型生物炼油厂的总运营成本的40%至60%与所选择的原料有关,因此,主要根据原料的优先级来仔细选择原料经济和环境负荷。关于在生物精炼平台中的加工,生物质的化学组成很重要。与木质素相比,具有更高浓度的纤维素和半纤维素的生物质优选用于木质纤维素生物精炼厂中的生物乙醇生产,因为纤维素的生物降解性高于木质素。一个绿色的生物精炼平台能够从草中提取蛋白质,为进口食品和动物饲料的蛋白质来源提供了重要的替代方法,同时还允许加工残留物以输送生物乙醇。当前,有几种方法可以整合生物精炼平台,以增强其经济和环境可持续性。关于可持续性评估,与生物精炼厂物质流和替代性生物基产品的交付有关的复杂性意味着在决策过程中要处理多个指标,以进行替代性比较。生命周期评估被认为是评估生物量供应链中的环境热点,加工阶段以及支持特定生物基产品和生物精炼厂提供的替代品的优先级排序的最相关工具之一。

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