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Environmental analysis of a lignocellulosic-based biorefinery producing bioethanol and high-added value chemicals

机译:一家生产生物乙醇和高附加值化学品的木质纤维素生物精炼厂的环境分析

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Lignocellulosic-based biorefineries for co-production of bioethanol and high added-value products are continuously gaining research interest. In this study, life cycle assessment (LCA) was applied to evaluate the environmental impacts of bioethanol and biochemicals co-production from aPhalaris aquaticaL.-based biorefinery located in Greece. This LCA approach assesses the greenhouse gas (GHG) emissions and energy efficiency, considering the lignocellulosic biomass production chain and its conversion steps in the biorefinery for bioethanol and succinic acid production. Three scenarios were developed to determine the environmental characteristics of the biorefinery accounting the plantation characteristics and its biomass yields. Based on the results, the favorable environmental characteristics of the examined biorefinery system were identified. The estimated GHG and energy intensity varied depending on the scenarios studied, thus highlighting regional biomass yields and the impacts of agricultural inputs. Additionally, the energy emissions were found to be the top contributor to the GHG emissions, related to the Greek electricity grid mix. The sensitivity analysis showed that the electricity network can affect the results, hence highlighting the importance of process energy supply. Consequently, it is evident that dedicated perennial herbaceous energy crop appears to be a promising biomass resource towards sustainable biorefineries systems, maximizing GHG emissions reduction.
机译:联合生产生物乙醇和高附加值产品的木质纤维素生物提炼厂不断受到研究兴趣。在这项研究中,使用生命周期评估(LCA)来评估位于希腊的基于Phalaris水生生物精炼厂的生物乙醇和生化产品联产的环境影响。这种LCA方法考虑了木质纤维素生物质生产链及其在生物精炼厂中用于生产生物乙醇和琥珀酸的转化步骤,从而评估了温室气体(GHG)排放和能源效率。开发了三种方案来确定生物炼油厂的环境特征,其中考虑了人工林特征及其生物量产量。根据结果​​,确定了所检查的生物精炼系统的有利环境特征。估计的温室气体和能源强度根据所研究的情景而变化,因此突出了区域生物量产量和农业投入的影响。此外,发现能源排放是与希腊电网结构有关的温室气体排放的最大贡献者。敏感性分析表明,电网会影响结果,因此突出了过程能源供应的重要性。因此,很明显,多年生专用草本能源作物似乎是朝着可持续的生物精炼系统发展的一种有前途的生物质资源,可以最大程度地减少温室气体的排放。

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