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通过溶剂热液化甜高粱渣糖化残渣生产可持续的生物多元醇:实验、经济和环境方法。

Sustainable biopolyol production via solvothermal liquefaction silvergrass saccharification residue: Experimental, economic, and environmental approach.

机构信息

Department of Chemical Engineering (BK21 FOUR Integrated Engineering Program), Kyung Hee University, Gyeonggi-do 17104, Republic of Korea.

School of Energy and Chemical Engineering, Ulsan National Institute of Science and Technology, 50 UNIST-gil, Eonyang-eup, Ulju-gun, Ulsan 44919, Republic of Korea; Department of Chemical and Environmental Engineering, Yale University, New Haven, CT 06511, United States.

出版信息

Sci Total Environ. 2022 Nov 15;847:157668. doi: 10.1016/j.scitotenv.2022.157668. Epub 2022 Jul 27.

Abstract

With the rising environmental concern, sustainable chemistry should be accomplished by considering technical, economic, and environmental factors that guarantee the successful implementation of new alternative products. Hence, we performed the integrated techno-economic and life cycle assessment for two-step solvothermal liquefaction (two-pot synthesis) and simplified solvothermal liquefaction (one-pot synthesis) based on experiment results. Based on the itemized cost estimation, the unit biopolyol production costs obtained from the two-pot synthesis and one-pot synthesis were 10.0 $ kg and 2.89 $ kg, respectively. To provide techno-economic guidelines for biopolyol production, profitability analysis, and uncertainty analysis were used to identify the economic feasibility of the proposed processes. In addition, the life cycle assessment results indicated that biopolyol production via the two-pot synthesis leads to a slightly lower greenhouse gas emission compared with the one-pot synthesis, which further required the use of an analytic hierarchy process to determine the best process for biopolyol production depending on the different weight points in the economic and environmental aspects. From these results, we can provide the technical performance, economic feasibility, and environmental impact of lab-scale biopolyol production from silvergrass residue, a low-cost waste of biomass saccharification.

摘要

随着环境问题的日益严重,可持续化学应该通过考虑技术、经济和环境因素来实现,这些因素保证了新替代产品的成功实施。因此,我们根据实验结果对两步溶剂热液化(两釜合成)和简化溶剂热液化(一锅合成)进行了综合技术经济和生命周期评估。基于分项成本估算,两釜合成和一锅合成得到的单位生物多元醇生产成本分别为 10.0 美元/千克和 2.89 美元/千克。为了为生物多元醇生产提供技术经济指导方针,使用盈利能力分析和不确定性分析来确定所提出工艺的经济可行性。此外,生命周期评估结果表明,与一锅合成相比,通过两釜合成生产生物多元醇导致温室气体排放略低,这进一步需要使用层次分析法来确定根据经济和环境方面的不同权重点生产生物多元醇的最佳工艺。根据这些结果,我们可以提供从廉价生物质糖化残渣生产银草生物多元醇的实验室规模的技术性能、经济可行性和环境影响。

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