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农业废弃物和湿有机废物共处理可生产低成本碳负性燃料和生物塑料。

Co-Processing Agricultural Residues and Wet Organic Waste Can Produce Lower-Cost Carbon-Negative Fuels and Bioplastics.

机构信息

Energy & Biosciences Institute, University of California, Berkeley, Berkeley, California 94720, United States.

Life-Cycle, Economics, and Agronomy Division, Joint BioEnergy Institute, Emeryville, California 94608, United States.

出版信息

Environ Sci Technol. 2023 Feb 21;57(7):2958-2969. doi: 10.1021/acs.est.2c06674. Epub 2023 Feb 6.

Abstract

Scalable, low-cost biofuel and biochemical production can accelerate progress on the path to a more circular carbon economy and reduced dependence on crude oil. Rather than producing a single fuel product, lignocellulosic biorefineries have the potential to serve as hubs for the production of fuels, production of petrochemical replacements, and treatment of high-moisture organic waste. A detailed techno-economic analysis and life-cycle greenhouse gas assessment are developed to explore the cost and emission impacts of integrated corn stover-to-ethanol biorefineries that incorporate both codigestion of organic wastes and different strategies for utilizing biogas, including onsite energy generation, upgrading to bio-compressed natural gas (bioCNG), conversion to poly(3-hydroxybutyrate) (PHB) bioplastic, and conversion to single-cell protein (SCP). We find that codigesting manure or a combination of manure and food waste alongside process wastewater can reduce the biorefinery's total costs per metric ton of CO equivalent mitigated by half or more. Upgrading biogas to bioCNG is the most cost-effective climate mitigation strategy, while upgrading biogas to PHB or SCP is competitive with combusting biogas onsite.

摘要

可扩展、低成本的生物燃料和生物化学产品的生产可以加速向更加循环的碳经济发展,并减少对原油的依赖。木质纤维素生物精炼厂有可能成为生产燃料、生产石化替代品和处理高湿度有机废物的中心,而不是生产单一的燃料产品。本文开发了详细的技术经济分析和生命周期温室气体评估,以探讨整合玉米秸秆制乙醇生物精炼厂的成本和排放影响,该生物精炼厂结合了有机废物的共消化和利用沼气的不同策略,包括现场能源发电、升级为生物压缩天然气(bioCNG)、转化为聚(3-羟基丁酸酯)(PHB)生物塑料和转化为单细胞蛋白(SCP)。我们发现,与单独处理工艺废水相比,与粪便或粪便和食物垃圾共消化可以将生物精炼厂每吨 CO 当量减排的总成本降低一半或更多。将沼气升级为 bioCNG 是最具成本效益的气候缓解策略,而将沼气升级为 PHB 或 SCP 与现场燃烧沼气具有竞争力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5818/9948286/ca3c35d4009b/es2c06674_0002.jpg

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