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美国和巴西生物乙醇的水、能源和碳足迹。

Water, Energy, and Carbon Footprints of Bioethanol from the U.S. and Brazil.

机构信息

Robert B. Daugherty Water for Food Global Institute , University of Nebraska , Lincoln , Nebraska 68583 , United States.

Department of Biosystems Engineering, College of Agriculture "Luiz de Queiroz" (ESALQ) , University of São Paulo , São Paulo 13418-900 , Brazil.

出版信息

Environ Sci Technol. 2018 Dec 18;52(24):14508-14518. doi: 10.1021/acs.est.8b03359. Epub 2018 Nov 28.

DOI:10.1021/acs.est.8b03359
PMID:30428259
Abstract

Driven by biofuel policies, which aim to reduce greenhouse gas (GHG) emissions and increase domestic energy supply, global production and consumption of bioethanol have doubled between 2007 and 2016, with rapid growth in corn-based bioethanol in the U.S. and sugar cane-based bioethanol in Brazil. Advances in crop yields, energy use efficiency in fertilizer production, biomass-to-ethanol conversion rates, and energy efficiency in ethanol production have improved the energy balance and GHG emission reduction potential of bioethanol. In the current study, the water, energy, and carbon footprints of bioethanol from corn in the U.S. and sugar cane in Brazil were assessed. The results show that U.S. corn bioethanol has a smaller water footprint (541 L water/L bioethanol) than Brazilian sugar cane bioethanol (1115 L water/L bioethanol). Brazilian sugar cane bioethanol has, however, a better energy balance (17.7 MJ/L bioethanol) and smaller carbon footprint (38.5 g COe/MJ) than U.S. bioethanol, which has an energy balance of 11.2 MJ/L bioethanol and carbon footprint of 44.9 g COe/MJ. The results show regional differences in the three footprints and highlight the need to take these differences into consideration to understand the implications of biofuel production for local water resources, net energy production, and climate change mitigation.

摘要

受旨在减少温室气体 (GHG) 排放和增加国内能源供应的生物燃料政策的推动,全球生物乙醇的生产和消费在 2007 年至 2016 年间翻了一番,美国的玉米基生物乙醇和巴西的甘蔗基生物乙醇增长迅速。在作物产量、肥料生产能源利用效率、生物质到乙醇的转化率以及乙醇生产能源效率方面的进步提高了生物乙醇的能源平衡和减少温室气体排放的潜力。在当前的研究中,评估了来自美国玉米和巴西甘蔗的生物乙醇的水、能源和碳足迹。结果表明,美国玉米生物乙醇的水足迹(541 升水/升生物乙醇)小于巴西甘蔗生物乙醇(1115 升水/升生物乙醇)。然而,巴西甘蔗生物乙醇的能源平衡(17.7 MJ/L 生物乙醇)和碳足迹(38.5 g COe/MJ)优于美国生物乙醇,美国生物乙醇的能源平衡为 11.2 MJ/L 生物乙醇,碳足迹为 44.9 g COe/MJ。结果表明,这三个足迹在区域上存在差异,并强调需要考虑这些差异,以了解生物燃料生产对当地水资源、净能源生产和气候变化缓解的影响。

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