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Long-Term Prospects for the Environmental Profile of Advanced Sugar Cane Ethanol

机译:先进甘蔗乙醇环境概况的长期前景

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摘要

This work assessed the environmental impacts of the production and use of 1 MJ of hydrous ethanol (E100) in Brazil in prospective scenarios (2020-2030), considering the deployment of technologies currently under development and better agricultural practices. The life cycle assessment technique was employed using the CML method for the life cycle impact assessment and the Monte Carlo method for the uncertainty analysis. Abiotic depletion, global warming, human toxicity, ecotoxicity, photochemical oxidation, acidification, and eutrophication were the environmental impacts categories analyzed. Results indicate that the proposed improvements (especially no-til farming-scenarios s2 and s4) would lead to environmental benefits in prospective scenarios compared to the current ethanol production (scenario s0). Combined first and second generation ethanol production (scenarios s3 and s4) would require less agricultural land but would not perform better than the projected first generation emanol, although the uncertainties are relatively high. The best use of 1 ha of sugar cane was also assessed, considering the displacement of the conventional products by ethanol and electricity. No-til practices combined with the production of first generation ethanol and. electricity (scenario s2) would lead to the largest mitigation effects for global warming and abiotic depletion. For the remaining categories, emissions would not be mitigated with the utilization of the sugar cane products. However, this conclusion is sensitive to the displaced electricity sources.
机译:考虑到目前正在开发的技术的部署和更好的农业实践,这项工作评估了在未来情景中(2020-2030年)在巴西生产和使用1 MJ含水乙醇(E100)的环境影响。生命周期评估技术采用CML方法进行生命周期影响评估,采用蒙特卡洛方法进行不确定性分析。非生物耗竭,全球变暖,人类毒性,生态毒性,光化学氧化,酸化和富营养化是分析的环境影响类别。结果表明,与当前的乙醇生产(情景s0)相比,拟议的改进措施(特别是无提篮种植情景s2和s4)将在预期情景中带来环境效益。尽管不确定性相对较高,但第一代和第二代乙醇的联合生产(方案s3和s4)将需要更少的农业用地,但性能不会比预计的第一代乙醇高。考虑到乙醇和电力替代了传统产品,还评估了1公顷甘蔗的最佳使用情况。免耕法实践与生产第一代乙醇和。电力(方案s2)将对全球变暖和非生物耗竭产生最大的缓解作用。对于其余类别,利用甘蔗产品的利用将无法减少排放。但是,该结论对位移的电源很敏感。

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  • 来源
    《Environmental Science & Technology》 |2014年第20期|12394-12402|共9页
  • 作者单位

    Faculdade de Engenharia Mecanica, Unicamp. Rua Mendeleyev 200, Cidade Universitaria 'Zeferino Vaz', Campinas, SP, Brazil, 13083-860,Brazilian Bioethanol Science and Technology Laboratory (CTBE) - CNPEM - Rua Giuseppe Maximo Scolfaro 10.000, Polo Ⅱ de Alta Tecnologia, P.O. Box 6170, Campinas, SP, Brazil, 13083-970,Institute of Environmental Sciences (CML), Leiden University, P.O. Box 9518, 2300 RA Leiden, The Netherlands;

    Brazilian Bioethanol Science and Technology Laboratory (CTBE) - CNPEM - Rua Giuseppe Maximo Scolfaro 10.000, Polo Ⅱ de Alta Tecnologia, P.O. Box 6170, Campinas, SP, Brazil, 13083-970;

    Brazilian Bioethanol Science and Technology Laboratory (CTBE) - CNPEM - Rua Giuseppe Maximo Scolfaro 10.000, Polo Ⅱ de Alta Tecnologia, P.O. Box 6170, Campinas, SP, Brazil, 13083-970;

    Institute of Environmental Sciences (CML), Leiden University, P.O. Box 9518, 2300 RA Leiden, The Netherlands;

    Institute of Environmental Sciences (CML), Leiden University, P.O. Box 9518, 2300 RA Leiden, The Netherlands;

    Faculdade de Engenharia Mecanica, Unicamp. Rua Mendeleyev 200, Cidade Universitaria 'Zeferino Vaz', Campinas, SP, Brazil, 13083-860,Brazilian Bioethanol Science and Technology Laboratory (CTBE) - CNPEM - Rua Giuseppe Maximo Scolfaro 10.000, Polo Ⅱ de Alta Tecnologia, P.O. Box 6170, Campinas, SP, Brazil, 13083-970;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 14:01:11

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