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Life cycle assessment of different bioenergy production systems including perennial and annual crops

机译:包括多年生和一年生作物在内的不同生物能源生产系统的生命周期评估

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摘要

Energy crops are expected to greatly develop in a very short-term bringing to significant social and environmental benefits. Nevertheless, a significant number of studies report from very positive to negative environmental implications from growing and processing energy crops, thus great uncertainty still remains on this argument. The present study focused on the cradle-to-grave impact assessments of alternative scenarios including annual and perennial energy crops for electricity/heat or first and second generation transport fuels, giving special emphasis to agricultural practices which are frequently surprisingly neglected in Life Cycle Assessment studies despite a not secondary relevance on final outcomes. The results show that cradle-to-farm gate impacts, i.e. including the upstream processes, may account for up to 95% of total impacts, with dominant effects on marine water ecotoxicity. Therefore, by increasing the sustainability of crop management through minimizing agronomic inputs, or with a complementary use of crop resides, can be expected to significantly improve the overall sustainability of bioenergy chains, as well as the competitiveness against fossil counterparts. Once again, perennial crops resulted in substantially higher environmental benefits than annual crops. It is shown that significant amount of emitted CO_2 can be avoided through converting arable lands into perennial grasslands. Besides, due to lack of certain data, soil carbon storage was not included in the calculations, while N_2O emission was considered as omitted variable bias (1% of N-fertilization). Therefore, especially for perennial grasses, CO_2 savings were reasonably higher that those estimated in the present study. For first generation biodiesel, sunflower showed a lower energy-based impacts than rapeseed, while wheat should be preferred over maize for first generation bioethanol given its lower land-based impacts. For second generation biofuels and thermo-chemical energy, switchgrass provided the highest environmental benefits. With regard to bioenergy systems, first generation biodiesel was less impacting than first generation bioethanol; bioelectricity was less impacting than first generation biofuels and second generation bioethanol by thermo-chemical hydrolysis, but highly impacting than Biomass-to-Liquid biodiesel and second generation bioethanol through enzymatic hydrolysis.
机译:预计能源作物将在很短的时间内取得长足发展,带来巨大的社会和环境效益。但是,大量研究报告说,种植和加工能源作物对环境产生了非常积极的影响,而负面影响则很大,因此,这一论点仍然存在很大的不确定性。本研究的重点是替代情景的从摇篮到坟墓的影响评估,包括用于电力/热力或第一代和第二代运输燃料的年度和多年生能源作物,特别强调了在生命周期评估研究中经常被意外忽略的农业实践尽管与最终结果无关。结果表明,从摇篮到农场的闸门影响(包括上游过程)可能占总影响的95%,主要影响海水生态毒性。因此,通过最大限度地减少农艺投入或与农作物的补充利用来提高作物管理的可持续性,有望显着改善生物能源链的总体可持续性以及与化石同行的竞争力。与多年生作物相比,多年生作物再次带来了更高的环境效益。结果表明,通过将耕地转变为多年生草地,可以避免大量的CO_2排放。此外,由于缺乏某些数据,计算中未包括土壤碳储量,而N_2O排放被认为是省略的可变偏差(占氮肥的1%)。因此,特别是对于多年生禾草,CO_2的节省要比本研究中估计的合理地更高。对于第一代生物柴油,向日葵对能源的影响要比油菜籽低,而对于第一代生物乙醇,由于其对土地的影响较小,因此与小麦相比,向日葵应更优选小麦。对于第二代生物燃料和热化学能,柳枝provided具有最大的环境效益。关于生物能源系统,第一代生物柴油的影响要小于第一代生物乙醇。通过热化学水解,生物电的影响不如第一代生物燃料和第二代生物乙醇,但通过酶水解的影响远不如生物质液化生物柴油和第二代生物乙醇。

著录项

  • 来源
    《Biomass & bioenergy》 |2011年第12期|p.4868-4878|共11页
  • 作者

    Simone Fazio; Andrea Monti;

  • 作者单位

    Department o/Agroenuironmental Science and Technology, University of Bologna, Viale Fanin 44, Boiogna, Italy;

    Department o/Agroenuironmental Science and Technology, University of Bologna, Viale Fanin 44, Boiogna, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    LCA; biofuels; energy crops; environmental impact; bioenergy;

    机译:LCA;生物燃料能源作物;对环境造成的影响;生物能源;

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