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Comparison of different crop residue-based technologies for their energy production and air pollutant emission

机译:基于种类残留的技术对其能源生产和空气污染物排放的比较

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摘要

Crop residue (CR) based-technology has several benefits, including renewable energy production and improvement in the environment and waste biomass management. However, the quantitative assessment of different CR based-technologies in terms of these benefits is limited. In this study, three typical CR-based technologies, CR biochar (CR-BC), CR direct-fired power (CR-DFP), and CR briquette biofuel (CR-BB), were assessed in terms of energy- and environment-related performances using a mixed-unit input-output life cycle assessment method. The results indicated that CR-BB performed better in energy production and air pollution mitigation than the other two technologies. Energy conversion efficiency was suggested as a key factor in determining the potentials of bioenergy production and environmental improvement. Furthermore, based on the energy demand from the Chinese agricultural sector and CR supply in 2012. the energy supply capacity (ESI) of CR-BC, CR-DFP, and CR-BB was estimated to be 24.3,2.89, and 53.0, respectively, and their total greenhouse gas (GHG) reduction potential (TR_(GHG)) was estimated to be 1.41 × 10~6,4.81 × 10~6, and 1.68 × 10~6t CO_(2e) (CO_2 equivalent), respectively. Overall, the CR-DFP and CR-BC are recommended for the high-value utilization of CR resources. The findings of this study could provide a basis for the development of CR-based technologies and CR management policy.
机译:基于农作物残留物(CR)技术有几个好处,包括可再生能源生产和环境的改善和废物生物量管理。然而,在这些益处方面的不同CR技术的定量评估是有限的。在本研究中,在能量和环境方面评估了三种典型的基于CR的技术,CR直接电力(CR-BC),CR直接射击电源(CR-DFP)和CR地块生物燃料(CR-BB)相关性能使用混合单元输入 - 输出生命周期评估方法。结果表明,CR-BB在能源生产和空气污染缓解方面表现优于其他两种技术。能源转换效率被建议作为确定生物能源生产和环境改善潜力的关键因素。此外,根据中国农业部门和2012年CR供应的能源需求。CR-BC,CR-DFP和CR-BB的能源供应能力(ESI)分别为24.3,2.89和53.0 ,它们的总温室气体(GHG)降低电位(TR_(GHG))估计为1.41×10〜6,4.81×10〜6,分别为1.68×10〜6t CO_(2E)(CO_2等效)。总的来说,建议CR-DFP和CR-BC用于CR资源的高价值利用。本研究的调查结果可以为发展基于CR的技术和CR管理政策提供基础。

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  • 来源
    《The Science of the Total Environment》 |2020年第10期|136122.1-136122.10|共10页
  • 作者单位

    Stockbridge School of Agriculture University of Massachusetts Amherst MA 01003 United States;

    Institute of Coastal Environmental Pollution Control Key Laboratory of Marine Environment and Ecology Ministry of Education Ocean University of China Qingdao 266100 China Laboratory for Marine Ecology and Environmental Science Qingdao National Laboratory for Marine Science and Technology Qingdao 266237 China;

    Stockbridge School of Agriculture University of Massachusetts Amherst MA 01003 United States College of Environmental Science and Engineering Qingdao University Qingdao 266071 China;

    Stockbridge School of Agriculture University of Massachusetts Amherst MA 01003 United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bioenergy; Biochar; Briquettes biofuel; Direct-fired power; Mixed-unit input-output life cycle assessment; Energy production;

    机译:生物能量;生物炭;煤气生物燃料;直射力;混合单元输入 - 输出生命周期评估;能源生产;

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