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A Comparative Review on the Environmental Impacts of Combustion-Based Electricity Generation Technologies

机译:基于燃烧的电力发电技术对环境影响的比较综述

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摘要

This review provides an overview of the environmental impacts of combustion-based electricity generation technologies from six different energy sources, hard coal, brown coal, natural gas, diesel, landfill gas, and wood biomass, using the compiled information from life cycle assessment (LCA) studies. Hard coal has the highest global warming and ecotoxicity impacts, while brown coal and diesel both have high impacts in three out of 10 impact categories. Energy recovery from landfills gas exhibits a great potential to reduce the adverse impacts of landfills without the energy recovery although the level of reduction depends on the energy recovery technologies. The reduction potential of wood biomass-based electricity shows the variability affected by the efficiency of electricity generation and transport distance of the biomass. The application of carbon capture and storage (CCS) technologies to current power generation systems demonstrates great reduction potential, particularly in global warming impact with the extent of reduction varying with the applied CCS technologies. This study points out the necessity for standardization of the LCA method for a better comparison of impact assessment results for different fuel sources. An integrated method of LCA with a geographic information system (GIS) is suggested to understand the spatial variability of the impacts of power stations and to investigate the synergetic impacts that could be induced by the close geographical proximity of power stations.
机译:本综述概述了燃烧的电力发电技术对六种不同的能源,硬煤,棕色煤,天然气,柴油,垃圾填埋气和木材生物量的环境影响,使用生命周期评估的编译信息(LCA ) 学习。硬煤具有最高的全球变暖和生态毒性影响,而棕色煤和柴油均在10个冲击类别中的三个中有3个。垃圾填埋气体的能量回收虽然减少水平取决于能量回收技术的水平取决于能量回收技术的水平,但垃圾填埋气体的能量展示了巨大的潜力,以降低垃圾填埋场的不利影响。木材生物质电力的降低潜力显示了受生物质发电效率影响的可变性。碳捕获和储存(CCS)技术对当前发电系统的应用表明了很大的降低潜力,特别是在全球变暖影响,随着应用的CCS技术而变化的减少程度。本研究指出了LCA方法标准化的必要性,以便更好地比较不同燃料来源的影响评估结果。建议使用地理信息系统(GIS)的LCA集成方法,以了解电站影响的空间变化,并调查通过发电站的密切地理附近可以引起的协同影响。

著录项

  • 来源
    《Energy & fuels》 |2020年第9期|10486-10502|共17页
  • 作者单位

    Macquarie Univ Dept Earth & Environm Sci Fac Sci & Engn Sydney NSW Australia;

    Macquarie Univ Dept Earth & Environm Sci Fac Sci & Engn Sydney NSW Australia;

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

  • 入库时间 2022-08-18 22:24:59

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