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2D representation of life cycle greenhouse gas emission and life cycle cost of energy conversion for various energy resources

机译:各种能源的生命周期温室气体排放的二维表示和能源转换的生命周期成本

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摘要

We suggest a 2D-plot representation combined with life cycle greenhouse gas (GHG) emissions and life cycle cost for various energy conversion technologies. In general, life cycle assessment (LCA) not only analyzes at the use phase of a specific technology, but also covers widely related processes of before and after its use. We use life cycle GHG emissions and life cycle cost (LCC) to compare the energy conversion process for eight resources such as coal, natural gas, nuclear power, hydro power, geothermal power, wind power, solar thermal power, and solar photovoltaic (PV) power based on the reported LCA and LCC data. Among the eight sources, solar PV and nuclear power exhibit the highest and the lowest LCCs, respectively. On the other hand, coal and wind power locate the highest and the lowest life cycle GHG emissions. In addition, we used the 2D plot to show the life cycle performance of GHG emissions and LCCs simultaneously and realized a correlation that life cycle GHG emission is largely inversely proportional to the corresponding LCCs. It means that an expensive energy source with high LCC tends to have low life cycle GHG emissions, or is environmental friendly. For future study, we will measure the technological maturity of the energy sources to determine the direction of the specific technology development based on the 2D plot of LCCs versus life cycle GHG emissions.
机译:我们建议将二维图表表示形式与各种能源转换技术的生命周期温室气体(GHG)排放量和生命周期成本相结合。通常,生命周期评估(LCA)不仅在特定技术的使用阶段进行分析,而且还涵盖了其使用前后的广泛相关过程。我们使用生命周期的温室气体排放量和生命周期成本(LCC)来比较八种资源(例如煤炭,天然气,核能,水能,地热能,风力,太阳能热能和太阳能光伏)的能量转换过程)功率基于报告的LCA和LCC数据。在这八个来源中,太阳能光伏发电和核电分别表现出最高的和最低的低成本国家。另一方面,煤炭和风能是生命周期中温室气体排放量最高和最低的地方。此外,我们使用2D图同时显示了温室气体排放和LCC的生命周期性能,并实现了相关性,即生命周期GHG排放与相应的LCC很大程度上成反比。这意味着具有高LCC的昂贵能源往往会降低生命周期内的GHG排放,或者对环境友好。在以后的研究中,我们将测量能源的技术成熟度,基于LCC与生命周期GHG排放的二维图来确定特定技术的发展方向。

著录项

  • 来源
    《Korean Journal of Chemical Engineering》 |2013年第10期|1882-1888|共7页
  • 作者单位

    Department of Energy Science Sungkyunkwan University">(1);

    Department of Energy Science Sungkyunkwan University">(1);

    Faculty of Engineering Universidad de Talca">(2);

    Department of Energy Science Sungkyunkwan University">(1);

  • 收录信息 美国《科学引文索引》(SCI);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 00:01:28

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