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An Integrated Assessment by Models for Energy Systems Analysis and Life-Cycle Assessment with a Case Study of Advanced Fossil-Fired Power Plants in China

机译:能源系统分析和生命周期评估的模型综合评估-以中国先进化石电厂为例

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摘要

We developed an integrated assessment (IA) using models for energy systems analysis and life-cycle assessment (LCA). Based on this assessment framework, we developed cost-benefit analysis (CBA) case studies for a hypothetical project designed to introduce advanced fossil-fired power generation technologies in China. Our MARKAL model for Japan confirmed that radical reductions (i.e., 80 % by 2050) of carbon dioxide (CO2) could be attained from energy systems alone and that credit for emission allowances was required. We evaluated life-cycle costs and emissions of carbon dioxide, sulfur oxide, and nitrogen oxide gases for the energy technologies using an LCA model. Further, we applied a power generation planning model for six Chinese grids to provide a power mix structure, potentially producing credit by installing fossil-fired power generation technology and by using baseline grid emission factors with an average cost of electricity. Finally, by using dynamic emission reductions and additional costs from the two models, we conducted case studies of CBA for a hypothetical project to install the technologies in China. This was accomplished by evaluating emission reductions in monetary terms and by applying a life-cycle impact assessment model. A unique feature of our IA is its dynamic (time-varying) assessment of costs and benefits.
机译:我们使用能源系统分析和生命周期评估(LCA)模型开发了综合评估(IA)。在此评估框架的基础上,我们针对一个假设项目开发了成本效益分析(CBA)案例研究,旨在在中国引入先进的化石燃料发电技术。我们在日本的MARKAL模型证实,仅通过能源系统就可以实现二氧化碳(CO2)的根本减少(即到2050年减少80%),并且需要考虑排放配额。我们使用LCA模型评估了能源技术的生命周期成本以及二氧化碳,氧化硫和氮氧化物气体的排放。此外,我们为六个中国电网应用了发电计划模型,以提供一种电力结构,通过安装化石燃料发电技术以及使用具有平均电力成本的基准电网排放因子来潜在地产生信用。最后,通过使用动态减排量和这两种模型的额外成本,我们对一个假设的项目进行了CBA案例研究,以在中国安装该技术。这可以通过以货币形式评估减排量并应用生命周期影响评估模型来实现。我们的IA的一个独特功能是对成本和收益进行动态(随时间变化)评估。

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