中国生物质燃料联合燃烧热电联产机组的多范围脱碳和环境影响评估

IF 10.1 1区 工程技术 Q1 ENERGY & FUELS Applied Energy Pub Date : 2024-06-28 DOI:10.1016/j.apenergy.2024.123793
Ying Wang , Yuxin Yan , Qingyang Lin , Hanxiao Liu , Xiang Luo , Chenghang Zheng , Tao Wu , Xiang Gao
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引用次数: 0

摘要

在热电联产(CHP)机组中将废弃生物质作为低碳燃料进行联合燃烧是一项不可或缺的能源供应技术,可提供区域电力和热能,尤其是在工业园区,可应对气候变化并支持中国可持续发展目标(SDGs)的实现。在本研究中,我们提出了一个利用污泥和生物质颗粒联合燃烧将废物转化为能源的热电联产机组的生命周期物质-能源-碳综合温室气体核算框架,包括供应链和价值链。该框架可根据生物质燃料的特性,预测与联合燃烧相关的多范围温室气体排放和环境影响。它有助于根据脱碳或减少环境影响的目标选择合适的生物质燃料。如果仅考虑二氧化碳排放量,使用污泥联合燃烧似乎是一个有益的选择,因为可以从废物处置中获得经济收益。然而,这也会导致温室气体排放量的增加,除非考虑到原始处置所避免的排放量,因此需要扩大温室气体排放的监管框架,承认非 CO 温室气体排放。此外,共同燃烧生物质燃料的做法在增强脱碳效果与共同燃烧比例增加时可能产生的更大环境影响之间呈现出复杂的相互作用,突出了增强脱碳效果与环境挑战之间的权衡。利用这一框架,我们的研究通过在各省部署污泥或生物质联合燃烧的热电联产机组,对全国的脱碳潜力进行了评估,结果表明,生物质颗粒联合燃烧可实现更大幅度的温室气体减排。
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Multi-scope decarbonization and environmental impacts evaluation for biomass fuels co-firing CHP units in China

Co-firing of waste biomass as low-carbon fuels in combined heat and power (CHP) units is an indispensable energy supply technology providing regional electricity and heat, especially in industrial parks, that can combat climate change and support the achievement of Sustainable Development Goals (SDGs) in China. In this study, we proposed a life cycle material-energy-carbon integrated GHG accounting framework for CHP units converting waste to energy with co-firing of sludge and biomass pellets, including supply and value chains. This framework enables the prediction of multi-scope GHG emissions and environmental impacts associated with co-firing based on the properties of biomass fuels. It facilitates the selection of suitable biomass fuels according to decarbonization or reduced environmental impact objectives. When considering CO2 emissions alone, co-firing with sludge appears to be a beneficial option due to the economic gains from waste disposal. However, this also leads to increased GHG emissions unless avoided emissions from original disposal are considered, thus highlighting the need to expand the regulatory framework pertaining to GHG emissions that recognizes non-CO2 GHG emissions. Additionally, the practice of co-firing biomass fuels presents a complex interplay between enhanced decarbonization effects but potentially more significant environmental impacts when the co-firing ratio increases, highlighting the trade-offs between enhanced decarbonization and environmental challenges. Leveraging this framework, our study evaluated the national decarbonization potential through the deployment of CHP units with sludge or biomass co-firing across various provinces, indicating that biomass pellets co-firing could lead to more substantial GHG emission reduction.

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来源期刊
Applied Energy
Applied Energy 工程技术-工程:化工
CiteScore
21.20
自引率
10.70%
发文量
1830
审稿时长
41 days
期刊介绍: Applied Energy serves as a platform for sharing innovations, research, development, and demonstrations in energy conversion, conservation, and sustainable energy systems. The journal covers topics such as optimal energy resource use, environmental pollutant mitigation, and energy process analysis. It welcomes original papers, review articles, technical notes, and letters to the editor. Authors are encouraged to submit manuscripts that bridge the gap between research, development, and implementation. The journal addresses a wide spectrum of topics, including fossil and renewable energy technologies, energy economics, and environmental impacts. Applied Energy also explores modeling and forecasting, conservation strategies, and the social and economic implications of energy policies, including climate change mitigation. It is complemented by the open-access journal Advances in Applied Energy.
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