生物能源
温室气体
碳中和
生物量(生态学)
环境科学
生物燃料
可再生能源
化石燃料
具有碳捕获和储存功能的生物能源
生命周期评估
生物炭
固碳
碳纤维
环境工程
废物管理
减缓气候变化
生产(经济)
农学
工程类
生态学
二氧化碳
材料科学
热解
经济
电气工程
宏观经济学
生物
复合数
复合材料
作者
Jiaoyue Wang,Jingying Fu,Zhitong Zhao,Longfei Bing,Fengming Xi,Feng Wang,Dong Jiang,Shiyun Wang,Gang Lin,Yan Yin,Qinqin Hu
出处
期刊:The Innovation
[Elsevier BV]
日期:2023-04-13
卷期号:4 (3): 100423-100423
被引量:47
标识
DOI:10.1016/j.xinn.2023.100423
摘要
To reduce greenhouse gas (GHG) emissions, biomass has been increasingly developed as a renewable and clean alternative to fossil fuels because of its carbon-neutral characteristics. China has been investigating the rational development and use of bioenergy for developing its clean energy and achieving carbon neutrality. Substituting fossil fuels with multi-source and multi-approach utilized bioenergy and corresponding carbon reduction in China remain largely unexplored. Here, a comprehensive bioenergy accounting model with a multi-dimensional analysis was developed by combining spatial, life cycle, and multi-path analyses. Accordingly, the bioenergy production potential and GHG emission reduction for each distinct type of biomass feedstock through different conversion pathways were estimated. The sum of all available organic waste (21.55 EJ yr-1) and energy plants on marginal land (11.77 EJ yr-1) in China produced 23.30 EJ of bioenergy and reduced 2,535.32 Mt CO2-eq emissions, accounting for 19.48% and 25.61% of China's total energy production and carbon emissions in 2020, respectively. When focusing on the carbon emission mitigation potential of substituting bioenergy for conventional counterparts, bioelectricity was the most effective, and its potential was 4.45 and 8.58 times higher than that of gaseous and liquid fuel alternatives, respectively. In this study, life cycle emission reductions were maximized by a mix of bioenergy end uses based on biomass properties, with an optimal 78.56% bioenergy allocation from biodiesel, densified solid biofuel, biohydrogen, and biochar. The main regional bioenergy GHG mitigation focused on the Jiangsu, Sichuan, Guangxi, Henan, and Guangdong provinces, contributing to 31.32% of the total GHG mitigation potential. This study provides valuable guidance on exploiting untapped biomass resources in China to secure carbon neutrality by 2060.
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