环境科学
温室气体
生物炭
碳足迹
生命周期评估
废物管理
碳纤维
化石燃料
环境工程
环境保护
热解
生产(经济)
工程类
材料科学
宏观经济学
复合材料
经济
复合数
生物
生态学
作者
Kai Zhou,Yongze Li,Yazhou Tang,Yang Yu-chen,Ganpei Tian,Bo Liu,Bo Bian,Chao He
标识
DOI:10.1038/s44264-024-00019-z
摘要
Abstract Organic waste treatment is a major driver of global carbon emissions, thus its low-carbon utilization is essential yet unclear. Through a life cycle assessment of organic waste data from 34 provincial-level regions in China, we have determined that the synergistic and integrated utilization scheme (URIRP) with organic fertilizer and biochar as the primary products can reduce the annual life cycle carbon emissions from 6.9 Mt CO 2 e to 2.83 Mt CO 2 e. This reduction can offset 6% of the carbon emissions from the electricity industry mainly through carbon sequestration by application of biochar-based fertilizer, and fossil fuel displacement by bio-energy. Moreover, URIRP can promote the recycling of N and P, reduce annual emission of air pollutants by 866 Mt, and increase topsoil organic matter content by 0.25‰ and economic efficiency by 135%. These findings indicate that URIRP could realize sustainable management of UROSW with significant environmental and economic benefits, and contribute to the realization of China’s carbon neutrality goal.
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