碳足迹
雨水收集
环境科学
生命周期评估
碳纤维
固碳
用水
减缓气候变化
环境工程
温室气体
碳信用
土壤碳
废物管理
环境保护
土壤水分
工程类
生产(经济)
二氧化碳
农学
生态学
材料科学
生物
复合数
土壤科学
经济
复合材料
宏观经济学
作者
Yijun Peng,Yafei Wang,Hanxi Chen,Lu Wang,Biao Luo,Hongxiang Tong,Yi Zou,Zongxiong Lei,Shaoqing Chen
标识
DOI:10.1016/j.jclepro.2023.139806
摘要
With emphasis on constructing low-carbon cities, the renovation of old communities highlights the importance of renewing rainwater management facilities. Rain garden is an exceptional Nature-based Solution for rainwater management. When applying them to renovate old communities, the carbon footprint should be considered. This study focused on renovating facilities in the Greater Bay Area and utilized the Energy Expert platform to calculate rain garden carbon footprint with the Life Cycle Assessment. The carbon reduction benefits during the operation were estimated. This study accounting the life cycle carbon footprint of the 5455 m2 rain garden was 1117.42 tCO2e. The carbon footprint contribution, from highest to lowest was the end-of-life phase, materials production phase, construction phase, use and maintenance phase. Regarding carbon emission inventory, waste soil landfill, fertilizer acquisition, and waste soil recycling ranked high. Transportation also accounted for a remarkable carbon emission. The rain garden showed great potential for climate change mitigation, with a total and net carbon reduction of 1927.41 and 809.99 tCO2e, respectively. To reduce the carbon footprint of the rain garden, we should focus on waste soil treatment and transportation. Recommendations included increasing waste soil recycling, in situ recycling and green transportation.
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