超量积累植物
环境修复
植物修复
环境科学
镉
土壤污染
环境质量
土壤质量
间作
中国
环境污染
污染
质量(理念)
农业工程
环境工程
污染
环境保护
农学
工程类
土壤水分
地理
生态学
生物
化学
土壤科学
哲学
认识论
有机化学
考古
作者
Jun Yang,Ruqing Hu,Chen Zhao,Lingqing Wang,Mei Lei,Guanghui Guo,Huading Shi,Xiaoyong Liao,Tongbin Chen
标识
DOI:10.1016/j.jhazmat.2022.130560
摘要
Considering the soil cadmium pollution problem, the Chinese government proposed to estimate the costs and practicality "to completely improve the soil quality by the middle of this century". This study analyzed the challenges in achieving this goal using biophysical data from 10 typical demonstration soil phytoextraction projects. The current annual phytoextraction efficiency was determined as 14.8-490 g ha-1 a-1 at 319 RMB g-1 cadmium. A total of 798 billion RMB and 5 years were required for remediation of cadmium contamination, which was 22 times the investment in soil remediation during 2016-2022. The break-even point of phytoextraction projects was 29 years. The heavy financial burden was considered the primary challenge in improving the environmental quality of such soil. The cost could be reduced by 5.5-35.3 % through optimization measures such as resourcefulness of hyperaccumulator harvests, large-scale breeding, and mechanized management. The break-even point could be shortened to 6-15 years by intercropping/rotating crops, contributing to the goal. Active exploration of phytoextraction efficiency-more efficient accumulators, optimized agronomic measures-is worth practicing.
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