尾矿
植物修复
环境科学
环境修复
生物量(生态学)
根际
营养物
农学
生态学
生物
土壤水分
化学
土壤科学
污染
遗传学
物理化学
细菌
作者
Liumeng Chen,Shasha Chen,Tao Xing,Yun Long,Zhi Wang,Xiaoying Kong,An Xu,Qiangjian Wu,Yongmin Sun
标识
DOI:10.1016/j.envpol.2023.122790
摘要
The cultivation of energy plants (Pennisetum hybrid) with anaerobic fermentation residues has become an important phytoremediation approach in ionic rare earth elements (REEs) tailings because of its advantages in low cost and sustainability recently. In this study, a comparative pot experiment was carried out to determine the interaction pattern and key ecological clusters in microbial community respond to phytoremediation. Results showed that the application of biogas residues or slurry could effectively mitigate soil acidification, increase soil nutrients, alter REEs bioavailability and promote plant growth. Without fertilization, plant growth was restricted and soil acidification and nutrient-deficiency would be further aggravated. This difference in phytoremediation effect was associated with the assembly of seven key ecological clusters in co-occurrence network of rhizosphere soil. And such assembly pattern of cluster, determined by the environmental preference (e.g. pH, REEs), nutrient demand and interaction among clusters, could alter the microbial communities in response to the changes in soil context rapidly and exert corresponding ecological function during phytoremediation, such as participating in soil nutrient cycling, affecting plant biomass and altering REEs bioavailability. These findings provided new insights for anaerobic fermentation residues application, and can be beneficial to support for studying microbe-plant combined remediation in the future.
科研通智能强力驱动
Strongly Powered by AbleSci AI