Department of Agricultural Resources and Environment, Collaborative Innovation Center of Atmospheric Environment and Equipment Technology (AEET), School of Applied Meteorology, Nanjing University of Information Science & Technology, Nanjing, 210044, China.
The Key Laboratory of Mountain Surface Processes and Ecological Regulation, Institute of Mountain Hazards and Environment, Chinese Academy of Sciences, Chengdu, 610041, China.
Environ Pollut. 2019 Dec;255(Pt 1):113138. doi: 10.1016/j.envpol.2019.113138. Epub 2019 Sep 12.
Atmospheric particulate matter (PM) pollution and soil trace metal (TM) contamination are binary environmental issues harming ecosystems and human health, especially in the developing China with rapid urbanization and industrialization. Since PMs contain TMs, the air-soil nexus should be investigated synthetically. Although the PMs and airborne TMs are mainly emitted from urban or industrial areas, they can reach the rural and remote mountain areas owing to the ability of long-range transport. After dry or wet deposition, they will participate in the terrestrial biogeochemical cycles of TMs in various soil-plant systems, including urban soil-greening trees, agricultural soil-food crops, and mountain soil-natural forest systems. Besides the well-known root uptake, the pathway of leaf deposition and foliar absorption contribute significantly to the plant TM accumulation. Moreover, the aerosols can also exert climatic effects by absorption and scattering of solar radiation and by the cloud condensation nuclei activity, thereby indirectly impact plant growth and probably crop TM accumulation through photosynthesis, and then threat health. In particular, this systematic review summarizes the interactions of PMs-TMs in soil-plant systems including the deposition, transfer, accumulation, toxicity, and mechanisms among them. Finally, current knowledge gaps and prospective are proposed for future research agendas. These analyses would be conducive to improving urban air quality and managing the agricultural and ecological risks of airborne metals.
大气颗粒物(PM)污染和土壤痕量金属(TM)污染是危害生态系统和人类健康的两个环境问题,特别是在中国这样一个城市化和工业化快速发展的发展中国家。由于 PM 中含有 TM,因此应该综合调查空气-土壤关系。虽然 PM 和空气中的 TM 主要是从城市或工业区排放的,但由于它们具有长距离传输的能力,它们可以到达农村和偏远山区。经过干或湿沉降后,它们将参与各种土壤-植物系统中 TM 的陆地生物地球化学循环,包括城市土壤-绿化树木、农业土壤-粮食作物和山区土壤-天然森林系统。除了众所周知的根部吸收外,叶片沉积和叶面吸收途径对植物 TM 积累的贡献也很大。此外,气溶胶还可以通过吸收和散射太阳辐射以及云凝结核活性来产生气候效应,从而通过光合作用间接影响植物生长,可能会影响作物 TM 积累,从而威胁健康。特别是,本系统评价总结了包括沉积、迁移、积累、毒性以及它们之间的机制在内的土壤-植物系统中 PM-TM 的相互作用。最后,为未来的研究议程提出了当前的知识差距和展望。这些分析将有助于改善城市空气质量和管理农业及生态系统中空气传播金属的风险。