砷
海水
环境科学
水生生态系统
环境化学
遗传算法
地下水砷污染
风化作用
冶炼
生态学
化学
地质学
生物
地貌学
有机化学
作者
Ningxin Wang,Zijun Ye,Liping Huang,Chushu Zhang,Yunxue Guo,Wei Zhang
出处
期刊:Water
[Multidisciplinary Digital Publishing Institute]
日期:2022-12-30
卷期号:15 (1): 147-147
被引量:83
摘要
Owing to the toxicity and adverse effects of arsenic on human health, its levels in aquatic environments are among the most serious threats to humans globally. To improve our understanding of its occurrence and cycling in aquatic environments, herein we review the concentration, speciation, and distribution of arsenic in freshwater, seawater, and sediments. Many natural processes, such as rock weathering and geothermal activities, contribute to the background arsenic concentrations in the natural environment, whereas metal mining and smelting are anthropogenic sources of arsenic in the water. The high solubility and mobility of arsenic in aquatic environments affects its global cycling. Furthermore, the biological processes in the aquatic environment are discussed, especially the possible microbe-mediated reactions of arsenic in sediments. In addition, various environmental factors, such as redox conditions, pH, and salinity, which influence the transformation of arsenic species, are summarized. Finally, the differences between freshwater and seawater with reference to the concentration as well as speciation and distribution patterns of arsenic are addressed. This review provides deep insights into arsenic occurrence and cycling between freshwater and seawater aquatic environments, which can more accurately distinguish the risks of arsenic in different water environments, and provides theoretical guidance for the prevention and control of arsenic risks.
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