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城市湖泊中数十年的重金属和微塑料沉积记录:生态风险评估及影响因素

Multidecadal heavy metals and microplastic deposition records in an urban lake: the ecological risk assessments and influencing factors.

作者信息

Li Bo, Jia Qunpo, Li Bowen, Hong Bin, Cai Yanpeng, Peng Jinping, Yang Zhifeng

机构信息

Guangdong Provincial Key Laboratory of Water Quality Improvement and Ecological Restoration for Watersheds, Institute of Environmental and Ecological Engineering, Guangdong University of Technology, Guangzhou, 510006, China.

Key Laboratory for City Cluster Environmental Safety and Green Development of the Ministry of Education, School of Ecology, Environment and Resources, Guangdong University of Technology, Guangzhou, 510006, China.

出版信息

Environ Sci Pollut Res Int. 2023 May;30(21):60447-60459. doi: 10.1007/s11356-023-26570-9. Epub 2023 Apr 6.

Abstract

With the development of urbanization and economic growth, the urban lake ecosystem faces many challenges derived from external factors. As pollutants in the aquatic environment, heavy metals and microplastics negatively influence the urban lake ecosystem due to their intrinsic properties. To understand the distribution patterns and multidecadal deposition characteristics of heavy metals and microplastics, six sediment cores were collected in March 2021 from a Chinese urban lake, Xinghu Lake, and the isotopic composition of cesium-137 and lead-210 was analyzed for the chronology of the sediment core. Here, the classifications of comprehensive ecological risk evaluation methods for heavy metals and microplastics were adjusted further. Meanwhile, the correlations among heavy metals, microplastics, sediment grains, and natural and social factors were further analyzed. The results showed that the sediments of Xinghu Lake were mainly fine silt (39%), and the average surface area of sediment was 1.82 ± 0.60 m/g. The average concentrations of cadmium, chromium, copper, nickel, lead, vanadium, and zinc were 0.268 ± 0.077, 59.91 ± 16.98, 23.29 ± 6.48, 52.16 ± 13.11, 36.83 ± 11.78, 119.57 ± 26.91, and 88.44 ± 29.68 mg/kg, respectively. The average comprehensive potential ecological risk indexes of heavy metals and microplastics in sediment cores were 46.59 ± 9.98 and 105.78 ± 23.32 in Xinghu Lake, and their risks were projected to reach high and very high levels by 2030 and 2050. The annual average temperature was the key natural factor for the abundances of heavy metals and microplastics, and the small sediment grain had a significant correlation with these. Agricultural activities were major pollution sources of heavy metals and microplastics, while the chemical fibers and plastic products were closely related to the abundance of microplastics.

摘要

随着城市化和经济增长的发展,城市湖泊生态系统面临着许多源自外部因素的挑战。作为水环境中的污染物,重金属和微塑料因其固有特性对城市湖泊生态系统产生负面影响。为了解重金属和微塑料的分布模式及多年代沉积特征,2021年3月从中国城市湖泊星湖采集了6个沉积物岩芯,并分析了铯 - 137和铅 - 210的同位素组成以确定沉积物岩芯的年代。在此,对重金属和微塑料综合生态风险评估方法的分类进行了进一步调整。同时,进一步分析了重金属、微塑料、沉积物颗粒以及自然和社会因素之间的相关性。结果表明,星湖沉积物主要为细粉砂(39%),沉积物平均比表面积为1.82±0.60 m/g。镉、铬、铜、镍、铅、钒和锌的平均浓度分别为0.268±0.077、59.91±16.98、23.29±6.48、52.16±13.11、36.83±11.78、119.57±26.91和88.44±29.68 mg/kg。星湖沉积物岩芯中重金属和微塑料的平均综合潜在生态风险指数分别为46.59±9.98和105.78±23.32,预计到2030年和2050年其风险将达到高和非常高的水平。年平均温度是影响重金属和微塑料丰度的关键自然因素,小粒径沉积物与之具有显著相关性。农业活动是重金属和微塑料的主要污染源,而化学纤维和塑料制品与微塑料的丰度密切相关。

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