Li Bo, Wan Hang, Cai Yanpeng, Peng Jinping, Li Bowen, Jia Qunpo, Yuan Xiao, Wang Yongyang, Zhang Pan, Hong Bin, Yang Zhifeng
Guangdong Provincial Key Laboratory of Water Quality Improvement and Ecological Restoration for Watersheds, School of Ecology, Environment and Resources, Guangdong University of Technology, Guangzhou, 510006, China.
Guangdong Provincial Key Laboratory of Water Quality Improvement and Ecological Restoration for Watersheds, School of Ecology, Environment and Resources, Guangdong University of Technology, Guangzhou, 510006, China; Southern Marine Science and Engineering Guangdong Laboratory (Guangzhou), Guangzhou, 511458, China.
Sci Total Environ. 2022 May 10;820:153187. doi: 10.1016/j.scitotenv.2022.153187. Epub 2022 Jan 21.
Microplastic deposition in subtropical lakes and the influences of human activities remain to be deeply and fully understood. Owing to the intensification of urban construction and population growth, urban lakes serving as significant freshwater resources for sustainable development of the regional economy are becoming degraded, especially due to microplastic pollution. To understand the deposition characteristics of microplastics in lake sediments from the China's subtropical city, six sediment core samples were collected from Xinghu Lake of Guangdong Province. Here, we analyzed the morphological characteristics of microplastics from the perspective of microstructure, and investigated the temporal and spatial distribution patterns of microplastics on the macroscopic scale. The deposition characteristics of microplastics in the past 64 years and the influence of socio-economic factors on the accumulation of microplastics were further clarified through the isotope composition of cesium-137 and lead-210 in the subtropical urban area with intense human activities. The results showed that the microplastic concentration of sediment cores in Xinghu Lake was 523 ± 140 particles/kg. The average sizes of microplastics in the five sub-lakes (i.e., Bohai, Zhongxin, Li, Qinglian, and Xiannü Lakes) of Xinghu Lake were 668, 642, 727, 708 and 646 μm, respectively. There were 25 polymers in sediment cores of Xinghu Lake. Rayon, polypropylene, polyethylene terephthalate and polypropylene-polyethylene copolymer were the main types, and the microplastics have the aging phenomenon or mechanical abrasion. The average deposition rates of sediment and microplastics were 0.6 cm/a and 106 particles/(kg·a) in Xinghu Lake, respectively. Meanwhile, the urban expansion and economic growth, as indicated by the increase in the urban area, population and gross domestic product, all played an essential role in the accelerated accumulation of microplastics in sediment cores of Xinghu Lake.
亚热带湖泊中的微塑料沉积以及人类活动的影响仍有待深入和全面了解。由于城市建设的加剧和人口增长,作为区域经济可持续发展重要淡水资源的城市湖泊正逐渐退化,尤其是受到微塑料污染的影响。为了解中国亚热带城市湖泊沉积物中微塑料的沉积特征,从广东省星湖采集了六个沉积物岩芯样本。在此,我们从微观结构角度分析了微塑料的形态特征,并在宏观尺度上研究了微塑料的时空分布模式。通过人类活动密集的亚热带城市地区铯 - 137和铅 - 210的同位素组成,进一步阐明了过去64年微塑料的沉积特征以及社会经济因素对微塑料积累的影响。结果表明,星湖沉积物岩芯中的微塑料浓度为523±140颗粒/千克。星湖五个子湖(即波海、中信、里、青莲和仙女湖)中微塑料的平均尺寸分别为668、642、727、708和646微米。星湖沉积物岩芯中有25种聚合物。人造丝、聚丙烯、聚对苯二甲酸乙二酯和聚丙烯 - 聚乙烯共聚物是主要类型,且微塑料存在老化现象或机械磨损。星湖沉积物和微塑料的平均沉积速率分别为0.6厘米/年和106颗粒/(千克·年)。同时,城市扩张和经济增长,如城市面积、人口和国内生产总值的增加所示,在星湖沉积物岩芯中微塑料的加速积累中都起到了重要作用。