Comprehensive analysis of microplastics at typical outlets around Hainan Island: From spatial distribution to flux estimation and correlation analysis

IF 11.4 1区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL Water Research Pub Date : 2025-02-13 DOI:10.1016/j.watres.2025.123289
Shiyu Xie , Yuanyuan Su , Dan Qi , Fei Liu , Liu Gao , Ruiqi Bao , Xing Cheng , Xubing Lin , Tingting Zhang , Licheng Peng
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Abstract

Previous studies on microplastics (MPs) distribution have predominantly focused on water bodies within specific regions, with limited emphasis on the contributions of MPs directly discharged from functional zones surrounding isolated island. This study addressed this gap by investigating the occurrence and distribution of MPs in water and sediment directly discharged into the adjacent coast of Hainan Island, a geographically isolated and ecologically sensitive region in the South China Sea. Based on the sampling from 40 typical sewage outlets (affiliated to five functional zones, i.e., wastewater treatment plants (WWTP), industrial area (ID), residential area (RA), aquaculture area (QA), estuary (EST)) around the Hainan Island, we analyzed the MPs abundance and composition in water and sediment. Our findings revealed significant contributions of land-derived MPs, with an average abundance of 15,900 items/m3 in water and 3171 items/kg in sediment. Annually, approximately 61.6 trillion MPs were discharged into the South China Sea via rivers from Hainan Island, highlighting its role as a major land-derived source of MPs pollution in this critical marine ecosystem. Risk assessments indicated the H and PLI level of Hainan Island as II and I, respectively, with H-water level highest in WWTP and EST as III and H-sediment level highest in WWTP, RD and QA as II, and this indicated the critical function of WWTP to control the release of land-derived MPs and reduce the environmental risks. Correlation analysis underscored the influence of natural factors (currents, tides, waves, and drifts), socio-economic factors (population density, regional area, and agricultural output), and anthropogenic activity (tourism development) on coastal MPs pollution. On the basis of existing timely MPs prevention and control measures in Hainan province, such as intercepting the MPs via WWTP and prohibiting the direct discharge of aquaculture wastewater to the surrounding sea, this study re-underscored the urgency of MPs management on the protection of the South China Sea's eco-environmental quality in view of the pivotal role of Hainan Island on the isolated geographic position and the South China Sea's ecological health. Overall, this study offered scientific insights to support source-oriented strategies for coastal MPs pollution control by providing fundamental data for predicting land-derived MPs contributions on an island-scale.

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以往有关微塑料(MPs)分布的研究主要集中在特定区域内的水体,而对直接排入孤岛周边功能区的微塑料的贡献研究则很少。本研究针对这一空白,调查了直接排入海南岛邻近海岸的水体和沉积物中微塑料的发生和分布情况,海南岛是中国南海的一个地理隔离和生态敏感地区。基于对海南岛周边 40 个典型排污口(隶属于五个功能区,即污水处理厂(WWTP)、工业区(ID)、居民区(RA)、水产养殖区(QA)、河口(EST))的采样,我们分析了水和沉积物中 MPs 的丰度和组成。研究结果表明,陆源 MPs 在水体中的平均丰度为 15,900 个/立方米,在沉积物中的平均丰度为 3,171 个/千克。每年约有 61.6 万亿 MPs 通过海南岛的河流排入南海,突出表明海南岛是这一重要海洋生态系统的主要陆源 MPs 污染源。风险评估表明,海南岛的 H 和 PLI 水平分别为Ⅱ级和Ⅰ级,其中污水处理厂和EST 的 H 水水平最高,为Ⅲ级;污水处理厂、RD 和 QA 的 H 泥沙水平最高,为Ⅱ级,这表明污水处理厂在控制陆源 MPs 排放和降低环境风险方面发挥着关键作用。相关性分析强调了自然因素(海流、潮汐、波浪和漂移)、社会经济因素(人口密度、区域面积和农业产出)和人为活动(旅游开发)对沿海 MPs 污染的影响。本研究在海南省现有及时采取微塑料防控措施(如通过污水处理厂拦截微塑料、禁止养殖废水直接排放到周边海域等)的基础上,针对海南岛孤立的地理位置和南海生态健康的关键作用,再次强调了微塑料治理对保护南海生态环境质量的紧迫性。总之,本研究为预测陆源 MPs 在岛屿尺度上的贡献提供了基础数据,为以源头为导向的沿海 MPs 污染控制策略提供了科学依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Water Research
Water Research 环境科学-工程:环境
CiteScore
20.80
自引率
9.40%
发文量
1307
审稿时长
38 days
期刊介绍: Water Research, along with its open access companion journal Water Research X, serves as a platform for publishing original research papers covering various aspects of the science and technology related to the anthropogenic water cycle, water quality, and its management worldwide. The audience targeted by the journal comprises biologists, chemical engineers, chemists, civil engineers, environmental engineers, limnologists, and microbiologists. The scope of the journal include: •Treatment processes for water and wastewaters (municipal, agricultural, industrial, and on-site treatment), including resource recovery and residuals management; •Urban hydrology including sewer systems, stormwater management, and green infrastructure; •Drinking water treatment and distribution; •Potable and non-potable water reuse; •Sanitation, public health, and risk assessment; •Anaerobic digestion, solid and hazardous waste management, including source characterization and the effects and control of leachates and gaseous emissions; •Contaminants (chemical, microbial, anthropogenic particles such as nanoparticles or microplastics) and related water quality sensing, monitoring, fate, and assessment; •Anthropogenic impacts on inland, tidal, coastal and urban waters, focusing on surface and ground waters, and point and non-point sources of pollution; •Environmental restoration, linked to surface water, groundwater and groundwater remediation; •Analysis of the interfaces between sediments and water, and between water and atmosphere, focusing specifically on anthropogenic impacts; •Mathematical modelling, systems analysis, machine learning, and beneficial use of big data related to the anthropogenic water cycle; •Socio-economic, policy, and regulations studies.
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