雨季菲律宾帕西格河表层沉积物中微塑料和重金属污染的评估

IF 3.5 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Clarissa Ileana L. Ilao , Joan Cecilia C. Casila , Tonni Agustiono Kurniawan , Ronnie S. Sampang , Lars Lerry T. Panganiban , Liza B. Patacsil , Jomel S. Limbago
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引用次数: 0

摘要

本研究调查了菲律宾帕西格河表层沉积物中微塑料(MPs)和重金属在雨季的污染。这个季节的特点是降雨、径流和暴雨流量增加,可能会加剧污染物的扩散和积累,导致污染水平升高。MPs和重金属对水生生态系统和人类健康构成重大威胁,它们在河流沉积物中的积累值得紧急关注。研究人员从河流沿岸的多个地点采集了样本,重点研究了沉积物组成,分析了MP丰度和重金属浓度。结果显示,在城市地区,MPs的浓度较高,主要是聚酯、聚乙烯和丙烯腈-丁二烯共聚物,而重金属的浓度则明显较高。在所有采样点都发现了MPs,每公斤沉积物的颗粒从2700到28,250不等。沉积物中重金属含量变化较大,Cd (<0.003 mg/kg)、Pb (3.09 ~ 50.48 mg/kg)、Zn (53.37 ~ 175.74 mg/kg)、Fe (11629 ~ 25687 mg/kg)的浓度依次为:Fe >;锌比;Pb祝辞根据香港临时沉积物质量值标准,沉积物没有受到Cd、Pb和Zn的污染。重金属丰度与Pb和Zn的相关性中等,而与Fe的相关性较低,表明污染动态复杂。这些发现强调需要全面监测和有针对性的废物管理战略,以解决MPs和重金属污染问题,特别是在雨季。确定MPs聚合物类型及其可能的污染源为减轻沉积物污染、保护水生生态系统和人类健康提供了有价值的数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Assessment of microplastics and heavy metal contamination in surficial sediments of Pasig River, Philippines during wet season

Assessment of microplastics and heavy metal contamination in surficial sediments of Pasig River, Philippines during wet season
This study investigates the contamination of microplastics (MPs) and heavy metals in surficial sediments of the Pasig River, Philippines, during the wet season. This season, marked by heightened rainfall, runoff, and stormwater flow, potentially enhances the dispersion and accumulation of pollutants, leading to elevated pollution levels. MPs and heavy metals pose significant threats to aquatic ecosystems and human health, and their accumulation in river sediments warrants urgent attention. Samples were collected from multiple sites along the river, focusing on sediment composition, to analyze MP abundance and heavy metal concentrations. Results revealed high concentrations of MPs, predominantly polyester, polyethylene and acrylonitrile-butadiene copolymer, and heavy metals which were significantly higher in urbanized areas. MPs were found at all sampling locations, ranging from 2700 to 28,250 particles per kilogram of sediments. Heavy metals in the sediments varied, with concentrations of Cd (<0.003 mg/kg), Pb (3.09–50.48 mg/kg), Zn (53.37–175.74 mg/kg), and Fe (11,629–25,687 mg/kg), in the order Fe > Zn > Pb > Cd. According to the Hong Kong-Interim Sediment Quality Values criteria, the sediments were not contaminated by Cd, Pb, and Zn. Correlations between MP abundance and metals were found to be moderate for Pb and Zn but low for Fe, suggesting complex pollution dynamics. These findings emphasize the need for comprehensive monitoring and targeted waste management strategies to address MPs and heavy metal pollution, particularly during the wet season. Identifying MPs polymer types and their possible pollution sources provides valuable data to mitigate sediment contamination and protect aquatic ecosystems and human health.
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来源期刊
Journal of contaminant hydrology
Journal of contaminant hydrology 环境科学-地球科学综合
CiteScore
6.80
自引率
2.80%
发文量
129
审稿时长
68 days
期刊介绍: The Journal of Contaminant Hydrology is an international journal publishing scientific articles pertaining to the contamination of subsurface water resources. Emphasis is placed on investigations of the physical, chemical, and biological processes influencing the behavior and fate of organic and inorganic contaminants in the unsaturated (vadose) and saturated (groundwater) zones, as well as at groundwater-surface water interfaces. The ecological impacts of contaminants transported both from and to aquifers are of interest. Articles on contamination of surface water only, without a link to groundwater, are out of the scope. Broad latitude is allowed in identifying contaminants of interest, and include legacy and emerging pollutants, nutrients, nanoparticles, pathogenic microorganisms (e.g., bacteria, viruses, protozoa), microplastics, and various constituents associated with energy production (e.g., methane, carbon dioxide, hydrogen sulfide). The journal''s scope embraces a wide range of topics including: experimental investigations of contaminant sorption, diffusion, transformation, volatilization and transport in the surface and subsurface; characterization of soil and aquifer properties only as they influence contaminant behavior; development and testing of mathematical models of contaminant behaviour; innovative techniques for restoration of contaminated sites; development of new tools or techniques for monitoring the extent of soil and groundwater contamination; transformation of contaminants in the hyporheic zone; effects of contaminants traversing the hyporheic zone on surface water and groundwater ecosystems; subsurface carbon sequestration and/or turnover; and migration of fluids associated with energy production into groundwater.
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