Suppr超能文献

奥兰治-森奎河流域沉积物、水和鱼类中微塑料的测定。

Determination of microplastics in sediment, water, and fish across the Orange-Senqu River basin.

作者信息

Graham P M, Pattinson N B, Bakir A, McGoran A R, Nel H A

机构信息

GroundTruth, Hilton, Kwa-Zulu Natal 3245, South Africa; University of KwaZulu-Natal, Centre for Water Resources Research, Pietermaritzburg, KwaZulu-Natal 3201, South Africa.

GroundTruth, Hilton, Kwa-Zulu Natal 3245, South Africa.

出版信息

Water Res. 2024 Nov 15;266:122394. doi: 10.1016/j.watres.2024.122394. Epub 2024 Sep 11.

Abstract

Microplastics are increasingly recognised as posing a significant environmental threat across systems. Their pervasive presence in freshwater poses a serious concern, given the heavy reliance of both humans and biodiversity on healthy, functioning freshwater ecosystems. Acknowledgment of the potential risks led the transboundary Orange-Senqu River Commission (ORASECOM) to include sampling for microlitter (primarily microplastics) in riverine sediment, surface water, and fishes, across Southern Africa as part of the third Joint Basin Survey (JBS3) in 2021. The aim was to establish a first, basin-wide estimate of microlitter contamination across compartments, setting a baseline for further monitoring. The survey showed that the abundance of microlitter in riverine sediment (0 - 4000 particles.kg dry weight (dw)) and riverine water (1.00 ± 0.71 - 69.75 ± 68.55 SD items.L) varied considerably between sample sites, with no correlation between the two. The abundance of microlitter in fishes was low (average of 0.7 ± 0.4 items.individual). Course resolution analyses suggested that microlitter concentrations in riverine sediment and riverine water at each site did not correlate with land use directly upstream, though variation in microlitter abundance did isolate some hotspots of contamination. Discharge data collected from nine gauging stations near sampling sites confirmed that low flows prevailed in the system during the study, with high flows occurring approximately 5 months prior during the summer months. There is some variation in river flow across the catchment which is a likely driver of microlitter transport. This was evident in the polymer composition for sediment and water samples. Based on the average discharge at each gauging station and microlitter concentrations measured in riverine water, the estimated microlitter load ranged from ∼889 particles.s to ∼17.9 million particles.s, with a substantial amount ending likely up in the mudbelt adjacent to the Orange River mouth. This assessment provides a first insight into the characterisation and distribution of microlitter in multiple compartments across the Orange-Senqu River basin. Overall, the findings highlight the need for continued monitoring across compartments at catchment scales to improve our understanding of microplastic pathways into and within riverine systems.

摘要

微塑料日益被认为对各个系统构成重大环境威胁。鉴于人类和生物多样性都严重依赖健康、功能正常的淡水生态系统,微塑料在淡水中的广泛存在令人严重担忧。认识到潜在风险后,跨界的奥兰治 - 森奎河委员会(ORASECOM)在2021年开展的第三次联合流域调查(JBS3)中,将对南部非洲河流沉积物、地表水和鱼类中的微垃圾(主要是微塑料)进行采样纳入其中。目的是首次对各区域的微垃圾污染情况进行全流域估算,为进一步监测设定基线。调查显示,河流沉积物(0 - 4000颗粒·千克干重(dw))和河流水体(1.00 ± 0.71 - 69.75 ± 68.55标准差单位·升)中的微垃圾丰度在不同采样点差异很大,二者之间没有相关性。鱼类体内的微垃圾丰度较低(平均为0.7 ± 0.4个/个体)。粗略分辨率分析表明,每个采样点河流沉积物和河流水体中的微垃圾浓度与上游直接的土地利用情况没有直接关联,不过微垃圾丰度的变化确实识别出了一些污染热点地区。从采样点附近的9个测量站收集的流量数据证实,研究期间该系统普遍处于低流量状态,高流量出现在大约5个月前的夏季。整个集水区的河流水流存在一些变化,这可能是微垃圾运输的一个驱动因素。这在沉积物和水样的聚合物组成中很明显。根据每个测量站的平均流量以及河流水体中测得的微垃圾浓度,估计的微垃圾负荷范围为约889颗粒/秒至约1790万颗粒/秒,大量微垃圾可能最终沉积在奥兰治河河口附近的泥滩中。这项评估首次深入了解了奥兰治 - 森奎河流域多个区域中微垃圾的特征和分布情况。总体而言,研究结果凸显了在集水区尺度上持续对各区域进行监测的必要性,以增进我们对微塑料进入河流系统及在其中流动路径的理解。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验