机构地区:[1]中国农业科学院农田灌溉研究所,河南新乡453002 [2]中国科学院地理科学与资源研究所陆地水循环及地表过程院重点实验室,北京100101 [3]郑州大学水利科学与工程学院,郑州450001 [4]农业农村部农产品质量安全水环境因子风险评估实验室,河南新乡453002 [5]郑州大学生态与环境学院,郑州450001
出 处:《灌溉排水学报》2021年第9期125-133,共9页Journal of Irrigation and Drainage
基 金:河南省自然科学基金项目(212300410310);国家重点研发计划项目子课题(2017YFD0800403);中央级公益性科研院所基本科研业务费专项(FIRI20210105,FIRI2017-11);国家自然科学基金项目(51879239,42101043);常熟市耕地质量提升技术支撑服务项目(JSJY-Z2021D002)。
摘 要:【目的】了解黄河流域水环境状况可为黄河流域生态保护和高质量发展提供依据。【方法】选取黄河干流及主要支流湟水、渭河和汾河12个水质监测断面和4项水质指标pH值、溶解氧(DO)、高锰酸盐指数(CODMn)和氨氮(NH3-N),并利用多元统计方法分析了水质时空差异性及其变化特征,同时引入水污染指数法(WPI)对整体的水环境状况进行评估分析。【结果】黄河干流水质状况最好,湟水和渭河水质状况次之,汾河水质状况最差,且水质指标在空间和时间上均呈显著的差异性;监测断面海东民和桥、渭南潼关吊桥和运城河津大桥的WPI值达到IV类及以上水质标准的频率较高,分别为66.30%、98.91%和78.26%;各监测断面在春季和冬季的水质状况较差,而夏季和秋季水质状况相对较好。各监测断面的WPI值均呈下降趋势,其中海东民和桥、中卫新墩和天水牛背等3个监测断面的下降趋势比较显著;基于WPI指数的时空聚类分析结果与水体污染物浓度的时空分布情况具有一致性,空间上海东民和桥、渭南潼关吊桥和运城河津大桥WPI值的波动性相对较大,时间上1—3月的WPI值波动性相对较大。【结论】黄河干流及主要支流水质状况具有明显的时空差异性,但整体上水环境条件正在逐渐改善。【Background and objective】The Yellow River is the second largest river in China,flowing through six provinces across the county from the west to the east.The rapid economic development and the increased anthropogenic activity over the past four decades,however,have resulted in changes in its runoffs and water quality both temporally and spatially.Understanding these changes can help improve water management and maintain ecological sustainability of the river.The purpose of this paper is to present the results of a survey on the water quality of Yellow River and its tributaries.【Method】We selected 12 sections in the river and its tributaries,and measured pH,dissolved oxygen(DO),permanganate index(CODMn)and ammonia nitrogen(NH3)in each section at different seasons.Spatiotemporal variations in these chemical properties were analyzed using the multivariate statistical method,and the quality of the water at each section was quantified using a water pollution index(WPI).【Result】Water quality of the river was the best in the mainstream,followed by its tributaries Huangshui River and Weihe River,with the water quality in Fen river being the worst.All four chemical properties varied spatiotemporally.The WPI measured at different seasons in the sections at Minhe Bridge in Haidong,Tongguan Suspension Bridge in Weinan,and Yuncheng Hejin Bridge in Yuncheng,reached Class IV water quality standard or above at frequencies of 66.30%,98.91%and 78.62%,respectively.In general,the water quality of all sections was poor in spring and winter but improved in summer and autumn.During the measuring period,the WPI in all sections had been in decrease,especially the sections at Minhe Bridge in Haidong,Zhongwei Xintun,and Tianshui Niubei.Cluster analysis based on the WPI index was consistent with the spatiotemporal distribution of the pollutant concentrations,and the seasonal fluctuation in WPI at Minhe Bridge in Haidong,Tongguan Suspension Bridge in Weinan,and Hejin Bridge in Yuncheng,was higher,especially from January to March,
分 类 号:X824[环境科学与工程—环境工程]
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