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作 者:吴丹 金小伟[2] 朱红霞[2] 许秀艳[2] 解鑫[2] 刘方[2] 袁懋[2] WU Dan;JIN Xiaowei;ZHU Hongxia;XU Xiuyan;XIE Xin;LIU Fang;YUAN Mao(Hebei Province Ecology Environmental Monitoring Center,Shijiazhuang 050000,China;State Environmental Protection Key Laboratory of Quality Control in Environmental Monitoring,China National Environmental Monitoring Centre,Beijing 100012,China)
机构地区:[1]河北省生态环境监测中心,河北石家庄050000 [2]中国环境监测总站,国家环境保护环境监测质量控制重点实验室,北京100012
出 处:《中国环境监测》2020年第4期123-131,共9页Environmental Monitoring in China
基 金:国家水体污染控制与治理科技重大专项(2017ZX07302-001)。
摘 要:针对目前地表水总磷测定中样品采集和分析过程普遍存在的技术问题,选取多泥沙河流(长江、黄河)、感潮河段(浙闽片区)、湖库(太湖流域)3类典型水体的多个点位,以及代表一般河流(除多泥沙河流和感潮河段以外的河流)水体的点位为研究对象,探讨不同现场前处理方式和分析方法对总磷测定结果的影响。结果表明:现场前处理方式是影响总磷测定结果的主要因素,总磷浓度与浊度呈正相关。对于地表水采样,建议一般河流(沉降30 min后,浊度<50 NTU)采用沉降30 min的现场前处理方式,泥沙含量大的水体(沉降30 min后,浊度≥50 NTU)采用4000 r/min离心2 min的现场前处理方式,多藻类湖库水体采用63μm筛过滤的现场前处理方式。可通过浊度色度补偿消除实验室比色干扰。Aiming at the common technical problems in sampling and analysis of total phosphorus in surface water,three types of typical water bodies,including sediment-laden rivers(the Yangtze River,the Yellow River),tidal reach(Zhejiang-Fujian area),lake reservoir(the Taihu Lake),and water bodies representing general rivers(except sediment-laden rivers and tidal rivers),are selected as the research objects to explore the influence of different pretreatment on-site and analytical methods on the determination results of total phosphorus.The results show that pretreatment on-site is the main factor affecting the determination of total phosphorus,and total phosphorus concentration is positively correlated with turbidity.For surface water sampling(turbidity<50 NTU after 30 min settling),sampling method of 30 minutes subsidence is used in general rivers,water bodies with high sediment content(turbidity≥50 NTU after 30 min settling)are sampled by centrifugal sampling method of 4000 r/min and 2 min,and the algae-laden lake and reservoir water body are filtered by 63-micron sieve to remove the influence of algae clusters.The turbidity color compensation can be carried out by eliminating the interference of laboratory colorimetry.
分 类 号:X830.1[环境科学与工程—环境工程] X830.2
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