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[长江、黄浦江原水及不同处理工艺与管网中消毒副产物三卤甲烷和卤乙酸的生成及变化规律]

[Formation and changes of regulated trihalomethanes and haloacetic acids in raw water of Yangtze River, Huangpu River and different treatment processes and pipelines network].

作者信息

Chen Xin, Zhang Dong, Lu Yin-hao, Zheng Wei-wei, Wu Yu-xin, Wei Xiao, Tian Da-jun, Wang Xia, Zhang Hao, Guo Shuai, Jiang Song-hui, Qu Wei-dong

机构信息

Key Laboratory of Public Health and Safety, Ministry of Education, Department of Environment Health, School of Public Health, Fudan University, Shanghai, China.

出版信息

Zhonghua Yu Fang Yi Xue Za Zhi. 2010 Oct;44(10):893-8.

Abstract

OBJECTIVES

To investigate the pollutant levels of regulated disinfection by-products trihalomethanes (THMs) and haloacetic acids (HAAs) in raw water from the Huangpu River, the Yangtze River and different treatment processes and finished water, and to explore the changes tendency in transmission and distribution pipeline network.

METHODS

A total of 65 ml water samples with two replicates were collected from different raw water, corresponding treatment processes, finished water and six national surveillance points in main network of transmission and distribution, water source for A water plant and B, C water plant was the Huangpu River and the Yangtze River, respectively. Regulated THMs and HAAs above water samples were detected by gas chromatography.

RESULTS

The total trihalomethanes (THM(4)) concentration in different treatment processes of A water plant was ND-9.64 µg/L, dichlorobromomethane was the highest (6.43 µg/L). The THM(4) concentration in B and C water plant was ND to 38.06 µg/L, dibromochloromethane (12.24 µg/L) and bromoform (14.07 µg/L) were the highest in the B and the C water plant respectively. In addition to trichloroacetic acid in A water plant from the raw water, the other HAAs came from different treatment processes. The total haloacetic acids (HAA(6)) concentration of different treated processes in A water plant was 3.21 - 22.97 µg/L, mobromoacetic acid (10.40 µg/L) was the highest. Dibromoacetic acid was the highest both in B (8.25 µg/L) and C (8.84 µg/L) water plant, HAA(6) concentration was ND to 27.18 µg/L. The highest and the lowest concentration of THM(4) were found from the main distribution network of C and A water plant respectively, but the concentration of HAA(6) in the main water pipes network of A water plant was the highest, and the lowest in C water plant. The THMs concentration was 21.11 - 31.18 µg/L in C water plant and 6.72 - 8.51 µg/L in A water plant. The concentration of HAA(6) was 25.02 - 37.31 µg/L in A water plant and 18.69 - 23.32 µg/L in C water plant. The highest concentrations of brominated disinfection by-products in B and C water plant were 54.57 µg/L and 45.38 µg/L respectively, those were higher than A water plant (18.98 µg/L), and higher than the chlorinated disinfection by-products in B and C water plants (30.23 µg/L and 30.60 µg/L).

CONCLUSIONS

The THM(4) concentrations of finished water treated from Huangpu River was lower than finished water from the Yangtze River, while the HAAs concentrations in finish water from Huangpu River was higher than the two water plants of Yangtze River. The fluctuations of THMs and HAAs concentration in distribution network were low during transmission and distribution process.

摘要

目的

调查黄浦江、长江原水及不同处理工艺和出厂水中受控消毒副产物三卤甲烷(THMs)和卤乙酸(HAAs)的污染物水平,并探讨其在输配水管网中的变化趋势。

方法

从不同原水、相应处理工艺、出厂水以及输配主网中的6个国家监测点共采集65ml水样,每个水样重复采集2次,A水厂和B、C水厂的水源分别为黄浦江和长江。采用气相色谱法检测上述水样中受控的THMs和HAAs。

结果

A水厂不同处理工艺中总三卤甲烷(THM(4))浓度为ND - 9.64μg/L,二氯一溴甲烷含量最高(6.43μg/L)。B、C水厂THM(4)浓度为ND至38.06μg/L,B、C水厂中分别以二溴一氯甲烷(12.24μg/L)和溴仿(14.07μg/L)含量最高。除A水厂原水中的三氯乙酸外,其他HAAs均来自不同处理工艺。A水厂不同处理工艺中总卤乙酸(HAA(6))浓度为3.21 - 22.97μg/L,一溴乙酸(10.40μg/L)含量最高。B、C水厂中二溴乙酸含量均最高(分别为8.25μg/L和8.84μg/L),HAA(6)浓度为ND至27.18μg/L。THM(4)浓度在C水厂输配主网中最高,A水厂中最低,但A水厂主水管网中HAA(6)浓度最高,C水厂中最低。C水厂中THMs浓度为21.11 - 31.18μg/L,A水厂中为6.72 - 8.51μg/L。A水厂中HAA(6)浓度为25.02 - 37.31μg/L,C水厂中为18.69 - 23.32μg/L。B、C水厂中溴代消毒副产物最高浓度分别为54.57μg/L和45.38μg/L,高于A水厂(18.98μg/L),且高于B、C水厂中的氯代消毒副产物(分别为30.23μg/L和30.60μg/L)。

结论

黄浦江水源处理后的出厂水THM(4)浓度低于长江水源处理后的出厂水,而黄浦江水源处理后的出厂水中HAAs浓度高于长江水源的两个水厂。在输配过程中,管网中THMs和HAAs浓度波动较小。

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