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    泵站放江对苏州河中心城区段的水质影响

    Effects of pumping station discharge on water quality in the central urban reach of Suzhou Creek, Shanghai

    • 摘要: 以苏州河中心城区段3个水质自动监测站(北新泾、梦清园和温州路),以及各邻近泵站(剑河、大光复、成都北)为研究对象,基于2019—2023年水质自动监测数据,分析雨天泵站放江对受纳水体水质的影响及变化规律,重点关注氨氮(NH3-N)和高锰酸盐指数(CODMn)2项指标。通过对5年间315次雨天泵站放江事件的统计分析发现:放江导致的水质影响通常在3 d内恢复至放江前水平;其间会出现短时劣Ⅴ类水质,但大多数情况下(85.7%)1~2 d内可恢复至Ⅴ类水。研究表明,泵站放江对NH3-N和CODMn的影响存在显著差异。NH3-N浓度受放江冲击影响显著,平均增幅高达191%,导致水质类别从Ⅱ类下降至Ⅳ类;而CODMn浓度仅小幅上升,平均增幅为26%,水质类别维持在Ⅲ类。3站泵站放江量与NH3-N峰值浓度未呈现显著线性相关,但存在放江量较高时NH3-N浓度普遍上升的情况。泵站放江对水质的影响机制复杂,放江量并非单一决定因素,还与前期晴天数、降雨量、雨型、放江持续时间等多种因素有关。

       

      Abstract: Taking three water quality automatic monitoring stations (Beixinjing,Mengqingyuan,and Wenzhou Road) in the central urban area of Suzhou River,as well as adjacent pumping stations (Jianhe,Daguangfu,and Chengdu North),as the research objects,based on the water quality automatic monitoring data from 2019 to 2023,this study analyzes the impact and changes of pumping station discharge on the water quality of receiving water bodies during rainy days,with a focus on two indicators:ammonia nitrogen (NH3-N) and potassium permanganate (CODMn).Through statistical analysis of 315 rainy pumping station discharge events over the past 5 years,it was found that the water quality impact caused by discharge usually recovers to pre-discharge levels within 3 days;During this period,there may be short-term deterioration of Class V water quality,but in most cases (85.7%),it can be restored to Class V water within 1~2 days.Research has shown that there are significant differences in the effects of pumping stations discharging into the river on NH3-N and CODMn.The concentration of NH3-N is significantly affected by the impact of river discharge,with an average increase of up to 194%,resulting in a decrease in water quality category from Class II to Class IV;However,the concentration of CODMnonly slightly increased,with an average increase of 26%,and the water quality category remained at Class III.There is no significant linear correlation between the discharge volume of the 3 pumping stations and the peak concentration of NH3-N,but there is a general increase in NH3-N concentration when the discharge volume is high.The impact mechanism of pumping station discharge on water quality is complex,and the amount of discharge is not a single determining factor,but is also related to various factors such as the number of sunny days,rainfall,rainfall patterns,and duration of discharge.

       

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