Pollution load assessment in the form of TSS and COD emitted from an urbanized catchment in the aspect of administrative pollutant discharge fees on the example of the activity of the J1 CSO in Lodz (Poland)

IF 0.4 Q4 ENVIRONMENTAL SCIENCES
A. Brzezińska, Lukasz Wiankowski
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Abstract

The article presents the possibility of reducing fees for wastewater discharge from combined sewer overflows (CSOs) into the aquatic environment by minimizing the load emission of total suspended solids (TSS) and chemical oxygen demand (COD). The analysis was conducted based on limiting the wastewater volume discharged to the receiving water by one of the viable options, i.e., raising the overflow crest. The assessment was made on the example of the functioning J1 CSO in Lodz (in Polish: Łódź) in the years 2013–2015. An analysis of rainfall recorded in the J1 catchment area was also performed for this period. For the determination of the TSS and COD load emitted to the receiver, a predictive model based on rainfall parameters and the volume of discharged wastewater was used. To determine the wastewater volume emitted during individual activations of the J1 overflow, the model of the sewer network serving this catchment was calibrated in the EPA SWMM software. Simulations were conducted, considering different heights of the weir crest (static change). The results of the analyzes showed that raising the crest by 5 cm reduced the total fee for the J1 activity by 35% compared to its existing height in 2013 and about 40% for 2015. Raising the crest by 10 cm in 2015 enabled, for example, the J1 overflow activity to be in accordance with the applicable law. Reducing the amount of wastewater discharged to the receiver by using the overflow crest height adjustment method presented in the article may bring measurable financial and ecological benefits.
以波兰罗兹 J1 污水处理厂的活动为例,评估城市化集水区排放的 TSS 和 COD 形式的污染负荷。
文章介绍了通过最大限度地减少总悬浮固体(TSS)和化学需氧量(COD)的负荷排放来降低联合污水溢流(CSO)向水生环境排放废水的费用的可能性。分析的基础是通过可行方案之一限制排放到受纳水体的废水量,即提高溢流顶。评估以 2013-2015 年期间罗兹(波兰语:Łódź)运行的 J1 污水处理厂为例进行。在此期间,还对 J1 集水区的降雨记录进行了分析。为确定向接收器排放的 TSS 和 COD 负荷,使用了基于降雨参数和排放废水量的预测模型。为确定 J1 溢流口每次启动时的废水排放量,在 EPA SWMM 软件中校准了服务于该集水区的污水管网模型。考虑到堰顶的不同高度(静态变化),进行了模拟。分析结果表明,与 2013 年的现有高度相比,堰顶抬高 5 厘米可使 J1 活动的总费用减少 35%,2015 年减少约 40%。例如,2015 年将波峰抬高 10 厘米使 J1 溢流活动符合适用法律。通过使用文章中介绍的溢流顶高度调整方法来减少排入接收器的废水量,可能会带来可衡量的经济和生态效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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