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Risk analysis of seasonal stream water quality management

机译:季节性溪流水质管理的风险分析

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Seasonal discharge programs, which take advantage of temporal variation of stream assimilative capacity, are cost effective. However, these seasonal discharge control programs should not increase the risk of water quality violations. A method is presented to estimate the allowable pollutant loads under both seasonal and non-seasonal discharge control programs for a single discharger that maintains the same level of risk of water quality violation. An enhanced in-stream water quality model QUAL2E-UNCAS was applied to a 39-km river reach of the Des Moines River below Des Moines Sewage Treatment Plant (DMSTP) in Iowa. The model was calibrated for dissolved oxygen (DO), biological oxygen demand (BOD), and ammonia as nitrogen with standard errors of 10, 17, and 23% by comparing with the observed water quality data. Monte-Carlo simulation technique was then implemented for seasonal and non-seasonal discharge program to assess the water quality violation risk and the allowable pollutant load. The results indicated that the four-seasonal program offers about 136% increase in BOD loading and 61% increase in ammonia loading when compared with the non-seasonal program without any increase in the violation probabilities, whereas the two-seasonal program only offers 13% decrease in BOD loading and 56% increase in ammonia loading. It is found that the multi-discharge program was beneficial for both water quality indicators, and thus provides a way of reducing the overall cost of waste treatment.
机译:利用河流同化能力随时间变化的季节性排放程序具有成本效益。但是,这些季节性排放控制程序不应增加违反水质的风险。提出了一种方法来估算单个排放者在季节性和非季节性排放控制程序下允许的污染物负荷,该排放者保持相同水平的水质违规风险。在爱荷华州的得梅因污水处理厂(DMSTP)下方的得梅因河39公里的河段中,采用了改进的河道内水质模型QUAL2E-UNCAS。通过与观察到的水质数据进行比较,对模型中的溶解氧(DO),生物需氧量(BOD)和氨氮进行了校准,标准误差为10%,17%和23%。然后,针对季节性和非季节性排放计划实施了蒙特卡罗模拟技术,以评估违反水质的风险和允许的污染物负荷。结果表明,与非季节性计划相比,四个季节计划的BOD负荷增加了约136%,氨负荷增加了61%,而违规概率没有任何增加,而两个季节计划仅提供了13% BOD负荷减少,氨负荷增加56%。发现多次排放计划对于两个水质指标都是有益的,因此提供了一种减少废物处理总成本的方法。

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