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Will stringent total nitrogen wastewater treatment plant discharge regulations achieve stream water quality goals?

机译:严格的总氮废水处理厂排放法规会达到溪流水质目标吗?

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The Colorado Department of Public Health and Environment (CDPHE) proposed the in-stream numeric nutrient criteria as 2 mg TN per L and 0.16 mg TP per L for warm surface waters and 0.40 mg TN per L and 0.11 mg TP per L for cold surface waters. Consequently the department presented the nutrient limits for the municipal wastewater treatment plants (WWTPs) as annual averages of 0.7 mg TP per L and 5.7 mg TIN per L and quarterly averages of 1.0 mg TP per L and 9.0 mg TIN per L. Implementing stringent nutrient reduction at point sources is unlikely to result in improvements to the environment without non-point source controls. In this study, total nitrogen (TN) load inputs from known point source, WWTPs, and other non-point sources at six sub-basins of the Cache La Poudre (CLP) River Basin were estimated and compared under various hydrologic conditions. Significant loading exceedance from the proposed limits was observed during lower flow conditions and other sources dominated during events when the exceedance was observed except for one point. The point receives direct TN inputs from a WWTP which has the highest TN concentration in its effluent among all WWTPs in the study area; however, TN loads entered the point from other sources were significant during higher flow conditions. TN loads in the CLP River were simulated to determine whether the loads meet the proposed in-stream limits in a case in which all WWTPs comply with the proposed regulations for WWTPs. From this study, it was observed that reducing TN concentrations only at WWTPs merely impacts total TN loads in the river.
机译:科罗拉多州公共卫生与环境部(CDPHE)提出了流中数字营养标准:温暖的地表水为每升2毫克总氮和每升0.16毫克总磷,寒冷的表面为0.40毫克总氮和每升0.11毫克总磷水域。因此,该部门提出了市政废水处理厂(WWTP)的养分限量,即年平均每公升TP浓度为0.7毫克TP和每升TIN值为5.7毫克,季度平均每公升TP值为1.0毫克和每升TIN 9.0毫克。如果没有非点源控制,减少点源就不可能改善环境。在这项研究中,估算并比较了在各种水文条件下,Cache La Poudre(CLP)流域六个子流域的已知点源,WWTP和其他非点源的总氮(TN)负荷输入。在较低的流量条件下,观察到明显超出建议限值的负载,而在观测到超出限值的事件中,除一个点外,其他来源占主导地位。该点接收来自污水处理厂的直接TN输入,该污水处理厂的污水中TN浓度在研究区域的所有污水处理厂中最高;但是,在更高的流量条件下,TN负载是从其他来源进入该点的,这很重要。在所有污水处理厂都符合拟议的污水处理厂规定的情况下,对中电河中的总氮负荷进行了模拟,以确定负荷是否满足拟议的入流限制。从这项研究中,我们发现仅在污水处理厂处降低TN浓度仅会影响河流中的总TN负荷。

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