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Development of a hybrid treatment system for combined sewer overflows using a hydrocyclone and a dissolved air flotation system

机译:使用旋流器和溶解气浮系统开发混合污水处理系统的混合处理系统

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Combined sewer overflows (CSOs) contain a mixture of untreated, contaminated sanitary, and storm water. CSOs include both precipitated and suspended matters. In this study, a novel system is proposed to treat CSOs using a combined hydrocyclone and dissolved air flotation (DAF) system for removal of both precipitated and suspended matter. The optimum operating conditions were determined by changing the internal flow rate and the split ratio (R-f) in the hydrocyclone and by changing the angle of the nozzle to determine the floc size, flow rate, and recycle ratio in the DAF system. The types of organic matter contained in prepared synthetic water samples are categorized as soluble CODcr (SCOD) and particulated CODcr (PCOD) in the characterization of the removal rate of the precipitated and suspended matter. The suspended solids (SS) were classified by their specific gravity to determine the removal rate of both precipitated and suspended matter. In a pretreatment process, the system employed a cationic polymer to obtain a low gradient time (G x t) value. The results showed that poly-aluminum chloride (PAC) used with the cationic polymer had a 9.2% higher turbidity removal rate than PAC alone, due to a stable floc being achieved in the hydrocyclone. The optimum operating conditions of the hydrocyclone showed the highest efficiency at R-f = 10% at a flow rate of 2.8 m/s; the DAF-treated solutions showed a higher removal rate for SCOD solutions vs. PCOD solutions, with the highest turbidity removal rate of 65%. In contrast, when the hydrocyclone-treated solutions had a higher PCOD than SCOD, they showed a higher removal efficiency. The removal rates of SS, CODcr, turbidity, T-P, and T-N of the total process were 77, 80, 98, 98, and 45%, respectively.
机译:下水道合并溢流(CSO)包含未经处理,受污染的卫生设施和雨水的混合物。公民社会组织包括沉淀物和悬浮物。在这项研究中,提出了一种新颖的系统,用于使用旋液分离器和溶解气浮(DAF)组合系统处理CSO,以去除沉淀物和悬浮物。最佳操作条件是通过改变水力旋流器的内部流速和分流比(R-f)以及通过改变喷嘴的角度来确定DAF系统中的絮凝物尺寸,流速和再循环比来确定的。制备的合成水样品中所含有机物的类型在表征沉淀和悬浮物的去除率方面分为可溶性CODcr(SCOD)和颗粒状CODcr(PCOD)。根据悬浮物的比重对悬浮物进行分类,以确定沉淀物和悬浮物的去除率。在预处理过程中,系统采用阳离子聚合物以获得低梯度时间(G x t)值。结果表明,与阳离子聚合物一起使用的聚氯化铝(PAC)比单独的PAC具有更高的9.2%的浊度去除率,这是因为在水力旋流器中可获得稳定的絮凝物。在2.8 m / s的流速下,水力旋流器的最佳运行条件在R-f = 10%时显示出最高的效率。 DAF处理过的溶液对SCOD溶液的去除率高于PCOD溶液,最高的浊度去除率为65%。相反,当水力旋流器处理的溶液的PCOD值高于SCOD时,它们的去除效率更高。整个过程中SS,CODcr,浊度,T-P和T-N的去除率分别为77%,80%,98%,98%和45%。

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