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Addition of activated carbon to batch activated sludge reactors in the treatment of landfill leachate and domestic wastewater

机译:在间歇式活性污泥反应器中添加活性炭,以处理垃圾渗滤液和生活污水

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摘要

Leachate from a municipal landfill was combined with domestic wastewater and was treated in batch activated sludge systems. The effectiveness and applicability of the addition of Powdered Activated Carbon (PAC) to activated sludge reactors was investigated. Isotherm tests were carried out with PAC in order to estimate the extent of adsorption of organic matter onto PAC. Then, in activated sludge reactors COD (Chemical Oxygen Demand) removal and nitrification were studied both in the absence and presence of PAC for comparison purposes. In both cases, Oxygen Uptake Rates (OUR) were measured with respect to time in order to investigate substrate removal and change in microbial activity. Addition of PAC to activated sludge increased COD removal by removing mainly the non-biodegradable fraction in leachate. The COD decreases in batch reactors were best expressed by a first-order kinetic model that incorporated this non-biodegradable leachate fraction. With added PAC, nitrification was also enhanced. But in all of the batch runs a significant accumulation of NO_2-Ntook place, indicating that the second step of nitrification was still inhibited.
机译:将市政垃圾填埋场的渗滤液与生活污水混合,并在间歇式活性污泥系统中进行处理。研究了向活性污泥反应器中添加粉状活性炭(PAC)的有效性和适用性。为了估计有机物在PAC上的吸附程度,用PAC进行了等温线测试。然后,在活性污泥反应器中,在有无PAC的情况下都研究了COD(化学需氧量)的去除和硝化作用,以进行比较。在这两种情况下,都针对时间测量氧气吸收率(OUR),以研究底物去除和微生物活性的变化。通过主要去除渗滤液中不可生物降解的部分,在活性污泥中添加PAC可提高COD去除率。分批反应器中COD的降低最好通过结合了这种不可生物降解的渗滤液部分的一级动力学模型来表示。通过添加PAC,硝化作用也得到增强。但是在所有批次中,NO_2-Ntook位置都大量积聚,表明硝化的第二步仍然受到抑制。

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