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Performance of a coupling device combined energy-efficient rotating biological contactors with anoxic filter for low-strength rural wastewater treatment

机译:高效旋转生物接触器与缺氧过滤器结合的耦合装置的低强度农村污水处理性能

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In order to meet the requirements of decentralized sewage treatment in rural China, a source-sorted treating method was proposed, including a black water pre-treating anaerobic baffled reactor (ABR), an anoxic filter (ANF), a novel multi-stair waterwheel driving rotating biological contactors (ms-wdRBCs) and constructed wetlands (CW). The ms-wdRBCs were utilized to post-treat mixture of digested black water and raw grey water with the ANF. Key parameters of ANF/ms-wdRBCS were identified founded on the nutrient removal performance, especially nitrogen removal, for further application in the project. Besides, the ANF/ms-wdRBCs coupling device was operated 10 weeks at the optimum parameters to confirm its performance on contamination removal. The coupling device performed well on chemical oxygen demand (COD), total nitrogen (TN), and ammonia (NH4-+) removal. When running under 150% reflux ratio, 1 h HRT of each-stair wdRBC and 7.11 h HRT of ANF, the removal efficiency of COD, TN, NIH4-+ and total phosphorus (RTP) were 88.40 +/- 2.16%, 52.33 +/- 3.80%, 88.14 +/- 2.30% and 34.11 +/- 7.00%, respectively. The NH4-+/NO3-- concentration ratio of effluent was approximately 3 which was certificated to be beneficial to plants growth in CW. Although the removal efficiency of TP was only 34.11 +/- 7.00%, the phosphorus was partly retained to contribute to plants growth in CWs. Overall, the entire four-part system achieved outstanding pollutant removal efficiencies, while the selected plants in CW also gained benefits back. Low construction and operating cost, simple management and easy maintenance of the system ensure the application in rural areas. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了满足中国农村分散式污水处理的要求,提出了一种源头分类的处理方法,包括黑水预处理厌氧折流板反应器(ABR),缺氧过滤器(ANF),新型多级水车驱动旋转的生物接触器(ms-wdRBCs)和人工湿地(CW)。 ms-wdRBC用于利用ANF对消化的黑水和原灰水的混合物进行后处理。根据养分去除性能,尤其是氮的去除,确定了ANF / ms-wdRBCS的关键参数,以便在项目中进一步应用。此外,ANF / ms-wdRBCs耦合装置在最佳参数下运行了10周,以确认其在去除污染物方面的性能。该耦合装置在化学需氧量(COD),总氮(TN)和氨(NH4- +)去除方面表现良好。在150%回流比,每级wdRBC的HRT 1小时和ANF的7.11 h HRT下运行时,COD,TN,NIH4- +和总磷(RTP)的去除效率为88.40 +/- 2.16%,52.33 + -分别为3.80%,88.14 +/- 2.30%和34.11 +/- 7.00%。废水中NH4-+ / NO3--的浓度比约为3,这被证明对CW中的植物生长有利。尽管TP的去除效率仅为34.11 +/- 7.00%,但磷被部分保留,有助于植物在连续水中生长。总体而言,整个四部分系统实现了出色的污染物去除效率,而在CW选定的工厂也获得了收益。该系统的建设和运营成本低,管理简单,易于维护,确保了在农村地区的应用。 (C)2018 Elsevier Ltd.保留所有权利。

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