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Research on the fast start-up of Anaerobic-Aerobic-Anoxic-Aerobic Sequencing Batch Reactor

机译:厌氧 - 有氧缺氧 - 有氧序分批反应器快速启动研究

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The paper aims to study the fast start-up of anaerobic-aerobic-anoxic-aerobic sequencing batch reactor, with domestic sewage as treating object, to solve the problem of SBR that can be used for denitrification or dephosphorization independently and to realize simultaneous nitrogen and phosphorus removal in a single SBR system. Phosphorus accumulating organisms were enriched at the anaerobic condition for 2h/aerobic for 3h after activated sludge were inoculated. Then denitrifying polyphosphate-accumulating organisms were enriched by inserting an anoxic phase into the aerobic phase. The lengths of anaerobic time, anoxic time and aerobic time were adjusted and the nitrogen and phosphorus removal effect of (AO)_2SBR system were observed. The (AO)_2SBR system was started successfully with 80d of training and domesticating. The nitrogen and phosphorus removal effect was performed preferably at the condition of anaerobic(2h)-aerobic(1.5h)-anoxic(1.5h)-aerobic(0.5h). The removal rate of COD, NH_4~+-N, TN and TP reached 90%, 97%, 88% and 92% respectively. And 33% of energy was saved when aerobic time was shortened from 3h to 2h, while the treating effect dropped off rarely. The results show that (AO)_2SBR is applicable for simultaneous nitrogen and phosphorus removal, and the effluent water quality meets the first level B criteria specified in Discharge Standard of Pollutants for Municipal Wastewater Treatment Plant(GB 18918-2002). The system can also reach the aim of saving energy and providing theoretical basis for the nitrogen and phosphorus removal in single SBR systems.
机译:本文旨在研究厌氧 - 有氧缺氧 - 有氧序列排序分批反应器的快速启动,用国内污水作为处理对象,解决可用于独立的脱氮或脱磷的SBR的问题,并实现同时氮气和脱氮单个SBR系统中的磷去除。在接种活性污泥后,在厌氧条件下富含磷累积生物的厌氧条件为2H /好氧3小时。然后通过将缺氧相插入有氧相中来富含多磷酸蓄能生物体。调节厌氧时间,缺氧时间和有氧时间的长度,观察到(AO)_2SBR系统的氮和磷去除效果。 (AO)_2SBR系统已成功启动80D培训和驯化。氮和磷去除效果优选在厌氧(2H) - 皂(1.5H) - 氧基(1.5H)的条件下进行 - 血管(0.5h)。 COD,NH_4〜+ -NN,TN和TP的去除率分别达到90%,97%,88%和92%。当有氧时间从3小时缩短到2小时时,节省了33%的能量,而治疗效果很少掉落。结果表明(AO)_2SBR适用于同时氮和磷去除,流出水质符合市政废水处理厂污染物排放标准规定的第一级B标准(GB 18918-2002)。该系统还可以达到节能能量并为单个SBR系统中的氮和磷去除提供理论依据。

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