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Seasonal Performance of Sequencing Batch Biofilm Reactors and Ecosystem Sewage Treatment Hybrid Processes in Small Towns of the Three Gorges Reservoir Area in China

机译:三峡库区小城镇排序生物膜反应器与生态系统污水处理混合工艺的季节性性能。

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This study aimed to address the problems of small towns, e.g. low economy, undeveloped technology and management level, and fluctuant water quality and water quantity. To develop an efficient low-cost small-town sewage treatment technology, the integration of sequencing batch type bioreactor/ecosystem hybrid treatment process was chosen. In this experiment, the bioreactor unit of the process included a sequencing batch biofilm reactor (SBBR), while the ecosystem unit applied a sequencing constructed wetland (SCW) based on a polyurethane foam filler in a matrix. By changing the operation model, tests were carried out to find the key parameters of the optimal operation model for the sequencing batch type bioreactor/ecosystem hybrid treatment process in different seasons. The experiment was conducted throughout a year of operation after setup. The results showed that when the bio- and ecosystem reactors ran together in combination at a temperature of 15 ???°C ?¢???? 25 ???°C in spring and autumn, The final effluent chemical oxygen demand (COD), ammonium nitrogen (NH 4 + -N), and total nitrogen (TN) concentrations of the hybrid reactors were 48 mg/L, 7 mg/L, and 16 mg/L, respectively, with a corresponding total removal efficiencies of 86%, 89%, and 79%. When the ecosystem reactors ran independently in the temperature range of 25 ???°C ?¢???? 35 ???°C in the summer, the effluent COD, NH 4 + -N, and TN concentrations were 47 mg/L, 7.3 mg/L, and 17.3 mg/L respectively, with a corresponding total removal rate of 84%, 87%, and 74%. The bioreactors and ecosystem reactors ran together in combination at 5 ???°C ?¢???? 15 ???°C in the winter and the final COD, NH 4 + -N, and TN concentrations of the hybrid reactors effluent were, respectively, 54 mg/L, 11 mg/L, and 18 mg/L, with a corresponding total removal of 86%, 84%, and 76%. The research developed an integration of sequencing batch type bioreactor/ecosystem hybrid treatment process with important realistic significance and practical value. The designed operation models are able to be used in guiding practical engineering.
机译:这项研究旨在解决小城镇的问题,例如经济低迷,技术和管理水平落后,水质和水量波动。为了开发一种高效的低成本小镇污水处理技术,选择了测序分批式生物反应器/生态系统混合处理工艺的集成。在该实验中,该过程的生物反应器单元包括一个测序间歇式生物膜反应器(SBBR),而生态系统单元则在基质中应用了基于聚氨酯泡沫填料的测序人工湿地(SCW)。通过改变操作模型,进行了测试,以找出不同季节的测序批量型生物反应器/生态系统混合处理过程的最佳操作模型的关键参数。该实验在设置后的整个操作过程中进行了一年。结果表明,当生物反应器和生态系统反应器在温度为15℃共同运行时。春季和秋季为25℃,混合反应器的最终出水化学需氧量(COD),铵态氮(NH 4 + -N)和总氮(TN)浓度分别为48 mg / L,7 mg / L和16 mg / L,分别具有86%,89%和79%的总去除效率。当生态系统反应器在25°C的温度范围内独立运行时。夏季温度为35℃时,废水的COD,NH 4 + -N和TN浓度分别为47 mg / L,7.3 mg / L和17.3 mg / L,相应的总去除率为84% ,87%和74%。生物反应器和生态系统反应器在5℃共同运行。冬季温度为15℃,混合反应器出水的最终COD,NH 4 + -N和TN浓度分别为54 mg / L,11 mg / L和18 mg / L,相应的总清除率分别为86%,84%和76%。该研究开发了测序分批式生物反应器/生态系统混合处理工艺的集成,具有重要的现实意义和实用价值。设计的操作模型可用于指导实际工程。

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