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Application of sequencing batch membrane bioreactors (SB-MBR) for the treatment of municipal wastewater

机译:顺序膜生物反应器(SB-MBR)在城市污水处理中的应用

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Sequencing batch membrane bioreactors can be a good option in up-grading small municipal plant and for industrial applications, maintaining some of the advantages of both original technologies (effluent quality improvement, flexibility and simplicity of realization, operation and control). In this study, the effects of volumetric exchange ratio (VER) and aeration/filtration strategy have been evaluated. Moreover, with the adoption of cycles shorter than 8 h, the opportunity of further simplification of the membrane operation has been tested by choosing a continuous filtration mode instead of the usual short cycle of permeation/relaxation. Two lab-scales MBR equipped with Zenon hollow fiber modules were fed on real primary effluent. For all tests, hydraulic retention time of 10 h and sludge retention time of 60 days have been adopted. Different cycles have been investigated, lasting between 1 and 8 h and all comprising an anoxic phase to allow for denitrification. Operation at low VER resulted in better effluent quality with no limitations to the denitrification phase. For VER >33% a pre-aeration step was required before effluent withdrawal for optimal ammonium removal. Moreover, VER appeared to have limited negative effect on sludge concentration and yield, while the membrane cleaning frequency slightly increased for increasing VER.
机译:排序批量膜生物反应器可能是升级小型市政工厂和工业应用的不错选择,同时保留了两种原始技术的某些优势(废水质量的提高,实现,操作和控制的灵活性和简便性)。在这项研究中,已评估了体积交换比(VER)和曝气/过滤策略的影响。此外,采用少于8小时的循环,通过选择连续过滤模式而不是通常的短时间渗透/松弛循环,已经测试了进一步简化膜操作的机会。将两个配备了Zenon中空纤维模块的实验室规模的MBR送入实际的主要废水中。对于所有测试,均采用了10小时的水力停留时间和60天的污泥停留时间。已经研究了不同的循环,持续了1至8小时,并且都包含一个缺氧相以进行反硝化。在低VER下运行可提高出水水质,而不会限制反硝化阶段。对于VER> 33%,需要进行预曝气步骤,然后才能排出废水以最佳去除铵。此外,VER对污泥浓度和产量的负面影响似乎有限,而膜清洁频率随VER的增加而略有增加。

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