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EVALUATION OF THE FACTORS THAT IMPACT SUCCESSFUL MEMBRANE BIOLOGICAL REACTOR OPERATIONS AT HIGH SOLIDS CONCENTRATION

机译:评估在高固体浓度下影响成功膜生物反应器作用的因素

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The use of Membrane Bioreactors in wastewater systems is rapidly growing, driven largely by significant advantages such as smaller footprint, lower sludge yield, good effluent quality and enhanced Nutrient removal that their deployment brings to wastewater treatment operations. Although these systems can theoretically be operated at solids concentrations as high as 30-40 g/L MLSS, in practice, they are operated at solids concentrations of about 8-12 g/L due mainly to the alpha factor constraint as well as the increased potential for fouling at higher solids concentrations. In this paper, we systematically evaluate these constraints and demonstrate that the application of innovative concepts and technologies can provide a means for overcoming the alpha factor and the fouling challenges that currently limit the optimal operation of MBR systems.
机译:在废水系统中使用膜生物反应器正在迅速生长,主要是通过较小的占地面积,较低的污泥产量,良好的流出质量和增强的营养去除,使其部署带来污水处理操作的显着优势。尽管这些系统理论上可以以高达30-40g / L MLS的固体浓度操作,但在实践中,它们以大约8-12g / L的固体浓度为主要是α因子约束以及增加而运行。较高固体浓度污染的可能性。在本文中,我们系统地评估了这些约束,并证明了创新概念和技术的应用可以提供克服α因素的手段以及目前限制MBR系统的最佳运行的污垢挑战。

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