首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >A new membrane bioreactor generation for wastewater treatment application: Strategy of membrane aeration management by sequencing aeration cycles
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A new membrane bioreactor generation for wastewater treatment application: Strategy of membrane aeration management by sequencing aeration cycles

机译:新一代膜生物反应器用于废水处理:通过顺序曝气循环进行膜曝气管理策略

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Polymem is developing in the past few years a new membrane bioreactor concept using external module membranes. The membranes are hollow fibers. They are housed in carters and work in outside/in filtration mode. Permanent air scouring is provided at the bottom of the module to control the accumulation of sludge on the membrane surface. In other words, the membrane carters look like bubble columns with hollow fiber membranes inside. The main advantages of this concept are the easy maintenance of the external modules; the total independence of the bioreactor from the membrane filtration part, which facilitates plant retrofitting and upgrading; the high membrane compacity (up to 50Q m~2/m~3), and better efficiency of membrane air scouring thanks to a dedicated coarse bubbles aeration system inside the module vessel. The first part of this paper deals with the quantification of the specific aeration demand of the system. Aeration demand was compared to conventional MBR systems. The study shows that with this optimised geometry of module concept, the aeration flow rate is lowered compared with conventional processes. In the second part of this paper, an optimisation of the aeration demand was carried out by sequencing the cycle of aeration by incorporating a syncope in the aeration. Ratios of the time-on and time-off from 1/2 to 1/5 were tested for various instantaneous aeration flow rates. Impacts on both short term fouling and long term fouling were evaluated and quantified in terms of permeability decrease. The advantages of the location of the membrane in an external cylindrical carter have been demonstrated in terms of operating cost savings with a reduction of specific aeration demand for membranes scouring at 100 to 250 Nl/h m2, which is half the classical consumption of the submerged MBR today,
机译:在过去的几年中,Polymem正在开发一种使用外部模块膜的新型膜生物反应器概念。膜是中空纤维。它们安置在卡特车中,并以外部/过滤模式工作。在模块底部提供永久性的空气洗涤,以控制污泥在膜表面上的积聚。换句话说,膜卡特尔看起来像是带有空心纤维膜的气泡柱。该概念的主要优点是易于维护外部模块;生物反应器与膜过滤部分完全独立,这有助于植物的改造和升级;由于模块容器内有专用的粗气泡曝气系统,因此具有很高的膜适应性(高达50Q m〜2 / m〜3),并且膜空气净化效率更高。本文的第一部分涉及系统特定通气需求的量化。将曝气需求与常规MBR系统进行了比较。研究表明,采用这种优化的模块概念几何形状,与传统工艺相比,曝气流速降低了。在本文的第二部分中,通过在充气中引入晕厥来对充气循环进行排序,从而优化了充气需求。测试了各种瞬时曝气流速下1/2到1/5的开/关时间比。评估了对短期污染和长期污染的影响,并根据渗透率的降低进行了量化。膜片在外部圆柱状卡特机中的优势已在节省运营成本方面得到了证明,同时减少了对100到250 Nl / h m2的膜片精练的比曝气需求,这是浸入水中的经典消耗量的一半今天的MBR

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