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Tangential flow microfiltration of gasification power plant effluent using inorganic membrane

机译:无机膜法对气化发电厂废水进行切向流微滤

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摘要

In the present paper, treatment of gasification power plant effluent from gas scrubber was carried out using micro-porous alumina membrane tubes consisting of different channels (1 and 7) under simulated process conditions of temperature (45 – 55°C) and at varying transmembrane pressure drop (0.2 – 2 bar). The effect of membrane geometry on the membrane separation characteristics and fouling behavior was studied. The experimental results show that the flux decreases significantly during the first few minutes (10 min) of filtration which then stabilized with time. The decreased flux corresponds nearly to 40 %. This behavior can be attributed to the classical dependence of flux on the time in microfiltration, which shows development of a relatively important fouling layer on the membrane surface. The characteristics of the effluent after filtration displayed a very important decrease of turbidity (95%), COD (50 %), total dissolved solids (10%), total solids (55%). The total suspended solids are reduced by almost 100% and the pH remained unchanged (in the field of neutrality) during the process. The effect of various resistances that are acting in series was calculated using Darcy’s Law. These experimental results indicated that different filtration laws could be applied simultaneously for the description of the filtration data, which were found during cross-flow microfiltration of gasification power plant effluent.
机译:在本文中,使用微孔氧化铝膜管(由不同的通道(1和7)组成)在模拟的温度(45到55°C)工艺条件和温度下,对气体洗涤器的气化发电厂废水进行处理。跨膜压降变化(0.2 – 2 bar)。研究了膜几何形状对膜分离特性和结垢行为的影响。实验结果表明,通量在过滤的最初几分钟(10分钟)内显着下降,然后随时间稳定下来。降低的通量几乎相当于40%。此行为可归因于微滤中通量对时间的经典依赖性,这表明在膜表面上形成了一个相对重要的污垢层。过滤后流出物的特性显示出浊度(95%),COD(50%),总溶解固体(10%),总固体(55%)的降低非常重要。在此过程中,总悬浮固体减少了近100%,pH值保持不变(在中性领域)。使用达西定律计算了串联作用的各种电阻的影响。这些实验结果表明,可以在气化发电厂废水的错流微滤过程中同时使用不同的过滤规律来描述过滤数据。

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