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Membrane application to water purification process in Japan - development of hybrid membrane system

机译:膜在日本净水工艺中的应用-混合膜系统的开发

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This paper deals with two recent developments made by the authors about the hybrid membrane systems applicable to the water purification. The performance of a hybrid MF membrane system with circulating powdered activated carbon and condensed sludge has been studied using a pilot plant. The powdered activated carbon was intermittently dosed to the system for adsorbing mainly the humic substances. Manganese ions and ammonia nitrogen were biologically oxidized by the iron-oxidizing bacteria and ammonia oxidizing bacteria inhibiting the condensed sludge. In the hybrid MF membrane system, decreasing rate of the permeability was much less than that of a conventional MF membrane process. This may result from the reduced organic loading to the membrane due to the adsorption of humic substances onto the powdered activated carbons. A novel UF membrane process was also developed, where the nitrifying bacteria are fixed on the surface of the rotating disk membranes. With this membrane process. the simultaneous performance of the strict solid-liquid separation and the biological ammonia oxidation are possible. In order to increase the washing efficiency, a small quantity of the sponge particles were introduced into the membrane chamber and then the disk rotational speed was increased. This membrane washing method using sponge particles was so effective that the filtration resistance due to the accumulated cake was completely cancelled. [References: 8]
机译:本文探讨了作者关于适用于水净化的混合膜系统的两个最新进展。使用中试装置研究了具有循环粉末活性炭和冷凝污泥的混合MF膜系统的性能。将粉末状的活性炭间歇地添加到系统中,以主要吸附腐殖质。锰离子和氨氮被铁氧化细菌和氨氧化细菌生物氧化,从而抑制了冷凝污泥。在混合MF膜系统中,渗透率的降低速率远小于常规MF膜工艺。这可能是由于腐殖质在粉末状活性炭上的吸附而减少了对膜的有机负荷。还开发了一种新的超滤膜工艺,其中硝化细菌固定在转盘膜的表面上。用这种膜工艺。可以同时进行严格的固液分离和生物氨氧化。为了提高洗涤效率,将少量的海绵颗粒引入到膜室中,然后提高盘的旋转速度。这种使用海绵颗粒的膜洗涤方法非常有效,以至于完全消除了由于堆积的滤饼引起的过滤阻力。 [参考:8]

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