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首页> 外文期刊>Water Science and Technology >Factors causing PAC cake fouling in PAC-MF (powdered activated carbon-microfiltration) water treatment systems
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Factors causing PAC cake fouling in PAC-MF (powdered activated carbon-microfiltration) water treatment systems

机译:PAC-MF(粉状活性炭微滤)水处理系统中造成PAC结垢的因素

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Two pilot-scale powdered activated carbon-microfiltration (PAC-MF) reactors were operated using river water pretreated by a biofilter. A high permeate flux (4 m/d) was maintained in two reactors with different particle sizes of PAC. High concentration (20 g/L) in the PAC adsorption zone demonstrated 60-80% of organic removal rates. Analysis on the PAC cake fouling demonstrated that attached metal ions play more important role than organic matter attached on PAC to the increase of PAC cake resistance. Effects of factors which may cause PAC cake fouling in PAC-MF process were investigated and evaluated by batch experiments, further revealing that small particulates and metal ions in raw water impose prominent influence on the PAC cake layer formation. Fe (11) precipitates after being oxidized to Fe (111) during PAC adsorption and thus Fe(Ill) colloids display more significant effect than other metal ions. At a high flux, PAC cake layer demonstrated a higher resistance with larger PAC due to association among colloids, metals and PAC particles, and easy migration of small particles in raw water into the void space in the PAC cake layer. Larger PAC possesses much more non-uniform particle size distribution and larger void space, making it easier for small colloids to migrate into the voids and for metal ions to associate with PAC particles by bridge effect, hence speeding up and intensifying the of PAC cake fouling on membrane surface.
机译:两个中试规模的粉状活性炭微滤(PAC-MF)反应器使用经过生物滤池预处理的河水运行。在两个具有不同粒径PAC的反应器中保持了高渗透通量(4 m / d)。 PAC吸附区中的高浓度(20 g / L)表现出60-80%的有机去除率。对PAC滤饼结垢的分析表明,附着的金属离子比PAC上附着的有机物对PAC滤饼的抵抗力起着更重要的作用。通过分批实验研究和评估了可能导致PAC-MF工艺中PAC滤饼结垢的因素的影响,进一步揭示了原水中的小颗粒和金属离子对PAC滤饼层的形成有显着影响。 Fe(11)在PAC吸附过程中被氧化成Fe(111)后沉淀,因此Fe(III)胶体显示出比其他金属离子更重要的作用。在高通量下,由于胶体,金属和PAC颗粒之间的结合以及原水中的小颗粒易于迁移到PAC蛋糕层的空隙中,PAC蛋糕层在较大的PAC中表现出较高的电阻。较大的PAC具有更多的不均匀粒径分布和较大的空隙空间,这使得较小的胶体更容易迁移到空隙中,并且金属离子更容易通过桥效应与PAC颗粒缔合,因此加快并加剧了PAC滤饼结垢在膜表面上。

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