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首页> 外文期刊>Journal of environmental sciences >Characterization of cake layer structure on the microfiltration membrane permeability by iron pre-coagulation
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Characterization of cake layer structure on the microfiltration membrane permeability by iron pre-coagulation

机译:铁预凝析滤饼层结构对微滤膜渗透性的影响

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摘要

A cake layer is formed by coagulation aggregates under certain transmembrane pressure in the coagulation-microfiltration (MF) process. The characteristics of humic acid aggregates coagulated by different iron-based coagulants, such as charge, size, fractal dimension and compressibility, have an effect on the cake layer structure. At the optimum iron dose of 0.6 to 0.8 mmol/L for ferric chloride (FC) and polymer ferric sulfate (PFS) pre-coagulation, at the point of charge neutralization for near zero zeta potential, the aggregate particles produced possess the greatest size and highest fractal dimension, which contributes to the cake layer being most loose with high porosity and low compressibility. Thus the membrane filterability is better. At a low or high iron dose of FC and PFS, a high negative or positive zeta potential with high charge repulsion results in so many small aggregate particles and low fractal dimension that the cake layer is compact with low porosity and high compressibility. Therefore the membrane fouling is accelerated and MF permeability becomes worse. The variation of cake layer structure as measured by scanning electric microscopy corresponds with the fact that the smaller the coagulation flocs size and fractal dimension are, the lower the porosity and the tighter the cake layer conformation. This also explains the MF membrane flux variation visually and accurately.
机译:在凝结-微滤(MF)过程中,凝结物在一定的跨膜压力下凝结形成饼层。由不同铁基凝结剂凝结的腐殖酸聚集体的特性,例如电荷,尺寸,分形维数和可压缩性,对饼层结构有影响。对于氯化铁(FC)和聚合物硫酸铁(PFS)的预凝结,在0.6至0.8 mmol / L的最佳铁剂量下,在电荷中和点的零ζ电位附近,所产生的聚集颗粒具有最大的尺寸和最大的分形维数,这导致滤饼层最松散,且具有高孔隙率和低可压缩性。因此,膜的过滤性更好。在低铁剂量或高铁剂量的FC和PFS时,具有高电荷排斥力的高负电动势或正电动电势会导致聚集体颗粒小,分形维数小,从而使滤饼层致密,低孔隙率和高可压缩性。因此,加速了膜的结垢,并且MF渗透性变差。通过扫描电镜测量的滤饼层结构的变化与以下事实相对应:凝固絮凝物的尺寸和分形维数越小,孔隙率越低并且滤饼层的构造越紧密。这也从视觉和准确性上解释了MF膜通量的变化。

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