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Characterization and reduction of membrane fouling during nanofiltration of semiconductor indium phosphide (InP) wastewater

机译:半导体磷化铟(InP)废水纳米过滤过程中膜污染的表征和减少

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This paper focused on the investigation of colloidal fouling of nanofiltration (NF) membranes during the application of such a NF process to the treatment of a new type of semiconductor indium phosphide (InP) wastewater. The permeate flux behaviors of two types of NF membranes indicated that the densely structured ES10 membrane had a higher permeate flux than that of the loosely structured NTR7450 membrane. Investigation of their membrane surface morphology using atomic force rnicroscopy (AFM) revealed that it could be due to the different surface roughness of the two membranes. The rough membrane surface had a larger effective membrane area than that of the smooth membrane surface. Permeate flux reduction due to deposition of InP particles at the membrane surface was found mainly reversible; however, the dissolved indium solids may interact with the NF membrane surface and cause irreversible fouling. The scanning electron microscope (SEM) images confirmed that there existed two different fouling layers at the membrane surface. Increased total suspended solids (TSS) concentration of InP particles in the wastewater had a negative impact on permeate flux, while particle size distribution (PSD) changes showed an insignificant impact on initial membrane fouling. The understanding of the fouling mechanisms in this NF process provides a better insight of engineering controls of the wastewater recycling system. (c) 2005 Elsevier B.V. All rights reserved.
机译:本文重点研究了在将此类NF工艺应用于新型半导体磷化铟(InP)废水处理过程中,纳滤(NF)膜的胶体结垢的研究。两种NF膜的渗透通量行为表明,致密结构的ES10膜的渗透通量高于松散结构的NTR7450膜。使用原子力显微镜(AFM)研究其膜表面形态表明,这可能是由于两种膜的表面粗糙度不同所致。粗糙的膜表面具有比光滑的膜表面更大的有效膜面积。发现由于InP颗粒在膜表面的沉积而导致的渗透通量减少主要是可逆的。但是,溶解的铟固体可能会与NF膜表面相互作用,并导致不可逆的结垢。扫描电子显微镜(SEM)图像证实在膜表面存在两个不同的结垢层。废水中InP颗粒的总悬浮固体(TSS)浓度增加对渗透通量有负面影响,而粒径分布(PSD)的变化表明对初始膜结垢的影响很小。对这种NF过程中结垢机理的理解为废水回收系统的工程控制提供了更好的见解。 (c)2005 Elsevier B.V.保留所有权利。

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