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Fouling evaluation for ultrafiltration of protein-based washwater: a resistance-in-series model approach

机译:蛋白质基洗涤水超滤的结垢评估:串联模型方法

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摘要

A comprehensive understanding of fouling mechanisms throughout the separation system process is crucial in designing a desired bio-separation system. In this research, we have adopted a resistance-in-series model to determine magnitude of four major resistances that govern in fouling mechanisms namely membrane hydraulic (Rm), adsorption (Rad), pore plugging (Rpp) and cake formation (Rc) resistances. The experiments were conducted using a tubular ultrafiltration Polyvinylidene (PVDF) membrane with surimi wash water as model protein-solution. Two main operating parameters of trans-membrane pressure (TMP) and cross-flow velocity (CFV) were chosen to study the effects of operating conditions towards fouling mechanisms evaluated using resistance-in-series model. The resistance magnitudes were in the following sequence: Rpp >Rad > Rc > Rm. The growth kinetics of each phase on resistances and the kinetic constants represent the extent of flux drop were quantified. Permeate obtained from the filtration process produced the clarified washwater with satisfactory quality physically and physico-chemically based water on national water quality standards
机译:对整个分离系统过程中结垢机理的全面理解对于设计所需的生物分离系统至关重要。在这项研究中,我们采用了串联电阻模型来确定在结垢机理中起主导作用的四个主要电阻的大小,即膜水力(Rm),吸附(Rad),孔堵塞(Rpp)和结块形成(Rc)电阻。使用管状超滤聚偏二乙烯(PVDF)膜和鱼糜洗涤水作为模型蛋白质溶液进行实验。选择跨膜压力(TMP)和横流速度(CFV)的两个主要操作参数来研究操作条件对使用串联电阻模型评估的结垢机理的影响。电阻值按以下顺序排列:Rpp> Rad> Rc> Rm。量化了各相在电阻上的生长动力学和代表通量下降程度的动力学常数。过滤过程中产生的渗透物产生的澄清洗涤水,其物理和物理化学水质均符合国家水质标准

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