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Titlebook: Membrane Technology Enhancement for Environmental Protection and Sustainable Industrial Growth; Zhien Zhang,Wenxiang Zhang,Mohamed Mehdi C

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Current Strategies for the Design of Anti-fouling Ion-Exchange Membranes, different degrees of fouling problems from cation-exchange membrane (CEM) to anion-exchange membrane (AEM), which significantly impedes the efficient application of this membrane technology. Preparing anti-fouling membranes is a fundamental strategy to deal with pervasive fouling problems from a va
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Aging and Degradation of Ion-Exchange Membranes,terials have been continuously proposed. Nevertheless, there are yet few studies on the mechanism of the aging and degradation of IEM materials during long-term use, which severely limits the further application of ion-exchange membranes. This paper reviews the existing research on the aging and deg
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Hydrocarbon Separation and Removal Using Membranes,tarted from produced water (PW) which later continued to petrochemical refinery wastewater for natural gas, and other chemicals recovery has been enhanced throughout the years. Generally, the applications of using membrane technologies such as the use of microfiltration (MF), ultrafiltration (UF), f
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Advanced Membrane Technology for Textile Wastewater Treatment,onal and current treatment processes devoted in the textile wastewater treatment are discussed thoroughly throughout this chapter. Additionally, the main converge of this chapter is the application of the advanced membranes on textile industries namely reverse osmosis, nanofiltration, ultrafiltratio
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Membrane-Permeation Modeling for Carbon Capture from CO2-Rich Natural Gas,-pressure. The first topic presents a steady-state, phenomenological, and one-dimensional distributed membrane-permeation simulation model—SPM2010—which was developed in MATLAB 2010 for rigorous simulation of CO. removal and natural gas purification flowsheets using membrane-permeation batteries ope
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