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Fabrication of Bentonite–Silica Sand/Suspended Waste Palm Leaf Composite Membrane for Water Purification

机译:膨润土 - 二氧化硅砂/悬浮废棕榈叶复合膜的制备用于水净化

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摘要

In this study, a method for fabricating tubular ceramic membranes via extrusion using economical and locally available bentonite–silica sand and waste palm leaves was developed as a tool for conducting the necessary task of purifying water polluted with oil and suspended solid materials produced via various industrial processes. The developed tubular ceramic membranes were found to be highly efficient at separating the pollutants from water. The properties of the fabricated membrane were evaluated via mechanical testing, pore size distribution analysis, and contact angle measurements. The water contact angle of the fabricated membrane was determined to be 55.5°, which indicates that the membrane surface is hydrophilic, and the average pore size was found to be 66 nm. The membrane was found to demonstrate excellent corrosion resistance under acidic as well as basic conditions, with weight losses of less than 1% in each case. The membrane surface was found to be negatively charged and it could strongly repulse the negatively charged fine bentonite particles and oil droplets suspended in the water, thereby enabling facile purification through backwashing. The obtained ceramic membranes with desirable hydrophilic properties can thus serve as good candidates for use in ultrafiltration processes.
机译:在该研究中,开发了一种通过使用经济和局部可用的膨润土 - 二氧化硅砂和废棕榈叶通过挤出制造管状陶瓷膜的方法作为进行通过各种工业生产的油和悬浮的固体材料净化净化水的必要任务的工具流程。发现显影的管状陶瓷膜在将污染物与水中分离出高效。通过机械测试,孔径分布分析和接触角测量评估制造膜的性质。确定制造膜的水接触角为55.5°,表明膜表面是亲水的,并且发现平均孔径为66nm。发现膜在酸性和碱性条件下表现出优异的耐腐蚀性,每种情况下重量损失小于1%。发现膜表面是带负电的,并且它可以强烈地拒绝悬浮在水中的带负电荷的细膨润土颗粒和油滴,从而通过反洗它们纯化。因此,所获得的具有所需亲水性的陶瓷膜可以作为用于超滤过程的良好候选物。

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