Synthesis and Characterization of Chitosan-Silica Membranes for Treating Hotel Wastewater Treatment as Affected by Mass of Poly Ethylene Glycol and Poly Vinyl Alcohol

J. A. Pinem, Dessy Natalia Indah Panjaitan, M. R. Siregar, E. Saputra, S. Herman
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引用次数: 3

Abstract

Chitosan-Silica blended membranes were an attractive choice for the purification process because their porous size and morphology provide higher selectivity. In this study, the synthesis and characterization of chitosan-silica membranes were carried out with a mass variation of Poly Ethylene Glycol (PEG): 0,5; 2,5; 5 grams, Poly Vinyl Alcohol (PVA): 1, 2, 3 grams; and pressure 1, 2, 3 bars for the hotel wastewater treatment. The purpose of this study was to determine the characterization of chitosan-silica membranes obtained by SEM and tensile strength, and to determine the performance of membrane against the flux and rejection test with the effect of a mixture of PEG and PVA mass using raw materials in form of chitosan-silica. Tensile strength analysis showed that membrane with the highest tensile strength was 19,14 Mpa for PEG and 13,7 Mpa for PVA. The SEM test results showed a relatively small pore size of PEG 0,5 gram (0,061 ?m) and PVA 2 grams (0,0284 ?m). Flux and rejection results showed that membrane with 2,5 grams composition of PEG was the most effective in performance with the flux 18,19 L/m2.h and rejection elimination of BOD (50,76%), COD (46,09%) and TSS (48,00%). On the other hand, flux results showed that membrane with 3 grams composition of PVA was the most effective with the flux 20,13 L/m2.h and rejection elimination of BOD (62,84%), COD (64,73%) and TSS (38,40%). The characteristics of permeability, selectivity, and membrane pore statistics show that the silica membrane is an ultrafiltration membrane.
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聚乙二醇和聚乙烯醇质量影响下壳聚糖-二氧化硅膜处理酒店废水的合成与表征
壳聚糖-二氧化硅混合膜是一种有吸引力的净化工艺选择,因为它们的多孔尺寸和形态提供了更高的选择性。本研究对壳聚糖-二氧化硅膜进行了合成和表征,聚乙二醇(PEG)的质量变化为:0,5;2、5;5克,聚乙烯醇(PVA): 1、2、3克;并加压1、2、3巴用于酒店废水处理。本研究的目的是确定壳聚糖-二氧化硅膜的SEM表征和拉伸强度,并确定膜在以壳聚糖-二氧化硅为原料的PEG和PVA质量混合物的影响下的通量和排斥试验中的性能。拉伸强度分析表明,PEG和PVA的拉伸强度分别为19.14 Mpa和13.7 Mpa。SEM测试结果显示,相对较小的孔径为PEG 0.5 g (0,061 μ m)和PVA 2 g (0,0284 μ m)。通量和截留结果表明,含2,5 g PEG的膜的截留通量为18,19 L/m2.h,截留去除BOD(50.76%)、COD(46.09%)和TSS(48.00%)的效果最好。另一方面,通量结果表明,PVA组分为3 g的膜最有效,通量为20,13 L/m2.h,对BOD(62,84%)、COD(64,73%)和TSS(38,40%)的去除率最高。渗透性、选择性和膜孔统计特性表明,该二氧化硅膜是一种超滤膜。
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