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Effect of Chitosan’s Degree of Deacetylation on the Performance of PES Membrane Infused with Chitosan during AMD Treatment

机译:壳聚糖脱乙酰化对壳聚糖在AMD治疗过程中脱氧液膜性能的影响

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摘要

Acid mine drainage is an environmental problem associated with mining operations and activities. Its treatment is essential to achieving environmental sustainability. In this study, a polyethersulphone (PES) membrane infused with chitosan is proposed as a point-of-use material for treating acid mine drainage (AMD). The composite material explored the synergetic effect between chitosan and polymer, particularly considering the effect of the degree of deacetylation (DD) of chitosan on the performance of membrane. Chitosan was produced from chitin under various synthesis process conditions and infused within polyethersulphone membrane. The results obtained show that chitosan with the highest degree of deacetylation was achieved with a temperature of 100 °C and NaOH concentration of 40 wt%. Increasing the temperature above 100 °C started degrading already formed or exposed amine groups, thus, reducing the DD of the chitosan sample. The contact angle and porosity analysis indicated that the hydrophilic nature of the membrane was enhanced with increasing DD of the chitosan. The performance of the membranes was conducted on a Dead-end filtration cell using synthetic acid mine drainage. The results showed that the flux and rejection of the membrane was enhanced with increasing degree of deacetylation. PES 5 and PES 1 were blended with chitosan having the highest (95.97%) and lowest (33.93%) degree of deacetylation, respectively. PES 5 reported pure water flux of 123 L/m2·h and PES 1 was recorded as 104 L/m2·h. Similarly, the rejection of the membrane was improved with increasing chitosan’s degree of deacetylation. PES 5 had higher rejection and PES 1 had the least rejection. Maximum rejection for the contaminants was determined as 98.05, 97.39, 96.25, 95.24 and 80.34% for Mn2+, Fe2+, Mg2+ and Ca2+ and SO42−, respectively. The results obtained show that chitosan’s degree of deacetylation has a positive effect on the performance of polyethersulphone membrane during the treatment of acid mine drainage.
机译:酸性矿山排水是与采矿业务和活动相关的环境问题。其治疗对于实现环境可持续性至关重要。在该研究中,提出了一种与壳聚糖注入的聚醚膜(PE)膜作为用于治疗酸性矿渗流(AMD)的使用点材料。复合材料探讨了壳聚糖和聚合物之间的协同作用,特别是考虑到壳聚糖的脱乙酰化(DD)的效果对膜的性能。在各种合成工艺条件下由甲壳素产生壳聚糖,并入聚醚膜内。得到的结果表明,通过100℃和NaOH浓度为40wt%的温度,实现了具有最高脱乙酰化程度的壳聚糖。增加100℃的温度开始已经形成或暴露胺基的降解,从而降低壳聚糖样品的DD。接触角和孔隙度分析表明,随着壳聚糖的DD增加,膜的亲水性质增强。使用合成酸矿喷射在死终过滤细胞上进行膜的性能。结果表明,随着脱乙酰化程度的增加,增强了膜的通量和排斥。 PES 5和PES 1分别与壳聚糖共混,分别具有最高(95.97%)和最低(33.93%)的脱乙酰化程度。 PES 5报告的纯水通量为123L / m 2·h,pes 1被记录为104升/m2·h。类似地,随着壳聚糖的脱乙烷度的增加,改善了膜的排斥。 PES 5具有更高的拒绝,PES 1具有排斥不排斥。对于MN2 +,Fe2 +,Mg2 +和Ca2 +和SO 42,确定对污染物的最大抑制物为98.05,97.39,96.25,95.24和80.34%。得到的结果表明,壳聚糖的脱乙酰乙酰化程度对聚醚膜膜在酸性矿山引流期间的性能具有积极影响。

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