新型壳聚糖-聚苯胺纳滤膜有效去除废水中的有毒重金属

Q4 Pharmacology, Toxicology and Pharmaceutics
Sahar Karami, Zahra Jiriaei Sharahi, Samaneh Koudzari Farahani, S. Solhi, S. Hosseini
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引用次数: 1

摘要

背景:膜净化技术在许多行业和人类健康生活中受到广泛关注。此外,改善有毒重金属的消除是公共供水过滤的一项急需的战略。研究了一种新型薄膜膜对废水中有毒重金属的去除效果。方法:研究了膜的结构、物理化学、防污性能以及去除水中有毒元素的能力。检测了7个参数:接触角、水离子含量、傅里叶变换红外光谱(FTIR)、扫描电子显微镜(SEM)、3d表面成像、水通量和防污效果。结果:在膜上形成了一层薄膜层。三维图像表明,随着聚苯胺与纳米粒子比例的增加,表面粗糙度降低。在表面加入聚苯胺后,表面亲水性增强。水通量由原膜的8.04 (L/m2.h)增加到14.74 (L/m2.h)。原生膜对硫酸钠的去除率为61%,而薄膜包覆膜对硫酸钠的去除率为0.67%。实验结果表明,新型膜具有良好的抗污染性能,通量回收率为94.65%,而原膜的通量回收率约为79%。该膜对铬离子和铜离子的去除率分别为bbb86%和>84%。这些值显著高于未处理膜(>53%和>51%)。结论:薄膜复合膜对废水中有毒重金属的去除率明显高于原生膜。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel Thin-film, Chitosan-polyaniline Nanofiltration Membrane Effectively Removes Toxic Heavy Metals From Wastewaters
Background: Membrane technology for water purification has gained much attention in many industries and for healthier human life. Also, improving the elimination of toxic heavy metals is a much needed strategy for the filtration of public water supplies. This study investigated the removal of toxic heavy metals from wastewater, using a novel thin-film membrane. Methods: We investigated the structural, physico-chemical, and antifouling properties of the membrane, and its ability to remove toxic elements from water. Seven parameters were examined: Contact angle, water ionic contents, Fourier’s transform infrared (FTIR) spectroscopy, scanning electron microscopy (SEM), 3D-surface imaging, water flux, and antifouling effects. Results: The results indicated that a thin-film layer formed on the membrane. The 3D-images demonstrated that the surface roughness decreased when the polyaniline ratio to nanoparticles increased. The surface hydrophilicity increased by incorporating polyaniline into the surface. The water flux increased from 8.04 (L/m2.h) to 14.74 (L/m2.h) in the virgin membrane. The sodium sulfate rejection was 61% for the virgin membrane whereas it was >67% in the thin-film coated membrane. The data demonstrated excellent anti-fouling properties for the novel membrane, with a flux recovery ratio of >94.65% while it was about 79% for the virgin one. The rejection rates of chromium and copper ions for the novel membrane were >86% and >84%, respectively. These values were significantly higher than those of the virgin membrane (>53% and >51%). Conclusion: The thin-film composite membrane significantly improved the removal rate of toxic heavy metals from the wastewater samples compared to the virgin membrane.
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来源期刊
Iranian Journal of Toxicology
Iranian Journal of Toxicology Environmental Science-Health, Toxicology and Mutagenesis
CiteScore
1.60
自引率
0.00%
发文量
24
审稿时长
9 weeks
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