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Silver-modified ciieoptilolite for the removal of Escherichia coli and heavy metals from aqueous solutions

机译:银改性的硅沸石,用于去除水溶液中的大肠杆菌和重金属

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摘要

This paper investigates the potential of using the silver antibacterial properties combined with the metal ion exchange characteristics of silver-modified clinoptilolite to produce a treatment system capable of removing both contaminants from aqueous streams. The results have shown that silver-modified clinoptilolite is capable of completely eliminating Escherichia coli after 30-min contact time demonstrating its effectiveness as a disinfectant. Systems containing both E. coli and metals exhibited 100 % E, coli reduction after 15-min contact time and maximum metal adsorption removal efficiencies of 97, 98, and 99 % for Pb~(2+), Cd~(2+), and Zn~(2+) respectively after 60 min; 0.182-0.266 mg/g of metal ions were adsorbed by the zeolites in the single- and mixed-metal-containing solutions. Nonmodified clinoptilolite showed no antibacterial properties. This study demonstrated that silver-modified clinoptilolite exhibited high disinfection and heavy metal removal efficiencies and consequently could provide an effective combined treatment system for the removal of ? coli and metals from contaminated water streams.
机译:本文研究了结合银修饰的斜发沸石的银抗菌特性和金属离子交换特性来生产能够去除水流中两种污染物的处理系统的潜力。结果表明,银修饰的斜发沸石能够在接触30分钟后完全消除大肠杆菌,这证明了其作为消毒剂的有效性。既包含大肠杆菌又包含金属的系统显示出100%的大肠杆菌,接触15分钟后大肠杆菌减少,Pb〜(2 +),Cd〜(2+)的最大金属吸附去除效率分别为97、98和99%, 60min后分别为Zn〜(2+);沸石在含单金属和混合金属的溶液中吸附了0.182-0.266 mg / g的金属离子。未修饰的斜发沸石没有显示抗菌特性。这项研究表明,银改性斜发沸石具有较高的消毒效率和重金属去除效率,因此可以提供一种有效的联合处理系统,以去除水中的β-淀粉。细菌和污水中的金属。

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