废水
镉
细菌
铬
锰
重金属
金属
环境化学
饮用水净化
水污染
化学
水处理
地下水
材料科学
环境工程
环境科学
冶金
生物
地质学
遗传学
岩土工程
作者
Abdulaziz Abdulrahman AlMulla,Osama Saber,Mohamed Farouk Ezzeldin,Mahmoud M. Berekaa,Waleed I. M. El-Azab
出处
期刊:Water
[MDPI AG]
日期:2022-09-24
卷期号:14 (19): 3010-3010
被引量:1
摘要
Because of industrial water, many groundwater sources and other water bodies have a strongly acidic medium. Increased bacterial resistance against multiple antibiotics is one of the main challenges for the scientific society, especially those commonly found in wastewater. Special requirements and materials are needed to work with these severe conditions and treat this kind of water. In this trend, nanolayered structures were prepared and modified in different ways to obtain an optimum material for removing different kinds of heavy metals from water in severe conditions, alongside purifying water from a Gram-negative bacteria (E. coli), which is an indication for fecal pollution. An ultrasonic technique effectively achieved this dual target by producing nanolayered structures looking like nanotapes with dimensions of 25 nm. The maximum removal percentages of the heavy metals studied (i.e., iron (Fe), copper (Cu), chromium (Cr), nickel (Ni), and manganese (Mn)) were 85%, 79%, 68%, 63%, and 61%, respectively for one prepared structure. In addition, this nanostructure showed higher antimicrobial activity against the most common coliform bacterium, E. coli (inhibition zone up to 18.5 mm). This study introduces dual-functional material for removing different kinds of heavy metals from water in severe conditions and for treating wastewater for Gram-negative bacteria (E. coli).
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