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Synthesis of Magnesium Oxide Hierarchical Microspheres: A Dual-Functional Material for Water Remediation

机译:氧化镁分级微球的合成:一种用于水修复的双重功能材料

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High concentration of heavy metals and microbes present in water can reduce the quality of water and bring serious side effects to human beings. Their removal from water is of great importance. In this study, MgO microspheres with hierarchical morphology have been synthesized by a facile and low-cost precipitation-aging-calcination method and their dual functionality for effective arsenic removal and microbial inhibition has been investigated for the first time. By systematical investigation on the synthesis, structure and performance relationship, optimized MgO microspheres are prepared with both high arsenic removal capacity and prominent antibacterial activity. Hierarchical MgO microspheres calcined at 500 degrees C exhibit the best trade-off between As(III) adsorption (502 mg g(-1)) and antibacterial performance (complete elimination at 700 mu g mL(-1)). It is also demonstrated that our materials can be used for the simultaneous removal of arsenic and microbes in a model water system. This study offers a convenient and low cost dual-function agent with efficient performance for water treatment.
机译:水中存在的高浓度重金属和微生物会降低水质,并给人类带来严重的副作用。从水中去除它们非常重要。在这项研究中,已通过一种简便且低成本的沉淀-时效-煅烧方法合成了具有分级形态的MgO微球,并首次研究了其有效去除砷和抑制微生物的双重功能。通过对合成,结构和性能关系的系统研究,制备了具有高除砷能力和显着抗菌活性的优化MgO微球。在500摄氏度下煅烧的MgO分层微球在As(III)吸附(502 mg g(-1))和抗菌性能(在700μg mL(-1)完全消除)之间表现出最佳平衡。还证明了我们的材料可用于同时去除模型水系统中的砷和微生物。这项研究提供了一种方便且低成本的双功能剂,具有高效的水处理性能。

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