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首页> 外文期刊>Chemical engineering journal >Waste eggshell membrane-templated CuO-ZnO nanocomposites with enhanced adsorption, catalysis and antibacterial properties for water purification
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Waste eggshell membrane-templated CuO-ZnO nanocomposites with enhanced adsorption, catalysis and antibacterial properties for water purification

机译:废蛋壳膜模板化CuO-ZnO纳米复合材料具有增强的吸附,催化和抗菌性能进行净水

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In the present work, we synthesized CuO-ZnO (CZ) nanocomposites using a bio-templated method from biowaste-eggshell membranes (ESM). Results showed that CZ-ESM nanocomposites of morphology and structure preserved the original structural characteristics of ESM with interlaced network coated by small inorganic nanoparticles. In addition, the samples exhibit excellent adsorption, catalysis and antibacterial activities. Experimental results showed the adsorption kinetics and isotherm were well described by pseudo-second order kinetics and Langmuir isotherm model for Congo red dye, the maximum adsorption capacity was determined to be 775 mg.g(-1). The catalysis reduction efficiency of CZ-ESM nanocomposites for 4-nitrophenol (4-NP) reached 98% after 12 min at room temperature. CZ-ESM could be recycled several times without any significant activity loss. Furthermore, the results of antibacterial experiments indicated that CZ-ESM nanocomposites exhibited a strong inhibition activity against E. coll. and S. aureus. The maximum diameter of the inhibition zone was 27.5 mm for S. aureus and 20.3 mm for E. coli.
机译:在本作工作中,我们使用Biowasty-egmshell膜(ESM)的生物模板方法合成CuO-ZnO(CZ)纳米复合材料。结果表明,通过小无机纳米粒子涂覆的交错网,CZ-ESM纳米复合材料保留了ESM的原始结构特征。此外,样品表现出优异的吸附,催化和抗菌活性。实验结果表明,对刚果红染料的伪二阶动力学和朗米尔等温模型进行了很好的描述,最大吸附能量为775mg.g(-1)。在室温下12分钟后,4-硝基苯酚(4-NP)的CZ-ESM纳米复合材料的催化降低效率达到98%。 CZ-ESM可以回收数次,没有任何显着的活动损失。此外,抗菌实验的结果表明CZ-ESM纳米复合材料对E. Coll的强烈抑制活性表现出强烈的抑制活性。和金黄色葡萄球菌。抑制区的最大直径为27.5mm,对于金黄色葡萄球菌和大肠杆菌的20.3mm。

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