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首页> 外文期刊>Modern Research in Catalysis >Photocatalytic and Antimicrobial Properties of [AgTiO&sub&2&/sub&]:[Clay] Nanocomposite Prepared with Clay Different Ratios
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Photocatalytic and Antimicrobial Properties of [AgTiO&sub&2&/sub&]:[Clay] Nanocomposite Prepared with Clay Different Ratios

机译:[AgTiO&亚& / sub&]:[粘土]纳米复合材料用粘土不同比例制备光催化和抗微生物性质

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This work aimed to synthesis a novel material that would be able to efficiently remove both organic and microbiological pollutants from wastewater. Through the hydrothermal process, we first doped titanium dioxide, a semiconductor possessing excellent photocatalytic properties with silver nanoparticles having good antibacterial properties. The obtained material was then associated with clay known for its good adsorbent properties to form [AgTiO_(2)]:[clay] type nanocomposites. The different mass composition of [AgTiO_(2)]:[clay] considered in this work were 1:1; 1:0.5; 1:0.1; 1:0.05 and 1:0.01. The prepared nanocomposites were characterized by means of XRD, FTIR and SEM techniques. Results revealed the presence of TiO_(2) anatase and Ag on the surface of the clay mainly composed of kaolinite and quartz. The photocatalytic activities of the nanocomposites were tested in the presence of synthetic Orange II (25 mg/L) wastewater under visible light irradiation. The experiments demonstrated that organic pollutants were effectively photodegraded when the proportion of clay in the mixture (AgTiO_(2))-(Clay) was inferior or equaled to 50%. The use of commercial TiO_(2), for comparison purpose, showed a lower degradation efficiency of the Orange II solution (η < 30%). The antibacterial properties of the nanocomposites [AgTiO_(2)]:[clay] were also assessed in the presence of two types of bacteria E. coli (Gram negative) and S. aureus (Gram positive). The antibacterial activities of the nanocomposites were characterized with and without UV irradiation. In dark conditions, the antibacterial activities of nanocomposites (AgTiO_(2))-(Clay) against S. aureus gradually increased with increasing the clay amount. Under visible light irradiation, the nanocomposites showed a significant antimicrobial activity against E. coli and S. aureus.
机译:这项工作旨在合成一种新的材料,能够从废水中有效地去除有机和微生物污染物。通过水热过程,我们首先掺杂二氧化钛,半导体具有具有优异的光催化性能,具有良好的抗菌性能的银纳米颗粒。然后将所得材料与已知其良好吸附性质的粘土相关,以形成[AgTiO_(2)]:[粘土]纳米复合材料。 [AgTiO_(2)]的不同质量组成:[粘土]在这项工作中考虑为1:1; 1:0.5; 1:0.1; 1:0.05和1:0.01。通过XRD,FTIR和SEM技术表征制备的纳米复合材料。结果显示,粘土表面的TiO_(2)锐钛矿和AG的存在主要由高岭石和石英组成。在可见光照射下在合成橙II(25mg / L)废水存在下测试纳米复合材料的光催化活性。实验表明,当混合物中粘土的比例(AgTiO_(2)) - (粘土)较差或等于50%时,有机污染物有效地光降解。使用商业TiO_(2)进行比较目的,显示出橙色II溶液的较低降解效率(η<30%)。纳米复合材料的抗菌性质[AgTiO_(2)]:[粘土]在两种类型的细菌大肠杆菌(克阴性)和金黄色葡萄球菌(克阳性)的存在下也进行评估。纳米复合材料的抗菌活性在没有紫外线照射的情况下表征。在暗条件下,纳米复合材料的抗菌活性(AgTiO_(2)) - (粘土)逐渐增加粘土量。在可见光照射下,纳米复合材料显示出针对大肠杆菌和金黄色葡萄球菌的显着抗微生物活性。

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