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Electrochemically Synthesized Nano-photocatalysts for Photodegradation of Organic Compounds

机译:用于光降解的电化学合成纳米光催化剂的有机化合物

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Over the last decades, extensive studies have been carried out on nano-photocatalytic materials finding a broad range of applications mainly in solar energy conversion and environmental remediation. This article focuses on synthesizing a novel nano-photocatalyst material for purifying water from chloro-organic pollutants and microbes. It was synthesized in the electrolytic cell with titanium and graphite electrodes. TEM analysis revealed that the obtained nanocarbon-titanium composite has a spherical morphology, the average dimension of nanoparticles is 6±2 nm. The electrochemically synthesized nano-photocatalyst forms OH radicals in the presence of water vapor during daylight hours under sunlight’s ultraviolet radiation. As soon as extremely reactive OH radicals are formed, they react with organic pollutants. The results of photodegradation of E. Coli , methyl orange, methyl blue, and polychlorinated biphenyls in the ultraviolet spectrum of sunlight have been discussed. The effect of pH value on the decolorization efficiency has been also observed. The obtained photodegradation time of methyl orange (MeO) and methyl blue (MeB) solutions was less than 60 minutes, and the destruction time of polychlorinated biphenyl (PCB) compounds was about 6-8 hours. The practical application of the developed nano-photocatalyst material promises to be an inexpensive, viable alternative or complimentary method for water and wastewater treatment at ambient temperature to degrade various chemical and microbiological pollutants in water.
机译:在过去的几十年中,已经在纳米光催化材料上进行了广泛的研究,该材料主要在太阳能转换和环境修复方面寻找广泛的应用。本文侧重于合成新型纳米光催化剂材料,用于纯化来自氯有机污染物和微生物的水。它在具有钛和石墨电极的电解槽中合成的。 TEM分析显示,所得纳米碳钛复合物具有球形形态,纳米颗粒的平均尺寸为6±2nm。电化学合成的纳米光催化剂在阳光紫外线辐射下在日光小时内在水蒸气存在下形成OH基团。一旦形成极其反应性哦自由基,它们就会与有机污染物反应。光降解的结果 e。已经讨论了紫外线阳光光谱中的大肠杆菌,甲基橙,甲基蓝和多氯联苯。还观察到pH值对脱色效率的影响。所获得的甲基橙(MEO)和甲基蓝(MEB)溶液的光降解时间小于60分钟,并且多氯联苯(PCB)化合物的破坏时间为约6-8小时。发育纳米光催化剂材料的实际应用是在环境温度下是水和废水处理的廉价,可行的替代或互补方法,以降解水中各种化学和微生物污染物。

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