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首页> 外文期刊>Current Environmental Engineering >Photo-Catalytic and Kinetic Study of Zinc Oxide Catalyzed Degradation of Copper Stearate Surfactants for Sustainable Development of Environment
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Photo-Catalytic and Kinetic Study of Zinc Oxide Catalyzed Degradation of Copper Stearate Surfactants for Sustainable Development of Environment

机译:氧化锌氧化锌催化和动力学研究铜硬脂酸铜表面活性剂可持续发展环境

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Background: Surface active agents are lower the surface tension of water and act as dispersants, foaming agent, wetting agent, emulsifiers etc. but after their use they discarded in water which cause major contaminants of water pollution now as days due to they are less biodegradable. These are harmful and can cause skin ingredient which lead to damage of body. Therefore it is necessary to find some methods to degrade them from environment.- Objective: In the present investigation photocatalytic degradation has been applied for degradation of copper stearate surfactant derived from saturated fatty acid.Methods: Copper stearate was synthesize by reported methods and characterized by elemental analysis as well as IR, NMR, and Mass spectroscopic techniques.Results: The degradation was carried out by irradiating the non- aqueous solutions of copper stearate surfactant containing ZnO with UV. In this technique a semiconductor ZnO is used which is non -toxic in nature. The rate of reaction was estimated fromresidual concentration spectrophotometrically by measuring the absorbance of the reaction mixture at definite time intervals. Different parameters such as the concentration of surfactant (400-960 ppm), amount of semiconductor (0.01-0.06 g), light intensity (26-54 mWcm"2), effect of solvent polarity (20-80%) and time period for degradation (0-18 h) were varied to achieve the optimum rate of photo degradation.Conclusion: The observations revealed that copper stearate surfactant was degraded successfully by using ZnO under UV. A tentative mechanism has been proposed for the photo degradation of copper stearate surfactant.
机译:背景技术表面活性剂降低水的表面张力,并充当分散剂,发泡剂,润湿剂,乳化剂等。但在其使用后,它们在水中丢弃的水丢弃,由于它们的生物降解较小,因此造成水污染的主要污染物的主要污染物。这些是有害的,可引起皮肤成分,导致身体的损伤。因此,有必要发现一些方法可以从环境中降解它们。目的:在本发明的研究中,已经应用了光催化降解衍生自饱和脂肪酸的铜硬脂酸铜表面活性剂的降解。方法:通过报告的方法合成铜硬脂酸盐并表征元素分析以及IR,NMR和质谱技术。结果:通过用UV施用含有ZnO的铜硬脂酸盐表面活性剂的非水溶液来进行降解。在该技术中,使用半导体ZnO,其本质上是非氧的。通过以明确的时间间隔测量反应混合物的吸光度来估计反应速率从分光光度浓缩。不同的参数,如表面活性剂的浓度(400-960ppm),半导体量(0.01-0.06g),光强度(26-54 mwcm“2),溶剂极性的影响(20-80%)和时间段改变降解(0-18h)以实现光降解的最佳速率。结论:观察结果显示,通过UV下使用ZnO成功地成功地降解了铜硬脂酸铜表面活性剂。已经提出了铜硬脂酸铜表面活性剂的光降解的暂定机理。

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