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Study of Photocatalytic Properties of Ag/AgCl-Decorated Soybean Protein Knitting Fabric Against Acid Blue 260 Dye by Factorial Design

机译:Ag / AgCl装饰大豆蛋白针织织物对酸性蓝260染料的光催化性能研究

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Photocatalytic materials have been the focus of several studies due to their excellent optical photoexcitation properties for waste treatment. However, their use promotes the generation of inorganic secondary waste, due to their nanometric grain size, which can cause several environmental hazards. The optimization and immobilization of such photocatalysts for treatment after the catalytic process have thus attracted much attention. In this work, Ag/AgCl nanoparticles were immobilized by hydrothermal treatment on soybean knitted fabric. The photocatalytic activity of the resulting Ag/AgCl-functionalized soybean knitted fabric was estimated based on the reduction of the concentration of Acid Blue 260 dye. The response surface factorial design methodology was applied, varying the Ag/AgCl concentration, nanocatalyst immobilization time, and hydrothermal process temperature, to analyze the individual effect of and interaction between the variables, besides establishing a mathematical model of the process. The photocatalytic results showed that addition of Ag/AgCl to the fabric favored its use and reuse for the degradation of the Acid Blue 260 dye. The mathematical model together with the response surfaces showed that the residence time in the hydrothermal bath was the most significant variable in terms of the dye reduction, favoring this advanced treatment method.
机译:由于它们的优异光学光筛选性能,光催化材料是几项研究的焦点,用于废物处理。然而,由于它们的纳米晶粒尺寸,它们的使用促进了无机二次废物的产生,这可能导致几种环境危害。因此,在催化过程后,这种光催化剂的优化和固定性得到了很多关注。在这项工作中,通过对大豆针织织物的水热处理固定Ag / AgCl纳米颗粒。基于酸蓝260染料的浓度的降低估计所得Ag / AgCl官能化大豆针织织物的光催化活性。响应面因子设计方法适用,改变银/氯化银浓度,纳米催化剂固定化时间,以及水热过程的温度,分析的变量之间的个体效应和相互作用,除了建立过程的数学模型。光催化结果表明,添加到织物中的Ag / AgCl赞同其使用并重复使用酸蓝260染料的降解。数学模型与响应表面一起显示水热浴中的停留时间是在染料的降低方面是最重要的变量,有利于这种先进的处理方法。

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