首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >A rapid and simple microwave-assisted digestion procedure for spectrophotometric determination of titanium dioxide photocatalyst on activated carbon
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A rapid and simple microwave-assisted digestion procedure for spectrophotometric determination of titanium dioxide photocatalyst on activated carbon

机译:分光光度法测定活性炭上二氧化钛光催化剂的快速,简便的微波辅助消解程序

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摘要

Deposition of titanium dioxide(TiO2)on activated carbon(AC)surface has been widely utilized for the production of TiO2/AC photocatalyst,which can be used in photo-degradation of pollutants.In this work,a fast and simple digestion procedure has been developed for the spectrophotometric quantitative analysis of TiO2 in TiO2/AC photocatalyst.Microwave-assisted digestion was used in the procedure.The microwave-digestion procedure was optimized using the single-variable method.Variables optimized included time of ashing,effective digestion time,volume and concentration of sulfuric acid,effect of adding a digestion catalyst,effect of sample pulverizing and on-off time cycle of the microwave.The analysis was completed spectrophotometrically after addition of hydrogen peroxide to the digested solution.Procedure precision and accuracy was tested by application to photocatalyst samples containing known amounts of TiO2,and compared with previously published spectrophotometric procedures.The proposed microwave procedure was capable of recovering 98.4-101.1% of TiO2 in the catalyst in less than 10min,without the need for sample ashing.Analytical precision is 1.42-2.39% relative standard deviation(R.S.D.).In terms of accuracy and precision,the proposed microwave procedure was comparable with other procedures,but the proposed microwave procedure was superior in terms of shorter procedure duration.
机译:活性炭(AC)表面沉积二氧化钛(TiO2)已被广泛用于生产TiO2 / AC光催化剂,可用于污染物的光降解。开发用于分光光度法定量分析TiO2 / AC光催化剂中TiO2的方法。微波辅助消解在程序中进行。微波消解程序通过单变量方法进行优化。变量优化包括灰化时间,有效消解时间,体积硫酸的浓度和浓度,消解催化剂的添加效果,样品粉碎的效果以及微波的开关时间周期。在消解溶液中加入过氧化氢后,用分光光度法完成分析。样品中含有已知数量的TiO2,并与以前发表的分光光度法进行比较。 sed微波程序能够在不到10分钟的时间内回收催化剂中TiO2的98.4-101.1%,而无需灰化样品。分析精度为相对标准偏差(RSD)的1.42-2.39%。所建议的微波程序与其他程序相当,但是所建议的微波程序在较短的程序时间方面具有优势。

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