首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >A rapid and low energy consumption method to decolorize the high concentration triphenylmethane dye wastewater: Operational parameters optimization for the ultrasonic-assisted ozone oxidation process
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A rapid and low energy consumption method to decolorize the high concentration triphenylmethane dye wastewater: Operational parameters optimization for the ultrasonic-assisted ozone oxidation process

机译:一种快速,低能耗的高浓度三苯甲烷染料废水脱色方法:超声辅助臭氧氧化工艺的运行参数优化

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摘要

This research set up an ultrasonic-assisted ozone oxidation process (UAOOP) to decolorize the triphenylmethane dyes wastewater. Five factors - temperature, initial pH, reaction time, ultrasonic power (low frequency 20kHz), and ozone concentration - were investigated. Response surface methodology was used to find out the major factors influencing color removal rate and the interactions between these factors, and optimized the operating parameters as well. Under the experimental conditions: reaction temperature 39.81°C, initial pH 5.29, ultrasonic power 60W and ozone concentration 0.17g/L, the highest color removals were achieved with 10min reaction time and the initial concentration of the MG solution was 1000mg/L. The optimal results indicated that the UAOOP was a rapid, efficient and low energy consumption technique to decolorize the high concentration MG wastewater. The predicted model was approximately in accordance with the experimental cases with correlation coefficients R ~2 and Radj2 of 0.9103 and 0.8386.
机译:本研究建立了超声辅助臭氧氧化工艺(UAOOP)对三苯甲烷染料废水进行脱色。研究了五个因素-温度,初始pH,反应时间,超声功率(低频20kHz)和臭氧浓度。使用响应面方法找出影响除色率的主要因素以及这些因素之间的相互作用,并优化操作参数。在实验条件下:反应温度为39.81°C,初始pH为5.29,超声功率为60W,臭氧浓度为0.17g / L,在10min的反应时间内达到了最高的脱色效果,MG溶液的初始浓度为1000mg / L。最佳结果表明,UAOOP是一种快速,高效,低能耗的技术,用于对高浓度MG废水进行脱色。预测模型与实验情况基本吻合,相关系数R〜2和Radj2为0.9103和0.8386。

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