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首页> 外文期刊>Chemical engineering journal >Modeling persulfate activation by iron and heat for the removal of contaminants of emerging concern using carbamazepine as model pollutant
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Modeling persulfate activation by iron and heat for the removal of contaminants of emerging concern using carbamazepine as model pollutant

机译:用铁和热量模拟过硫酸盐活化,以去除使用卡巴马血管作为模型污染物的新兴令的污染物

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摘要

A semi-empirical model of heat-activated and iron-activated persulfate (PS) processes applied to the removal of carbamazepine (CBZ) in water at low concentration (0.0025 mM) has been proposed and validated. In heat-activation systems, carried out at pH 3, temperature was varied from 25 degrees C to 65 degrees C, and acid-activation of PS showed an important initial role in the process. In iron-activated experimental series, iron concentration was changed from 0.009 mM to 0.18 mM at two different temperatures (25 degrees C and 35 degrees C), heat-activation was negligible with iron being the main activation mechanism and acid-activation showing also an important initial effect on process performance. High model prediction capability for both CBZ degradation and PS decomposition profiles was obtained in each case. Finally, the model was validated including supplementary experiments based on Fe(II) additions (0.018 mM each) and PS additions (0.17 mM) throughout the treatment. Developed model in this work is a powerful predictive tool for the application of PS in the removal of contaminants of emerging concern in water.
机译:提出并验证了在低浓度(0.0025mm)的水中施加到水中的热活化和铁活化过硫酸盐(PS)方法的半经验模型(0.0025mm)。在pH 3处进行的热激活系统中,温度从25摄氏度变化至65℃,并且PS的酸活化在该过程中显示出重要的初始作用。在铁激活的实验系列中,在两个不同温度下的铁浓度从0.009毫米变为0.18毫米(25摄氏度和35℃),铁是铁是主要活化机制和酸激活的热激活易于显示重要初始初步影响过程性能。在每种情况下,获得了CBZ降解和PS分解轮廓的高模型预测能力。最后,验证了该模型,包括基于Fe(II)添加的补充实验(每种)和在整个治疗过程中pS添加(0.17mm)。开发的模型在这项工作中是一种强大的预测工具,用于在去除水中出现的污染物中的应用。

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