首页> 外文期刊>Journal of Dispersion Science and Technology >Simultaneous Continuous Removal of Cr(VI) and Phenol from Binary Synthetic Simulated Waste Water in Tea Waste Packed Bed Column: Kinetic Modeling
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Simultaneous Continuous Removal of Cr(VI) and Phenol from Binary Synthetic Simulated Waste Water in Tea Waste Packed Bed Column: Kinetic Modeling

机译:从茶渣填充床塔中的二元合成模拟废水中同时连续去除六价铬和苯酚:动力学模型

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摘要

In this study, simultaneous co-adsorption of Cr(VI) and phenol was carried out in a continuous packed-bed reactor packed with tea waste biomass. The experiments were carried out using binary synthetic simulated solution containing 100 mg/L of Cr(VI) and 50 mg/L of phenol. The binary synthetic solution was passed through the packed-bed reactor at different flow rates (5.46, 8.19, and 16.3 mL/min) and bed height (36, 54, 72, and 93 cm). The pH of the binary synthetic solution was 5 as the maximum simultaneous percentage removal of Cr(VI) and phenol was obtained at this pH reported in our previous study.[ 1] The effects of flow rate and bed depth onto the simultaneous percentage removal of Cr(VI) and phenol were investigated. According to the average percentage error (epsilon%) and average relative error (ARE %) calculated for various kinetic models reveal that Yoon-Nelson model for Cr(VI) and Thomas model for phenol best describes the experimental data. The maximum adsorption capacity of tea waste biomass in a packed-bed reactor for Cr(VI) and phenol was 57.04 and 27.96 mg/g, respectively. The packed bed of the column was regenerated using 2N NaOH.
机译:在这项研究中,Cr(VI)和苯酚的同时共吸附是在装有茶废生物质的连续填充床反应器中进行的。使用包含100 mg / L Cr(VI)和50 mg / L苯酚的二元合成模拟溶液进行实验。二元合成溶液以不同的流速(5.46、8.19和16.3 mL / min)和床高(36、54、72和93 cm)通过填充床反应器。二元合成溶液的pH为5,因为我们同时进行的研究报告了最大的同时去除Cr(VI)的百分比,在此pH值下可获得苯酚。[1]流速和床深度对同时去除Cr的百分比的影响。研究了Cr(VI)和苯酚。根据针对各种动力学模型计算的平均百分比误差(ε%)和平均相对误差(ARE%),可以得出Cr(VI)的Yoon-Nelson模型和苯酚的Thomas模型最能说明实验数据。填充床反应器中茶废生物量对Cr(VI)和苯酚的最大吸附容量分别为57.04和27.96 mg / g。使用2N NaOH再生柱的填充床。

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