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Continuous Fixed-Bed Adsorption of Heavy Metals Using Biodegradable Adsorbent: Modeling and Experimental Study

机译:使用可生物降解吸附剂的连续固定床吸附重金属:建模和实验研究

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In this study, a continuous fixed-bed column was investigated for heavy metal removal using modified wheat bran as adsorbent. Clay and chitosan were used as binders with the adsorbent to prepare adsorbent pellets in a 1:1: 3 (clay:chitosan:adsorbent) ratio by weight. Clay and chitosan provide adhesiveness and mechanical strength to the pellet. The scanning electron microscopy analysis-energy dispersive X-ray spectroscopy (SEM-EDS) analysis confirms the adsorption of copper, chromium, and cadmium in the adsorbent pellet. The fixed bed was operated at a pH of 6 and temperature of 35 degrees C for heavy metal removal. A mathematical model was prepared for continuous column and then experiments were carried out with various parameters such as bed height (0.15-0.45 m), initial concentration (100-500 mg/L), and flow rate (5-15 mL/min). The removal order for heavy metals follows Cr > Cu > Cd. The optimum conditions obtained were a flow rate 5 mL/min, bed height of 0.45 m, and initial concentration of 100 mg/L. The breakthrough curve obtained from experimental data was compared with the curve obtained from the model. It was found that the prepared adsorbent pellets were efficient at removing heavy metals. The developed mathematical model could predict column behavior with desirable accuracy. Further, high R-2, low chi-squared, and mean absolute percentage error (MAPE) values of up to 0.999, 0.025%, and 0.378%, respectively, indicate that model and experimental data were well fitted. (C) 2019 American Society of Civil Engineers.
机译:在该研究中,研究了使用改性小麦麸作为吸附剂的重金属去除连续的固定床柱。用作吸附剂的粘土和壳聚糖用吸附剂制备1:1:3(粘土:壳聚糖:吸附剂)比例的吸附剂颗粒。粘土和壳聚糖为颗粒提供粘合性和机械强度。扫描电子显微镜分析 - 能量色散X射线光谱(SEM-EDS)分析证实了铜,铬和镉的吸附在吸附剂颗粒中。固定床在6至35摄氏度的pH值下操作,以重金属去除。为连续塔制备数学模型,然后用各种参数如床高(0.15-0.45m),初始浓度(100-500mg / L)和流速(5-15毫升/分钟)进行实验。重金属的去除顺序遵循Cr> Cu> Cd。获得的最佳条件是5ml / min的流速,床高度为0.45μm,初始浓度为100 mg / L.将从实验数据获得的突破曲线与从模型中获得的曲线进行比较。发现制备的吸附剂颗粒在除去重金属时是有效的。开发的数学模型可以预测具有所需精度的列行为。此外,高R-2,低奇平方体和平均绝对百分比误差(MAPE)分别高达0.999,0.025%和0.378%,表明模型和实验数据很好。 (c)2019年美国土木工程师协会。

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