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Study of a fixed-bed column in the adsorption of an azo dye from an aqueous medium using a chitosan-glutaraldehyde biosorbent

机译:使用壳聚糖 - 戊二醛生物吸附剂在水性介质吸附亚氮染料中的固定床柱

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A continuous adsorption study in a fixed-bed column was carried out using a chitosan-glutaraldehyde biosorbent for the removal of the textile dye Direct Blue 71 from an aqueous solution. The biosorbent was prepared from shrimp shells and characterized by scanning electron microscopy, X-ray diffraction, and nuclear magnetic resonance spectroscopy. The effects of chitosan-glutaraldehyde bed height (3-12 cm), inlet Direct Blue 71 concentration (15-50 mgl(-1)), and feed flow rate (1-3 ml min(-1)) on the column performance were analyzed. The highest bed capacity of 343.59mg Direct Blue 71 per gram of chitosan-glutaraldehyde adsorbent was obtained using 1 ml min(-1) flow rate, 50 mgl(-1) inlet Direct Blue 71 concentration, and 3 cm bed height. The breakthrough curve was analyzed using the Adams-Bohart, Thomas, and bed depth service time mathematical models. The behaviors of the breakthrough curves were defined by the Thomas model at different conditions. The bed depth service time model showed good agreement with the experimental data, and the high values of correlation coefficients (R-2 = 0.9646) obtained indicate the validity of the bed depth service time model for the present column system.
机译:使用壳聚糖 - 戊二醛生物吸附剂进行固定床柱中的连续吸附研究,用于从水溶液中除去纺织染料直接蓝71。生物吸附剂由虾壳制备,其特征在于扫描电子显微镜,X射线衍射和核磁共振光谱。壳聚糖 - 戊二醛床高度(3-12厘米),入口直接蓝71浓度(15-50mg(-1))和进给流量(1-3mL min(-1))的影响分析了。使用1mL min(-1)流速,50mg1(-1)入口直接蓝71浓度,3cm床高度,获得每克壳聚糖 - 戊二醛吸附剂343.59mg直接蓝71的最高床容量。使用ADAMS-BOHART,THOMAS和床深度服务时间数学模型分析了突破曲线。突破性曲线的行为由托马斯模型在不同条件下定义。床深度服务时间模型与实验数据显示出良好的一致性,并且所获得的相关系数的高值(R-2& = 0.9646)表示本栏系统的床深度服务时间模型的有效性。

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