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Use of functinalized adsorbents for tetracycline removal in wastewater: adsorption mechanism and comparison with activated carbon

机译:使用汇流量的吸附剂在废水中的四环素去除:吸附机理及其与活性炭的比较

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The present study investigated the application of functinalized adsorbents in the removal of tetracycline in water by adsorption. Activated carbon was impregnated with iron chloride, copper sulfate and hydrogen peroxide, in order to improve its adsorption properties. The solids were characterized by adsorption/desorption isotherms N-2, XRD, FTIR and SEM. The influence of pH, adsorbent concentration and contact time parameters was evaluated. The results using activated carbon as adsorbent and initial TC concentration of 20 mg.L(-1)showed that 93% TC removal was achieved at pH 4.0, contact time of 120 minutes and 30 g.L(-1)adsorbent concentration. Experiments applying the functionalized solids showed a faster initial adsorption kinetics. Also, no pH adjustment was required (pH 6.0). In addiction, a minimum of 50% reduction in adsorbent mass (15, 10 and 5 g.L(-1)for CA-H2O2, CA-Fe and CA-Cu, respectively) was observed, compared to the untreated solid. The pseudo-second-order kinetic model was chosen as the optimal model for the study. The application of FeCl3, CuSO(4)and H(2)O(2)composites as adsorbent solids are technically feasible for the removal of tetracycline in wastewater treatment.
机译:本研究调查了归碎剂的吸附剂在通过吸附在水中除去四环素。用氯化铁,硫酸铜和过氧化氢浸渍活性炭,以改善其吸附性能。通过吸附/解吸等温线N-2,XRD,FTIR和SEM表征固体。评价pH,吸附剂浓度和接触时间参数的影响。使用活性炭作为吸附剂和初始TC浓度为20mg.L(-1)的结果表明,在pH 4.0,接触时间为120分钟和30g,1)吸附剂浓度的93%的TC去除。施加官能化固体的实验显示出较快的初始吸附动力学。此外,不需要pH调节(pH6.0)。在成瘾中,与未处理的固体相比,观察到至少50%的吸附质量(15,10和5g.1)的Ca-H 2 O 2,Ca-Fe和Ca-Cu)。选择伪二阶动力学模型作为研究的最佳模型。作为吸附剂固体的FECL3,CUSO(4)和H(2)o(2)复合材料的应用在技术上是可行的,用于去除废水处理中的四环素。

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