紫檀吸附酸性红88(Ar88)的平衡及动力学模拟

A. Saravanan
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引用次数: 1

摘要

研究了网状Ulva脱除酸性红(AR88)的平衡、动力学和热力学研究。在批量实验中,研究了染料浓度、温度、接触时间、吸附剂用量、ph值等参数的影响,并用实验数据对拟一阶和拟二阶动力学数据进行了验证。优化条件为:pH 5,温度30℃,生物质粒径0.5 mm,最大金属吸收量75.4 mg/g。计算了各热力学参数(∆Ho,∆Go,∆So),表明该体系为自发吸热过程。伪一级和伪二级动力学模型也适用于AR88吸附过程的实验动力学数据,高相关系数和低标准差有利于伪二级模型。研究了网状Ulva在填充柱上对AR88的吸附能力。用玻璃柱进行实验。在20 cm(床高)、5 ml/min(流速)和100 mg/L(初始浓度)条件下,网状ulva的AR88吸收量为88.65 mg/g。采用Thomas模型对突破曲线进行预测。
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Equilibrium and Kinetic Modeling of Acid Red 88(Ar88) Biosorption by Ulva Reticulata
Equilibrium, kinetics and thermodynamic studies on the removal of Acid Red (AR88) using Ulva reticulata have been investigated. In batch experiments, the parameters studied included the effect of the dye concentration, temperature, contact time, adsorbent dosage, pH. The pseudo-first-order and pseudo-second-order kinetic data were tested with experimental data. The optimum conditions were: pH 5, temperature 30oC, biomass size 0.5 mm and maximum metal uptake was 75.4 mg/g .Various thermodynamic parameters such as ∆Ho, ∆Go and ∆So were calculated indicating that the present system was spontaneous and endothermic process. The pseudo first and second order kinetic models were also applied to the experimental kinetic data obtained during Biosorption of AR88 and High correlation coefficients with low standard deviations favor the pseudo-second-order model for the present systems. The ability of Ulva reticulata to Biosorption AR88 in a packed column was investigated, as well. A glass column was used to conduct the experiments. At 20 cm (bed height), 5 ml/min (flow rate) and 100 mg/L (initial concentrations), ulva reticulata exhibited AR88 uptake of 88.65 mg/g. The Thomas model was used to predict the breakthrough curves.
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