首页> 外文期刊>Journal of Hazardous Materials >Equilibrium, kinetic and thermodynamic studies of the biosorption of textile dye (Reactive Red 195) onto Pinus sylvestris L.
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Equilibrium, kinetic and thermodynamic studies of the biosorption of textile dye (Reactive Red 195) onto Pinus sylvestris L.

机译:纺织染料(活性红195)在樟子松上的生物吸附的平衡,动力学和热力学研究。

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This study investigated the biosorption of Reactive Red 195 (RR 195), an azo dye, from aqueous solution by using cone biomass of Pinus sytvestris Linneo. To this end, pH, initial dye concentration, biomass dosage and contact time were studied in a batch biosorption system. Maximum pH for efficient RR 195 biosorption was found to be 1.0 and the initial RR 195 concentration increased with decreasing percentage removal. Biosorption capacity increased from 6.69 mg/g at 20℃ to 7.38 mg/g at 50 ℃ for 200 mg/L dye concentration. Kinetics of the interactions was tested by pseudo-first-order and pseudo-second-order kinetics, the Elovich equation and intraparticle diffusion mechanism. Pseudo-second-order kinetic model provided a better correlation for the experimental data studied in comparison to the pseudo-first-order kinetic model and intraparticle diffusion mechanism. Moreover, the Elovich equation also showed a good fit to the experimental data. Freundlich and Langmuir adsorption isotherms were used for the mathematical description of the biosorption equilibrium data. The activation energy of biosorption (Ea) was found to be 8.904 kJ/mol by using the Arrhenius equation. Using the thermodynamic equilibrium coefficients obtained at different temperatures, the study also evaluated the thermodynamic constants of biosorption (ΔG~0, ΔH~0 and ΔS). The results indicate that cone biomass can be used as an effective and low-cost biosorbent to remove reactive dyes from aqueous solution.
机译:这项研究利用松果的锥状生物量研究了水溶液中对偶氮染料活性红195(RR 195)的生物吸附作用。为此,在间歇式生物吸附系统中研究了pH,初始染料浓度,生物量和接触时间。发现有效的RR 195生物吸附的最大pH为1.0,并且初始RR 195浓度随去除百分率的降低而增加。对于200 mg / L的染料浓度,其生物吸附能力从20℃下的6.69 mg / g增加到50℃下的7.38 mg / g。通过拟一级和拟二级动力学,Elovich方程和粒子内扩散机理测试了相互作用的动力学。与拟一级动力学模型和粒子内扩散机制相比,拟二级动力学模型为所研究的实验数据提供了更好的相关性。此外,Elovich方程也显示出与实验数据的良好拟合。 Freundlich和Langmuir吸附等温线用于生物吸附平衡数据的数学描述。利用阿伦尼乌斯方程,发现生物吸附的活化能(Ea)为8.904 kJ / mol。利用在不同温度下获得的热力学平衡系数,该研究还评估了生物吸附的热力学常数(ΔG〜0,ΔH〜0和ΔS)。结果表明锥生物质可以用作一种有效的低成本生物吸附剂,以从水溶液中去除活性染料。

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