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Application of Azolla rongpong on biosorption of acid red 88,acid green 3,acid orange 7 and acid blue 15 from synthetic solutions

机译:满江红在合成溶液中酸性红88,酸性绿3,酸性橙7和酸性蓝15的生物吸附中的应用

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摘要

Azolla rongpong,a fresh water macro alga,was tested for its ability to remove acid dyes (acid red 88 (AR88),acid green 3 (AG3),acid orange 7 (AO7) and acid blue 15 (AB15)) separately from aqueous solution.The sorption isotherms,obtained at different ranges of pH (2-3.5) and temperature (25-35 deg C),were fitted using Langmuir,Freundlich,Redlich-Peterson and Sips models.The maximum dye uptake of 83.33 mg/g was obtained for AG3 at optimum conditions of pH (2.5) and temperature (30 deg C) according to Langmuir isotherm model.Various thermodynamic parameters such as DELTAG deg ,DELTAH deg and DELTAS deg 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 four acid dyes and high correlation coefficients favor pseudo-second order model for the present systems.Since A.rongpong performed very well in the case of AG3 biosorption compared to other dyes,AG3 was selected as the model dye for examining the potential of A.rongpong in continuous biosorption.A glass column (2 cm i.d.and 35 cm height) was used to conduct continuous experiments.At 25 cm (bed height),5 mL/min (flow rate) and 100 mg/L (initial dye concentration),A.rongpong exhibited AG3 uptake of 84.87 mg/g.The experimental data were analyzed using Bed Depth Service Time and Thomas models and the model parameters were evaluated.
机译:测试了淡水大型藻类Azolla rongpong分别从水性溶液中去除酸性染料(酸性红88(AR88),酸性绿3(AG3),酸性橙7(AO7)和酸性蓝15(AB15))的能力。使用Langmuir,Freundlich,Redlich-Peterson和Sips模型拟合在不同pH值(2-3.5)和温度(25-35℃)下获得的吸附等温线。最大染料吸收量为83.33 mg / g根据Langmuir等温线模型在pH(2.5)和温度(30℃)的最佳条件下获得了AG3。计算了DELTAG deg,DELTAH deg和DELTAS deg等各种热力学参数,表明该体系是自发的,是吸热过程。伪一阶和二阶动力学模型也被应用于四种酸性染料生物吸附过程中获得的实验动力学数据,并且高相关系数有利于本系统的伪二阶模型。 AG3 biosorpti病例与其他染料相比,AG3被选为模型染料,用于检测荣蓬曲霉在连续生物吸附中的潜力。使用玻璃柱(内径2 cm,高35 cm)进行连续实验。在25 cm(床高)下),5 mL / min(流速)和100 mg / L(初始染料浓度),A.rongpong表现出的AG3吸收为84.87 mg / g。使用Bed Depth Service Time和Thomas模型以及模型参数分析了实验数据被评估。

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