首页> 外文期刊>Asian Journal of Chemistry: An International Quarterly Research Journal of Chemistry >Isotherms, Kinetics and Break through Curve for Sorptive Removal of Chromium from Wastewater by Activated Sludge
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Isotherms, Kinetics and Break through Curve for Sorptive Removal of Chromium from Wastewater by Activated Sludge

机译:等温机,动力学和突破通过活性污泥来自废水的吸附除去铬的曲线

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In the present investigations, activated sludge is used for removal of chromium in batch and continuous mode. It was observed that the sorption process followed Langmuir isotherm better than Freundlich isotherm (R2 = 0.95). The Freudlich model with R2 value above 0.9 suggests that the sorptive removal may involve physical and chemical adsorption with some multilayer sorption. Chromium uptake followed second order kinetics. The maximum adsorption capacity qe was observed to be 208.33 mg/g. The breakeven time and exhaustion time were determined for continuous operation. The non-availability of adsorbate at low flow rates play important role in delaying the break point time. Sludge age and initial concentration also affect the removal of chromium. The data follows the Thomas model with R2 value more than 0.9.
机译:在本研究中,活性污泥用于以批量和连续模式除去铬。 观察到吸附过程遵循Langmuir等温线比Freundlich等温线更好(R2 = 0.95)。 R2值高于0.9的Freudlich模型表明,吸附去除可能涉及物理和化学吸附与一些多层吸附。 铬摄取跟随二阶动力学。 观察到最大吸附能力QE为208.33mg / g。 盈亏平衡时间和耗尽时间是针对连续运作的。 低流速下吸附物的非可用性在延迟断裂点时起着重要作用。 污泥年龄和初始浓度也影响去除铬。 数据跟随托马斯模型,R2值超过0.9。

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