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Application of Acid Activated Bentonite for Efficient Removal of Organic Pollutants from Industrial Phosphoric Acid: Kinetic and Thermodynamic Study

机译:酸活化膨润土的应用在工业磷酸中有效去除有机污染物:动力学和热力学研究

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Environmental and health issues are critical challenges for sustainable development in the 21st century; therefore, this paper investigates a simple and cost-effective process for recovery of organic matter (OM) from phosphoric acid to provide environmentally acceptable P-fertilizer. This study analyzed the structural transformations and adsorption properties of Na-bentonite clay before and after chemical activation by sulfuric and hydrochloric acids. The untreated and treated clay samples have been used for adsorption of organic matter from high strength phosphoric acid. The experimental data exhibited that the clay treated with sulfuric acid caused highest organic matter adsorption capacity. The kinetic models of adsorption were analyzed by the pseudo-first order, pseudo-second order, Elovich kinetic and Morris- Weber models. The results indicated that the pseudo-second-order kinetic model is more appropriate than the others for natural bentonite; but, for chemical activated clays, pseudo-first order is fitting. Obtained adsorption thermodynamic parameters (ΔH°, ΔS°, and ΔG°) expose that the organic matter adsorption is an endothermic, physical, and spontaneous process.
机译:环境和健康问题是21世纪可持续发展的关键挑战;因此,本文研究了一种简单且经济效益的方法,用于从磷酸中恢复有机物质(OM),以提供环保可接受的P-肥料。该研究通过硫酸和盐酸化学活化前后的Na-Bentonite粘土的结构转化和吸附性能分析。未处理和处理的粘土样品已被用于吸附来自高强度磷酸的有机物。实验数据表明,用硫酸处理的粘土引起最高的有机物质吸附能力。通过伪第一顺序,伪二阶,ELOVICH动力学和Morris-Weber模型分析吸附的动力学模型。结果表明,伪二阶动力学模型比其他天然膨润土更合适;但是,对于化学活性的粘土,伪第一顺序适合。获得的吸附热力学参数(ΔH°,ΔS°和ΔG°)曝光了有机物质吸附是吸热,物理和自发过程。

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