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Experimental investigation and thermodynamic study of heavy metal removal from industrial wastewater using pomegranate peel

机译:石榴皮去除工业废水中重金属的实验研究和热力学研究

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The objective of the study is to treat industrial wastewater and perform a thermodynamic experimental study for more economical and efficient adsorption process. This has been done by biosorption and chemisorption of chromium ions from synthetic wastewater into already prepared pomegranate peel as a natural adsorbent. Pomegranate peel proved to be an economic solution since it is available locally and it has an elevated adsorption capacity. Adsorption has been done in a fixed bed column (10 cm inside diameter, and 30 cm height) with continuous flow rate of 1 ml/min. The characteristic properties of adsorption for the pomegranate peel, analyzed by FTIR and SEM, proved that pomegranate peel is a good adsorbent because of its effective combinations and holes on its exterior. Also, comparing between adsorption ability of pomegranate peel together with Langmuir and Freundlich models indicates that Langmuir is preferable in fitting the experimental data. However, the elimination efficiency of the pomegranate peel was 90%, and the greatest adsorption capability was 9.45 mg/g. While, thermodynamic study results showed that endothermic adsorption was approved from positive values of ΔH°, also the negative values of ΔG° proved that the adsorption is unprompted and convenient.
机译:该研究的目的是处理工业废水并进行热力学实验研究,以实现更经济和有效的吸附过程。这是通过将合成废水中铬离子的生物吸附和化学吸附到作为天然吸附剂的已准备好的石榴皮中进行的。石榴皮被证明是一种经济的解决方案,因为它可以在当地购买,并且具有较高的吸附能力。吸附是在固定床色谱柱(内径为10 cm,高度为30 cm)中完成的,流速为1 ml / min。 FTIR和SEM分析表明,石榴皮具有良好的吸附性能,证明了石榴皮是一种良好的吸附剂。此外,将石榴皮的吸附能力与Langmuir和Freundlich模型一起进行比较表明,Langmuir更适合拟合实验数据。但是,石榴皮的去除效率为90%,最大吸附能力为9.45 mg / g。同时,热力学研究结果表明吸热吸附是由ΔH°的正值批准的,而ΔG°的负值也证明了吸附是无提示的且方便。

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