首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Experimental and Theoretical Study to Optimize Rate Constants of Adsorption and Desorption of theWastewater Treatment Using Waste of Tea Plant
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Experimental and Theoretical Study to Optimize Rate Constants of Adsorption and Desorption of theWastewater Treatment Using Waste of Tea Plant

机译:茶厂废水处理废水吸附解吸速率常数优化的实验与理论研究。

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The present work is used to remove three multi-heavy metal components from a simulated wastewater using waste of tea (WOT). Physical, mechanical and multi-step chemical treatments were applied on the WOT as an adsorbent being used for the removal of three multi-heavy metal components from a simulated wastewater. There are new techniques of WOT adsorbents prepared for the adsorption studies, using different pH (2, 4 and 5.5). The fixed-bed column study was carried out under multilayered fixed-bed columns. It was found that the adsorption of multi-heavy metal component was significantly increased in the first layer of pH 2 removing Cr, second layer of pH 4 removing Zn and third layer of pH 5.5 removing Cu. Produce mathematical model covers the most important parameters like the effect pH, partial pressure and concentration of heavy metals effect on the rate of adsorption and desorption. Results obtained from the application of the derived model are graphically compared with experimental results, and a high degree of matching is obtained. Newton-Raphson is a numerical optimization technique used to specify the optimum values of rate constants of adsorption and desorption of the WOT for Cr, Cu and Zn to increase the performance of mathematical model. The novelty of this study is that it is used to evaluate the performance of bio-waste to remove heavy metals using more than one technique to calculate the rate constants of adsorption and desorption. Still, further studies are required to confirm with the outcomes of this study using this active technique.
机译:本工作用于使用茶废料(WOT)从模拟废水中去除三种重金属成分。在WOT上进行了物理,机械和多步化学处理,将其作为吸附剂,用于从模拟废水中去除三种多重金属组分。有许多新的WOT吸附剂技术准备使用不同的pH(2、4和5.5)进行吸附研究。在多层固定床色谱柱下进行固定床色谱柱研究。发现在pH 2的第一层去除Cr,pH 4的第二层去除Zn和pH 5.5的第三层去除Cu中,多重金属组分的吸附显着增加。生产数学模型涵盖最重要的参数,例如影响pH值,分压和重金属浓度对吸附和解吸速率的影响。将通过应用衍生模型获得的结果与实验结果进行图形比较,从而获得高度匹配。 Newton-Raphson是一种数值优化技术,用于指定WOT对Cr,Cu和Zn的吸附和解吸速率常数的最佳值,以提高数学模型的性能。这项研究的新颖性在于,它可以使用一种以上的技术来计算吸附和脱附的速率常数,从而评估生物废物去除重金属的性能。尽管如此,仍需要进一步的研究来证实使用这种主动技术的研究结果。

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