KINETICS STUDY OF BBD OPTIMIZED ADSORPTION OF ERIOCHROME BLACK T DYE USING ALUMINA BEADS

A. bello, A. Hamisu, Naziru Muhammad Alhassan
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Abstract

Numerous approaches have been investigated for the development of cheaper and more effective technologies to improve the quality of industrial effluent. However, adsorption has been one of the most simplest and economical remediation technology in the treatment of wastewaters. In this study, commercial alumina beads (Al-beads) were utilized for the adsorption of Eriochrome Black T dye. The adsorption process was optimized using the RSM model by Box-Behnken Design (BBD). From the optimization result, the most influential variables are; the initial dye concentration, the interaction between adsorbent dosage with itself, and that of adsorbent dosage with initial dye concentration. The R2 value of 0.7743 implies that 77.43% on the percent dye removal could be due to the variation in the independent variable. Whereas the Adeq. precision of 6.493, and lack of fit (0.92) implies the model can be used to navigate the design space. Up to 98.28%, dye removal was attained using the Al-beads under the conditions; pH of 12.39, adsorbent dosage (1.25 g), and initial dye concentration (175 ppm). The sorption data indicated that the adsorption process was fitted to Freundlich and Temkin isotherm models, while for the kinetics study, the pseudo-second-order model was the best fit. Furthermore, the adsorption mechanism was found to be governed majorly by intra-particle diffusion with some contribution from external mass transfer diffusion.
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氧化铝微球吸附铬黑t染料的动力学研究
为了开发更便宜、更有效的技术来改善工业废水的质量,已经研究了许多方法。而吸附是目前污水处理中最简单、最经济的修复技术之一。在本研究中,利用商业氧化铝珠(al -珠)吸附了铬黑T染料。采用Box-Behnken设计(BBD)的RSM模型对吸附过程进行优化。从优化结果来看,影响最大的变量是;染料初始浓度,吸附剂用量与自身的相互作用,吸附剂用量与染料初始浓度的相互作用。R2值为0.7743,说明77.43%的去除率可能是由自变量的变化引起的。而Adeq。精度为6.493,缺乏拟合(0.92)意味着该模型可以用于导航设计空间。在此条件下,铝珠的去除率高达98.28%;pH为12.39,吸附剂用量(1.25 g),初始染料浓度(175 ppm)。吸附数据表明,吸附过程符合Freundlich和Temkin等温模型,而在动力学研究中,拟二阶模型最适合。吸附机制主要受颗粒内扩散控制,外部传质扩散也有一定贡献。
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