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Application of response surface methodology for optimization of heavy metal biosorption using surfactant modified chitosan bead

机译:响应面法在表面活性剂改性壳聚糖微珠对重金属生物吸附优化中的应用

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摘要

The present investigation highlights the effectiveness of surfactant modified chitosan bead for adsorption of Cu(II), Ni(li) and Zn(II) from aqueous solution. An ideal experimental model was developed using fractional factorial and central composite design (CCD) based on response surface methodology (RSM). Among the experimental parameters viz. pH, adsorbent dose, concentration of metal, agitation time and temperature the most effective influencing parameters and their interactions were identified by a fractional factorial design. The optimal conditions for the three effective parameters, thus identified, were found to be: adsorbent dose, 0,5 g dm~(-3), temperature 313 K for all the metals and pH, 5.4,7.3 and 6.5 for Cu(II), Ni(II) and Zn(II) respectively from CCD. Analysis of variance (ANOVA) showing high coefficient of determination (R~2 ≥ 0.8326) and low probability values signifies the validity of the predicted second order model for metal adsorption. Langmuir isotherm is found to be the most suitable one compared to the Freundlich and Tempkin model tested. The process is feasible, endothermic and spontaneous as revealed by the values of negative free energy change, positive enthalpy and entropy change. Kinetic data were analyzed using pseudo-first-order, pseudo-second-order to find the particular rate law. The diffusion phenomena were analyzed from the Weber and Morris equation plot.
机译:本研究强调了表面活性剂改性的壳聚糖珠粒从水溶液中吸附Cu(II),Ni(li)和Zn(II)的有效性。基于响应曲面方法(RSM),使用分数阶乘和中心复合设计(CCD)开发了理想的实验模型。在实验参数中。 pH,吸附剂剂量,金属浓度,搅拌时间和温度是最有效的影响参数,以及它们之间的相互作用是通过分数阶乘设计确定的。由此确定的三个有效参数的最佳条件为:吸附剂剂量0.5 g dm〜(-3),所有金属的温度313 K,pH,Cu(II)的5.4、7.3和6.5 ),Ni(II)和Zn(II)。方差分析(ANOVA)显示出高的确定系数(R〜2≥0.8326)和低的概率值,表明预测的金属吸附二阶模型的有效性。与测试的Freundlich和Tempkin模型相比,发现Langmuir等温线是最合适的等温线。负自由能变化,正焓和熵变化的值表明该过程是可行的,吸热的和自发的。使用伪一阶,伪二阶对动力学数据进行分析,以找到特定的速率定律。从韦伯和莫里斯方程图分析了扩散现象。

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