首页> 外文期刊>Journal of the Chemical Society of Pakistan >Remediation of Cadmium Ions from Aqueous Media through Chemically Modified Saccharum arundinaceum: Prediction through Modeling Techniques
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Remediation of Cadmium Ions from Aqueous Media through Chemically Modified Saccharum arundinaceum: Prediction through Modeling Techniques

机译:通过化学改性糖芳樟醇修复水性培养基中的镉离子:通过建模技术预测

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Adsorption is a cost effective and green technology for the removal of hazardous chemicals from aqueous media. In current work, remediation of cadmium ions from aqueous media is performed by employing chemically modified Saceharum arundinaceum. Sorbent was pretreated with acid and base, separately, to check the effect of these chemicals on its adsorption potential and base treated sorbent was selected for further analysis, due to its higher sorption potential (97.5%) for Cd2+ Characterization of sorbent was carried out by recording FTIR spectra for determination of functional groups and SEM for evaluation of surface morphology. FTIR spectra reflect suitability of sorbent material for removal of Cd2+ due to presence of abundant -OH groups on sorbent surface, which may develop strong binding with sorbate. SEM results exhibited presence of cylindrical cavities on sorbent surface, endorsing viability of sorbent for the removal of Cd2+. 2(4) full factorial design (FFD) was employed to optimize the experimental conditions. Experimental results of adsorption process were compared with the predicted results; obtained by first-order model of FFD and Artificial Neural Network (ANN). In FFD, all the possible combinations were used and predicted model was generated for application on experimental setup. Similarly, ANN was used to obtain predicted response by multi-layer perceptron (MLP) method. Predictive analysis, carried out by both the modeling techniques, yielded comparable results, i.e. FFD (0.9852) and ANN (0.9788); revealing good prediction ability of both the modeling techniques.
机译:吸附是一种具有成本效益和绿色的技术,用于从含水介质中去除危险化学品。在当前的工作中,通过采用化学修饰的Saceharum arundinatum来进行来自含水介质的镉离子。用酸和碱进行过吸附剂,另外,检查这些化学物质对其吸附电位的效果,选择碱处理的吸附剂进行进一步分析,由于其对吸附剂的CD2 +表征的较高的吸附潜力(97.5%)进行了进一步分析记录FTIR光谱,用于测定用于评估表面形态的官能团和SEM。 FTIR光谱因吸附剂表面上的含量的含量的存在而反射吸附剂材料以除去CD2 +的适用性,这可能会与山梨酸盐产生强烈的结合。 SEM结果在吸附剂表面上表现出圆柱形空腔,吸附剂的可存活率用于去除CD2 +。 2(4)采用完整因子设计(FFD)来优化实验条件。与预测结果进行比较吸附过程的实验结果;由FFD和人工神经网络(ANN)的一阶模型获得。在FFD中,使用所有可能的组合和预测模型在实验设置上应用。类似地,ANN用于通​​过多层的Perceptron(MLP)方法获得预测的响应。通过建模技术进行的预测性分析产生了可比的结果,即FFD(0.9852)和ANN(0.9788);揭示建模技术的良好预测能力。

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