首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Adaptive Neuro-Fuzzy inference system analysis on sorption studies of strontium and cesium cations onto a novel impregnated nano-zeolite
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Adaptive Neuro-Fuzzy inference system analysis on sorption studies of strontium and cesium cations onto a novel impregnated nano-zeolite

机译:锶和铯阳离子在新型浸渍纳米沸石上的适应性神经模糊推理系统分析

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In this research, a novel impregnated nano-zeolite (NAASMS-Z) was synthesized and characterized using different characterization techniques. Excellent properties, such as high specific surface area (similar to 502.77 m(2)/g), low pore size (similar to 8.92 angstrom) and the existence of numerous functional groups caused the efficient elimination of Sr2+ and Cs+ cations from aquatic systems. The sorption performance of the nano-particles was enhanced by impregnation up to 60% in the aquatic media. The kinetic study indicated that the elimination process of both the concerned cations is controlled by external film mass transfer through the boundary within the first 30 min then controlled by intra-particle diffusion. The sorption equilibrium data suggested that the sorption process occurs on the heterogeneous sorbent surface. Parameters affecting the elimination of Sr2+ and Cs+ from a single metal sorption system, such as pH, initial contaminant concentration (C-i) and contact time (t), were investigated and optimized. A predictive model based on an Adaptive Neuro-Fuzzy Inference system (ANFIS) analysis was applied to evaluate the experimental parameters affecting the elimination of Sr2+ and Cs+ cations from aquatic system. A Mamdani-type FIS was employed to justify a collection of 16 rules (If-Then format) by means of centroid membership functions. The suggested fuzzy model revealed high predictive concert with high correlation coefficient (R-2) and satisfactory deviation from the experimental data, affirming its appropriateness to predict Sr2+ and Cs+ elimination efficacy from the studied system. Rooted in experimental data and statistical analysis, the synthetized material was effective for treating contaminated aquatic solutions containing Sr2+ and Cs+ cations. (C) 2019 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:在该研究中,合成了一种新型浸渍的纳米沸石(NaASMS-Z),并使用不同的表征技术进行了特征。优异的性质,如高比表面积(类似于502.77米(2)/ g),低孔径(类似于8.92埃)和许多官能团的存在导致水生系统的SR2 +和CS +阳离子的有效消除。纳米颗粒的吸附性能通过水生介质的浸渍增强了60%。动力学研究表明,通过在颗粒内扩散控制的前30分钟内,通过界面通过边界来控制来自所有胶片的消除过程。吸附均衡数据表明,吸附过程发生在异质吸附剂表面上。研究了从单一金属吸附系统中消除SR2 +和Cs +的参数,例如pH,初始污染物浓度(C-1)和接触时间(t),并优化。基于自适应神经模糊推理系统(ANFIS)分析的预测模型应用于评估影响水产系统中SR2 +和CS +阳离子消除的实验参数。使用Mamdani-Type FIS通过质心员工函数来证明16项规则(IF-DON-DON-DURE格式)的集合。建议的模糊模型揭示了具有高相关系数(R-2)的高预测音乐会,以及与实验数据的令人满意的偏差,肯定了其适当性以预测研究的SR2 +和CS +消除效果。植根于实验数据和统计分析,合成材料对于治疗含有SR2 +和CS +阳离子的污染水生溶液是有效的。 (c)2019年日本粉末技术学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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