Removal of methylene blue via bioinspired catecholamine/starch superadsorbent and the efficiency prediction by response surface methodology and artificial neural network-particle swarm optimization
Author:
Publisher
Elsevier BV
Subject
Waste Management and Disposal,Renewable Energy, Sustainability and the Environment,General Medicine,Environmental Engineering,Bioengineering
Reference48 articles.
1. Determination of thermal conductivity ratio of CuO/ethylene glycol nanofluid by connectionist approach;Ahmadi;J. Taiwan Inst. Chem. Eng.,2018
2. Artificial neural network modelling of amido black dye sorption on iron composite nano material: kinetics and thermodynamics studies;Ali;J. Mol. Liq.,2018
3. Statistical experimental design, least squares-support vector machine (LS-SVM) and artificial neural network (ANN) methods for modeling the facilitated adsorption of methylene blue dye;Asfaram;RSC Adv.,2016
4. Preparation and characterization of polysulfone/graphene oxide nanocomposite membranes for the separation of methylene blue from water;Badrinezhad;Polym. Bull.,2018
5. Process optimization study of Zn2+ adsorption on biochar-alginate composite adsorbent by response surface methodology (RSM);Biswas;Water,2019
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