Investigation of Zn(II) Adsorption from Aqueous Solution onto Copper Oxide with Different Morphologies: Optimization Using Response Surface Methodology
暂无分享,去创建一个
[1] Joseph R. V. Flora,et al. Removal of heavy metals from water sources in the developing world using low-cost materials: A review. , 2019, Chemosphere.
[2] Jin Huang,et al. Highly efficient removal of heavy metal ions by carboxymethyl cellulose-immobilized Fe3O4 nanoparticles prepared via high-gravity technology. , 2019, Carbohydrate polymers.
[3] K. J. Shah,et al. Performance evaluation of chitosan-based flocculants with good pH resistance and high heavy metals removal capacity , 2019, Separation and Purification Technology.
[4] Zhe Wang,et al. Silica oxide encapsulated natural zeolite for high efficiency removal of low concentration heavy metals in water , 2019, Colloids and Surfaces A: Physicochemical and Engineering Aspects.
[5] Jie Lu,et al. Synthesis and characterization of TiO2/graphene oxide nanocomposites for photoreduction of heavy metal ions in reverse osmosis concentrate , 2018, RSC advances.
[6] S. Vedantam,et al. Kinetics and optimization studies using Response Surface Methodology in biodiesel production using heterogeneous catalyst , 2018, Chemical Engineering Research and Design.
[7] Evan K. Wujcik,et al. Carbon nanotubes, graphene, and their derivatives for heavy metal removal , 2018, Advanced Composites and Hybrid Materials.
[8] M. A. Amalina,et al. Adsorption capability of heavy metals by chitosan/poly(ethylene oxide)/activated carbon electrospun nanofibrous membrane , 2018 .
[9] N. Yan,et al. A novel method for the sequential removal and separation of multiple heavy metals from wastewater. , 2018, Journal of hazardous materials.
[10] R. Fazaeli,et al. Empirical modeling and CCD-based RSM optimization of Cd(II) adsorption from aqueous solution on clinoptilolite and bentonite , 2017, Russian Journal of Applied Chemistry.
[11] Weidong Shi,et al. Hydrothermal synthetic strategies of inorganic semiconducting nanostructures. , 2013, Chemical Society reviews.
[12] K. Byrappa,et al. Hydrothermal processing of materials: past, present and future , 2008 .
[13] G. Shen,et al. Large-scale synthesis of CuO shuttle-like crystals via a convenient hydrothermal decomposition route , 2003 .
[14] T. Bandyopadhyay,et al. Characterization, genetic regulation and production of cyanobacterial exopolysaccharides and its applicability for heavy metal removal. , 2018, Carbohydrate polymers.
[15] R. Fazaeli,et al. Band Gap Energies and Photocatalytic Properties of CdS and Ag/CdS Nanoparticles for Azo Dye Degradation , 2016 .