[1]
|
Assessment of chitosan-based adsorbents for glyphosate removal
Journal of Environmental Science and Health, Part B,
2024
DOI:10.1080/03601234.2023.2291980
|
|
|
[2]
|
Lanthanum-Modified Phosphogypsum Red Mud Composite for the Co-Adsorption of Cadmium and Arsenic: Mechanism Study and Soil Remediation
Agriculture,
2024
DOI:10.3390/agriculture14030464
|
|
|
[3]
|
Carbon Nanomaterials and their Composites as Adsorbents
Carbon Nanostructures,
2024
DOI:10.1007/978-3-031-48719-4_12
|
|
|
[4]
|
Carbon Nanomaterials and their Composites as Adsorbents
Carbon Nanostructures,
2024
DOI:10.1007/978-3-031-48719-4_12
|
|
|
[5]
|
Synthesis and Characterization of Environmentally Friendly β-Cyclodextrin Cross-Linked Cellulose/Poly(vinyl alcohol) Hydrogels for Adsorption of Malathion
ACS Omega,
2024
DOI:10.1021/acsomega.4c00037
|
|
|
[6]
|
A sustainable green-approach for biofabrication of chitosan nanoparticles, optimization, characterization, its antifungal activity against phytopathogenic Fusarium culmorum and antitumor activity
Scientific Reports,
2024
DOI:10.1038/s41598-024-59702-3
|
|
|
[7]
|
Biopolymer based membrane technology for environmental applications
Physical Sciences Reviews,
2024
DOI:10.1515/psr-2022-0222
|
|
|
[8]
|
Investigating Adsorption Behaviors of Herbicide 2, 4, 5-Trichlorophenoxyacetic Acid on Epinephrine Modified Mesoporous Silica Nanoparticles
Chemistry Africa,
2024
DOI:10.1007/s42250-024-00939-w
|
|
|
[9]
|
Chitosan-Based Adsorbents and Catalysts for Removal of Toxic Pollutants from Water and Wastewater
Topics in Catalysis,
2024
DOI:10.1007/s11244-024-01979-9
|
|
|
[10]
|
Removal of hexavalent chromium and methylene blue in aqueous solutions using activated carbon prepared from rubber seed shell
Desalination and Water Treatment,
2023
DOI:10.5004/dwt.2023.30080
|
|
|
[11]
|
Development of polymer inclusion membranes for palladium recovery: Effect of base polymer, carriers, and plasticizers on structure and performance
Journal of Water Process Engineering,
2023
DOI:10.1016/j.jwpe.2023.103576
|
|
|
[12]
|
Low-cost materials as vehicles for pesticides in aquatic media: a review of the current status of different biosorbents employed, optimization by RSM approach
Environmental Science and Pollution Research,
2023
DOI:10.1007/s11356-023-27640-8
|
|
|
[13]
|
Effect of various solvents on the structure of silica nanocapsules synthesised for anionic and cationic dyes adsorption from aqueous solution
Journal of Environmental Chemical Engineering,
2023
DOI:10.1016/j.jece.2023.110981
|
|
|
[14]
|
Development of polymer inclusion membranes for palladium recovery: Effect of base polymer, carriers, and plasticizers on structure and performance
Journal of Water Process Engineering,
2023
DOI:10.1016/j.jwpe.2023.103576
|
|
|
[15]
|
Assessing pollutant sorption efficiency of modified and unmodified biochar with Bacillus cereus on contaminated lake water: implications for Oryza sativa seedling and Artemia franciscana larvae viability
Biomass Conversion and Biorefinery,
2023
DOI:10.1007/s13399-023-04952-w
|
|
|
[16]
|
Development of polymer inclusion membranes for palladium recovery: Effect of base polymer, carriers, and plasticizers on structure and performance
Journal of Water Process Engineering,
2023
DOI:10.1016/j.jwpe.2023.103576
|
|
|
[17]
|
Adsorption of organophosphate pesticides from aqueous solution: a review of recent advances
International Journal of Environmental Science and Technology,
2023
DOI:10.1007/s13762-022-04410-6
|
|
|
[18]
|
Low-cost materials as vehicles for pesticides in aquatic media: a review of the current status of different biosorbents employed, optimization by RSM approach
Environmental Science and Pollution Research,
2023
DOI:10.1007/s11356-023-27640-8
|
|
|
[19]
|
Biopolymer based membrane technology for environmental applications
Physical Sciences Reviews,
2023
DOI:10.1515/psr-2022-0222
|
|
|
[20]
|
Application of CNT-COOH/MnO2/Fe3O4 Nanocomposite for the Removal of Cymoxanil from Aqueous Solution: Isotherm and Kinetic Studies
Analytical Letters,
2023
DOI:10.1080/00032719.2022.2043888
|
|
|
[21]
|
Agricultural and Environmental Nanotechnology
Interdisciplinary Biotechnological Advances,
2023
DOI:10.1007/978-981-19-5454-2_22
|
|
|
[22]
|
The Lethal and Sub-Lethal Effects of Fluorinated and Copper-Based Pesticides—A Review
International Journal of Environmental Research and Public Health,
2023
DOI:10.3390/ijerph20043706
|
|
|
[23]
|
A novel cross-linked PVA-Chitosan composite membrane for heavy metal filtration applications
Materials Today: Proceedings,
2022
DOI:10.1016/j.matpr.2022.06.487
|
|
|
[24]
|
Use of Urea-imprinted cobalt ferrite nanoparticles in deacidification of deteriorated vegetable oil: Synthesis, characterization and preclinical toxicity screening
Journal of Molecular Liquids,
2022
DOI:10.1016/j.molliq.2022.120224
|
|
|
[25]
|
Adsorption modelling and fixed-bed column study on milk processing industry wastewater treatment using chitosan zinc-oxide nano-adsorbent–coated sand filter bed
Environmental Science and Pollution Research,
2022
DOI:10.1007/s11356-022-24873-x
|
|
|
[26]
|
Application of CNT-COOH/MnO2/Fe3O4 Nanocomposite for the Removal of Cymoxanil from Aqueous Solution: Isotherm and Kinetic Studies
Analytical Letters,
2022
DOI:10.1080/00032719.2022.2043888
|
|
|
[27]
|
Magnetic composite sponges based on chitosan and whey protein modified magnetite nanoparticles for dye removal from water
Journal of Porous Materials,
2022
DOI:10.1007/s10934-021-01173-2
|
|
|
[28]
|
Highly Efficient and Rapid Removal of Methylene Blue from Aqueous Solution Using Folic Acid-Conjugated Dendritic Mesoporous Silica Nanoparticles
Processes,
2022
DOI:10.3390/pr10040705
|
|
|
[29]
|
Sorption studies of phthalic acid esters uptake from lagos lagoon sample using characterized gmelina arborea pericarp biosorbent
Separation Science and Technology,
2022
DOI:10.1080/01496395.2022.2036761
|
|
|
[30]
|
Macroporous 3D Chitosan Cryogels for Fastac 10EC Pesticide Adsorption and Antibacterial Applications
Polymers,
2022
DOI:10.3390/polym14153145
|
|
|
[31]
|
A novel cross-linked PVA-Chitosan composite membrane for heavy metal filtration applications
Materials Today: Proceedings,
2022
DOI:10.1016/j.matpr.2022.06.487
|
|
|
[32]
|
Design of a Composite Based on Polyamide Fabric-Hydrogel-Zinc Oxide Particles to Act as Adsorbent and Photocatalyst
Materials,
2022
DOI:10.3390/ma15196649
|
|
|
[33]
|
Use of Urea-imprinted cobalt ferrite nanoparticles in deacidification of deteriorated vegetable oil: Synthesis, characterization and preclinical toxicity screening
Journal of Molecular Liquids,
2022
DOI:10.1016/j.molliq.2022.120224
|
|
|
[34]
|
Removal of aspirin from aqueous solution using phosphoric acid modified coffee waste adsorbent
Materials Today: Proceedings,
2022
DOI:10.1016/j.matpr.2022.03.033
|
|
|
[35]
|
Adsorption of organophosphate pesticides from aqueous solution: a review of recent advances
International Journal of Environmental Science and Technology,
2022
DOI:10.1007/s13762-022-04410-6
|
|
|
[36]
|
Removal of aspirin from aqueous solution using phosphoric acid modified coffee waste adsorbent
Materials Today: Proceedings,
2022
DOI:10.1016/j.matpr.2022.03.033
|
|
|
[37]
|
Removing Pollutants from Wastewater Using an Advanced Method
Revista de Gestão Social e Ambiental,
2022
DOI:10.24857/rgsa.v16n3-012
|
|
|
[38]
|
Adsorption modelling and fixed-bed column study on milk processing industry wastewater treatment using chitosan zinc-oxide nano-adsorbent–coated sand filter bed
Environmental Science and Pollution Research,
2022
DOI:10.1007/s11356-022-24873-x
|
|
|
[39]
|
Removing Pollutants from Wastewater Using an Advanced Method
Revista de Gestão Social e Ambiental,
2022
DOI:10.24857/rgsa.v16n3-012
|
|
|
[40]
|
Removing Pollutants from Wastewater Using an Advanced Method
Revista de Gestão Social e Ambiental,
2022
DOI:10.24857/rgsa.v16n3-012
|
|
|
[41]
|
Use of Urea-imprinted cobalt ferrite nanoparticles in deacidification of deteriorated vegetable oil: Synthesis, characterization and preclinical toxicity screening
Journal of Molecular Liquids,
2022
DOI:10.1016/j.molliq.2022.120224
|
|
|
[42]
|
Removing Pollutants from Wastewater Using an Advanced Method
Revista de Gestão Social e Ambiental,
2022
DOI:10.24857/rgsa.v16n3-012
|
|
|
[43]
|
Use of Urea-imprinted cobalt ferrite nanoparticles in deacidification of deteriorated vegetable oil: Synthesis, characterization and preclinical toxicity screening
Journal of Molecular Liquids,
2022
DOI:10.1016/j.molliq.2022.120224
|
|
|
[44]
|
Highly Efficient and Rapid Removal of Methylene Blue from Aqueous Solution Using Folic Acid-Conjugated Dendritic Mesoporous Silica Nanoparticles
Processes,
2022
DOI:10.3390/pr10040705
|
|
|
[45]
|
Design of a Composite Based on Polyamide Fabric-Hydrogel-Zinc Oxide Particles to Act as Adsorbent and Photocatalyst
Materials,
2022
DOI:10.3390/ma15196649
|
|
|
[46]
|
Macroporous 3D Chitosan Cryogels for Fastac 10EC Pesticide Adsorption and Antibacterial Applications
Polymers,
2022
DOI:10.3390/polym14153145
|
|
|
[47]
|
Monitoring the growth, survival and phenol utilization of the fluorescent-tagged Pseudomonas oleovorans immobilized and free cells
Bioresource Technology,
2021
DOI:10.1016/j.biortech.2021.125568
|
|
|
[48]
|
Monitoring the growth, survival and phenol utilization of the fluorescent-tagged Pseudomonas oleovorans immobilized and free cells
Bioresource Technology,
2021
DOI:10.1016/j.biortech.2021.125568
|
|
|
[49]
|
Stabilization of lead in waste water and farmland soil using modified coal fly ash
Journal of Cleaner Production,
2021
DOI:10.1016/j.jclepro.2021.127957
|
|
|
[50]
|
Monitoring the growth, survival and phenol utilization of the fluorescent-tagged Pseudomonas oleovorans immobilized and free cells
Bioresource Technology,
2021
DOI:10.1016/j.biortech.2021.125568
|
|
|
[51]
|
Graphene and Nanoparticles Hybrid Nanocomposites
Composites Science and Technology,
2021
DOI:10.1007/978-981-33-4988-9_8
|
|
|
[52]
|
Translocation of residual ethoprophos and tricyclazole from soil to spinach
Applied Biological Chemistry,
2021
DOI:10.1186/s13765-021-00619-0
|
|
|
[53]
|
Stabilization of lead in waste water and farmland soil using modified coal fly ash
Journal of Cleaner Production,
2021
DOI:10.1016/j.jclepro.2021.127957
|
|
|
[54]
|
Thermal, Mechanical, Microstructural and Inhibitory Characteristics of Sodium Caseinate Based Bioactive Films Reinforced by ZnONPs/Encapsulated Melissa officinalis Essential Oil
Journal of Inorganic and Organometallic Polymers and Materials,
2021
DOI:10.1007/s10904-020-01777-2
|
|
|
[55]
|
Ethoprophos induces cardiac toxicity in zebrafish embryos
Ecotoxicology and Environmental Safety,
2021
DOI:10.1016/j.ecoenv.2021.113029
|
|
|
[56]
|
The Development of a Low-Cost Method for Monitoring Methane Leakage from the Subsurface of Natural Gas Fields
Methane,
2021
DOI:10.3390/methane1010003
|
|
|
[57]
|
Formulation and In-Vitro Characterization of Chitosan-Nanoparticles Loaded with the Iron Chelator Deferoxamine Mesylate (DFO)
Pharmaceutics,
2020
DOI:10.3390/pharmaceutics12030238
|
|
|
[58]
|
Adsorption kinetics of methyl orange from water by pH-sensitive poly(2-(dimethylamino)ethyl methacrylate)/nanocrystalline cellulose hydrogels
Environmental Science and Pollution Research,
2020
DOI:10.1007/s11356-020-09127-y
|
|
|
[59]
|
Biopolymer Membranes and Films
2020
DOI:10.1016/B978-0-12-818134-8.00015-8
|
|
|
[60]
|
Synthesis of zinc oxide nanostructures using orange peel oil for fabricating chitosan-zinc oxide composite films and their antibacterial activity
Journal of Polymer Research,
2020
DOI:10.1007/s10965-020-2033-9
|
|
|
[61]
|
Adsorption-desorption and leaching behaviors of broflanilide in four texturally different agricultural soils from China
Journal of Soils and Sediments,
2020
DOI:10.1007/s11368-020-02831-9
|
|
|
[62]
|
Formulation and In-Vitro Characterization of Chitosan-Nanoparticles Loaded with the Iron Chelator Deferoxamine Mesylate (DFO)
Pharmaceutics,
2020
DOI:10.3390/pharmaceutics12030238
|
|
|
[63]
|
Optimizing and modeling Cu(II) removal from simulated wastewater using attapulgite modified with Keggin ions with the aid of RSM, BP-ANN, and GA-BP
Desalination and Water Treatment,
2020
DOI:10.5004/dwt.2020.26429
|
|
|
[64]
|
Removal of some commercial pesticides from aqueous dispersions using as flocculant a thymine-containing chitosan derivative
Separation and Purification Technology,
2019
DOI:10.1016/j.seppur.2018.09.013
|
|
|
[65]
|
Facile 3D Boron Nitride Integrated Electrospun Nanofibrous Membranes for Purging Organic Pollutants
Nanomaterials,
2019
DOI:10.3390/nano9101383
|
|
|
[66]
|
Removal of some commercial pesticides from aqueous dispersions using as flocculant a thymine-containing chitosan derivative
Separation and Purification Technology,
2019
DOI:10.1016/j.seppur.2018.09.013
|
|
|
[67]
|
Chitosan-Coating Deposition via Galvanic Coupling
ACS Biomaterials Science & Engineering,
2019
DOI:10.1021/acsbiomaterials.8b01548
|
|
|
[68]
|
Preparing chitosan–polyaniline nanocomposite film and examining its mechanical, electrical, and antimicrobial properties
Polymers and Polymer Composites,
2019
DOI:10.1177/0967391119851439
|
|
|
[69]
|
Effect of surface chemistry and content of nanocrystalline cellulose on removal of methylene blue from wastewater by poly(acrylic acid)/nanocrystalline cellulose nanocomposite hydrogels
Cellulose,
2019
DOI:10.1007/s10570-019-02490-1
|
|
|
[70]
|
Preparation of chitosan/zinc oxide/Melissa officinalis essential oil nano-composite film and evaluation of physical, mechanical and antimicrobial properties by response surface method
Polymer Testing,
2019
DOI:10.1016/j.polymertesting.2019.106004
|
|
|
[71]
|
Aluminium removal and recovery from wastewater and soil using isolated indigenous bacteria
Journal of Environmental Management,
2019
DOI:10.1016/j.jenvman.2019.109412
|
|
|
[72]
|
Facile 3D Boron Nitride Integrated Electrospun Nanofibrous Membranes for Purging Organic Pollutants
Nanomaterials,
2019
DOI:10.3390/nano9101383
|
|
|
[73]
|
Efficiency of activated carbons and natural bentonite to remove direct orange 39 from water
Journal of Environmental Chemical Engineering,
2019
DOI:10.1016/j.jece.2019.103496
|
|
|
[74]
|
Production of Biodegradable Film Based on Polylactic Acid, Modified with Lycopene Pigment and TiO2 and Studying Its Physicochemical Properties
Journal of Polymers and the Environment,
2019
DOI:10.1007/s10924-019-01618-5
|
|
|
[75]
|
Structure/property relationship of polyvinyl alcohol/dimethoxydimethylsilane composite membrane: Experimental and theoretical studies
Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy,
2019
DOI:10.1016/j.saa.2019.117810
|
|
|
[76]
|
Chitosan-Coating Deposition via Galvanic Coupling
ACS Biomaterials Science & Engineering,
2019
DOI:10.1021/acsbiomaterials.8b01548
|
|
|
[77]
|
Nanocomposite framework of chitosan/polyvinyl alcohol/ZnO: Preparation, characterization, swelling and antimicrobial evaluation
Journal of Molecular Liquids,
2018
DOI:10.1016/j.molliq.2017.12.032
|
|
|
[78]
|
Microbial Action on Hydrocarbons
2018
DOI:10.1007/978-981-13-1840-5_21
|
|
|
[79]
|
Development of supercapacitor systems based on binary and ternary nanocomposites using chitosan, graphene and polyaniline
Chemical Data Collections,
2018
DOI:10.1016/j.cdc.2018.11.003
|
|
|
[80]
|
Improving of the Mg-Co nanoferrites efficiency for crude oil adsorption from aqueous solution by blending them with chitosan hydrogel
Environmental Science and Pollution Research,
2018
DOI:10.1007/s11356-018-3557-y
|
|
|
[81]
|
An Experimental Study of Photocatalytic Degradation of Congo Red Using Polymer Nanocomposite Films
Journal of Chemistry,
2018
DOI:10.1155/2018/9651850
|
|
|
[82]
|
Organic Pollutants in Water and its Remediation Using Biowaste Activated Carbon as Greener Adsorbent
International Journal of Hydrology,
2017
DOI:10.15406/ijh.2017.01.00017
|
|
|
[83]
|
Preparation, characterization and toxicity evaluation of
Co
3
O
4
and NiO-filled multi-walled carbon nanotubes loaded to chitosan
Nano-Structures & Nano-Objects,
2017
DOI:10.1016/j.nanoso.2017.09.008
|
|
|
[84]
|
Development and performance characteristics of silane crosslinked poly(vinyl alcohol)/chitosan membranes for reverse osmosis
Journal of Industrial and Engineering Chemistry,
2017
DOI:10.1016/j.jiec.2016.12.025
|
|
|
[85]
|
Removal of Cd2+ions from aqueous solution using cassava starch-based superabsorbent polymers
Journal of Applied Polymer Science,
2017
DOI:10.1002/app.44758
|
|
|
[86]
|
Degradation of traditional and new emerging pesticides in water by nanomaterials: recent trends and future recommendations
International Journal of Environmental Science and Technology,
2017
DOI:10.1007/s13762-017-1512-y
|
|
|
[87]
|
Removal of Cd2+ ions from aqueous solution using cassava starch–based superabsorbent polymers
Journal of Applied Polymer Science,
2017
DOI:10.1002/app.44758
|
|
|
[88]
|
Synergistic removal of Cu(II) and nitrazine yellow dye using an eco‐friendly chitosan‐montmorillonite hydrogel: Optimization by response surface methodology
Journal of Applied Polymer Science,
2016
DOI:10.1002/app.43664
|
|
|
[89]
|
Novel Improvements in Thermal and Hydrophobic Properties of Chitosan Reinforced by Rice Husk Ash
Polymers from Renewable Resources,
2016
DOI:10.1177/204124791600700401
|
|
|
[90]
|
Optimization study of adsorption parameters for removal of phenol on gastropod shell dust using response surface methodology
Clean Technologies and Environmental Policy,
2016
DOI:10.1007/s10098-015-1026-6
|
|
|
[91]
|
Adsorptive removal of monocrotophos from aqueous solution using biopolymer modified montmorillonite–CuO composites: Equilibrium, kinetic and thermodynamic studies
Process Safety and Environmental Protection,
2016
DOI:10.1016/j.psep.2015.10.009
|
|
|
[92]
|
Treatment of Oily Wastewater by Using Porous PVA Hydrogels as Oil Adsorbent
Journal of Dispersion Science and Technology,
2016
DOI:10.1080/01932691.2015.1062774
|
|
|
[93]
|
Synergistic removal of Cu(II) and nitrazine yellow dye using an eco-friendly chitosan-montmorillonite hydrogel: Optimization by response surface methodology
Journal of Applied Polymer Science,
2016
DOI:10.1002/app.43664
|
|
|
[94]
|
Proton play in the formation of low molecular weight chitosan (LWCS) by hydrolyzing chitosan with a carbon based solid acid
Carbohydrate Polymers,
2016
DOI:10.1016/j.carbpol.2016.05.082
|
|
|
[95]
|
The efficient hemostatic effect of Antarctic krill chitosan is related to its hydration property
Carbohydrate Polymers,
2015
DOI:10.1016/j.carbpol.2015.06.030
|
|
|