[1]
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Multifunctional nanoclay‐based hemostatic materials for wound healing: a review
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Advanced Healthcare …,
2024 |
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[2]
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A critical review on the separation of heavy metal (loid) s from the contaminated water using various agricultural wastes
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International journal …,
2024 |
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[3]
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Redox control of chromium in the red soils from China evidenced by Cr stable isotopes
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Journal of Hazardous Materials,
2024 |
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[4]
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Factorial experimental design optimisation of adsorption process for removing chrome ion using crude biomass
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International Journal of …,
2024 |
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[5]
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Adsorption of microconstituents
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… in the environment …,
2023 |
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[6]
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Investigation of Strontium (II) Ions Adsorption onto Long Chain Quaternary Amine Cationic-Volcanite: Modeling and Optimization by RSM
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Karaelmas Fen ve Mühendislik Dergisi,
2023 |
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[7]
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Study of starch-graft-itaconic acid hydrogels in the batch adsorption of Cr (III) and Cr (VI)
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2023 |
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[8]
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Recycling of phosphorus-recovered incinerated sewage sludge ash for stabilization/solidification of contaminated marine sediments
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2023 |
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[9]
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Greening of brick and tile production: an index to evaluate its environmental performance.
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Pollution …,
2023 |
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[10]
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Selective adsorption of Cr (III) over Cr (VI) by starch-graft-itaconic acid hydrogels
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Ceballos, R Roy, A Golsztajn… - Journal of Hazardous …,
2023 |
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Spectroscopic and microestructural evidence for T-2 toxin adsorption mechanism by natural bentonite modified with organic cations
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García, E Cristiani-Urbina… - Toxins,
2023 |
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[12]
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Greening of brick and tile production: an index to evaluate its environmental performance
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Pollution,
2023 |
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[13]
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КОМПОЗИТ ЦЕОЛІТ/ПОЛІАНІЛІН: СИНТЕЗ ТА АДСОРБЦІЙНІ ВЛАСТИВОСТІ СТОСОВНО CR (VI).
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Polymer Journal …,
2023 |
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[14]
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АДСОРБЦІЯ Cr (VI) ПОЛІАНІЛІНОМ ТА КОМПОЗИТОМ ЦЕОЛІТ/ПОЛІАНІЛІН-СУЛЬФАТНА КИСЛОТА
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В?сник Льв?вського ун?верситету. Сер?я х?м?чна,
2022 |
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Metallic nanoparticles for catalytic reduction of toxic hexavalent chromium from aqueous medium: A state-of-the-art review
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Science of The Total …,
2022 |
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[16]
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Carbon Nanotubes in Wastewater Remediation
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Nanomaterials for …,
2022 |
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[17]
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Removal of hexavalent chromium ions using micellar modified adsorbent: isothermal and kinetic investigations
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RSC …,
2022 |
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[18]
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Optimizing removal of chromium (VI) ions from water by coagulation process using central composite design: Effectiveness of grape seed as a green coagulant
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Separation and …,
2022 |
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[19]
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Cetyltrimethylammonium bromide–Oleic acid (CTAB-OA) bilayer coated iron oxide nanocrystals for enhanced chromium (VI) photoreduction via ligand-to-metal …
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Chemical Engineering Journal,
2022 |
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[20]
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Review of binder jetting 3D printing in the construction industry
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Progress in Additive Manufacturing,
2022 |
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[21]
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Modeling and scaling up of the Cr (VI) adsorption process by using mexicalcite natural mineral in a packed bed column
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Olivares, C Pérez-Alonso… - Results in …,
2022 |
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[22]
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Additive manufacturing of sodalite monolith for continuous heavy metal removal from water sources
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Chinese Journal of …,
2022 |
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[23]
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Advances in spectrophotometric determination of Chromium(III) and Chromium(VI) in water: a review
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International Journal of Environmental …,
2022 |
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[24]
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Speciation of Chromium Compounds from Zsm-5 into an Ionic Liquid
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2021 |
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[25]
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New Biologicals to Assist Clotting
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2021 |
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[26]
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Utilization of Low-Cost Adsorbents for the Adsorption Process of Chromium ions.
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2021 |
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[27]
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Novel recycling of phosphorus-recovered incinerated sewage sludge ash residues by co-pyrolysis with lignin for reductive/sorptive removal of hexavalent chromium …
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2021 |
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[28]
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POLYMER/METAL OXIDE MODIFIED CLAY NANOFIBROUS MEMBRANES FOR DECONTAMINATION
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2021 |
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[29]
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Выделение соединений хрома из ZSM-5 в ионную жидкость
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2021 |
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[30]
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混煤燃烧过程中砷/硒与飞灰中矿物质之间的高温原位反应
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shuo, Z Bo, X Zi-jiang… - 燃料化学学报 (中 …,
2020 |
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[31]
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Enhanced removal of hexavalent chromium by different acid-modified biochar derived from corn straw: behavior and mechanism
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2020 |
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[32]
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Removal of Cr and Mn from aqueous medium using bentonites and their derivatives
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2020 |
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[33]
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Electrostatic charging behaviour of a silica powder during pulse pneumatic conveying
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2020 |
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[34]
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Interplay of transport processes and interfacial chemistry affecting chromium reduction and reoxidation with iron and manganese
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2020 |
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[35]
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Removal of polycyclic aromatic hydrocarbons from aqueous media using modified clinoptilolite
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2020 |
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[36]
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Titanium dioxide, layered hydrazinium titanate and eggshell as potential sorbents for remediation of chromium from aqueous stream
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2020 |
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[37]
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Fabrication strategies and Cr (VI) elimination activities of the MOF-derivatives and their composites
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2020 |
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[38]
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Estudio comprensivo sobre la remoción de iones cromatos a diferente basicidad con zeolita tipo mordenita natural
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2020 |
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[39]
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In-situ reaction between arsenic/selenium and minerals in fly ash at high temperature during blended coal combustion
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2020 |
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[40]
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Desarrollo de membranas porosas a partir de zeolita natural para la disminución de cadmio contenido en agua
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2019 |
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[41]
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Synthesis and Characterization of Natural Zeolite with Ordered Ion Imprinted Polymer Structures (IIP@ AFINZ) for Selective Cr (VI) Adsorption from Aqueous Solution
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2019 |
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[42]
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Fractionation Behavior of Chromium Isotopes during the Sorption of Cr (VI) on Kaolin and its Implications for Using Black Shales as a Paleoredox Archive
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2019 |
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[43]
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Kinetics and thermodynamic studies of Cr (VI) adsorption using environmental friendly multifunctional zeolites synthesized from coal fly ash under mild conditions
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2019 |
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[44]
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DESARROLLO DE MATRICES MESOPOROSAS SBA-15, DOPADAS, PARA LA DISMINUCIÓN DE CROMO EN AGUA
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2019 |
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[45]
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Performance of composite mineral adsorbents for removing Cu, Cd, and Pb ions from polluted water
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2019 |
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[46]
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Recent innovative research on chromium (VI) adsorption mechanism
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2019 |
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[47]
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The Effect of Crystalline Phase on the Simultaneous Degradation of Phenol and Reduction of Chromium (VI) Using UV/TiO2 Photocatalysis
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2019 |
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[48]
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Sorption Properties of Organo Modified Montmorillonite Clay for the Reclamation of Chromium (VI) from Waste Water
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Silicon,
2018 |
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[49]
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Adsorption performance of Cr (VI)-imprinted poly (4-VP-co-MMA) supported on activated Indonesia (Ende-Flores) natural zeolite structure for Cr (VI) removal from …
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Journal of Environmental Chemical Engineering,
2018 |
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[50]
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How to Improve Selectivity of a Material for Adsorptive Separation Applications
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Handbook of Environmental Materials Management,
2018 |
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[51]
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Kinetics, isotherm, and optimization of the hexavalent chromium removal from aqueous solution by a magnetic nanobiosorbent
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Environmental Science and Pollution Research,
2018 |
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[52]
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Towards Engineering Advanced Nanomaterials: Elucidating Fundamental Particle Behavior in Water and Critical Sorption Dynamics
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2018 |
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[53]
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Engineered Superparamagnetic Nanomaterials for Arsenic (V) and Chromium (VI) Sorption and Separation: Quantifying the Role of Organic Surface Coatings
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Environmental Science: Nano,
2018 |
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[54]
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Removal of polycyclic aromatic hydrocarbons from deionized water and landfill leachate by using modified clinoptilolites
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2018 |
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[55]
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Formation of Porous Wollastonite-based Ceramics after Sintering With Yeast as the Pore-forming Agent
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Science of Sintering,
2017 |
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[56]
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A review for chromium removal by carbon nanotubes
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Biocontrol Science and Technology,
2017 |
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[57]
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Removal of Cr (VI) from aqueous solutions by Tur Pod (Cajanus cajan)
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2017 |
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[58]
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Sequential batch contactors for removal of chromium (VI) from wastewater using sheep's wool
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2017 |
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[59]
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Development of gallium-doped mesoporous bioactive glass as hemostatic agent/Sara Pourshahrestani
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2017 |
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[60]
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Development of Gallium-Doped Mesoporous Bioactive Glass as Hemostatic Agent
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2017 |
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[61]
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Biocomposite efficiency for Cr (VI) adsorption: Kinetic, equilibrium and thermodynamics studies
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Journal of Environmental Chemical Engineering,
2016 |
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[62]
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Biosorption and bioaccumulation of chromate from aqueous solution by a newly isolated Bacillus mycoides strain 200AsB1
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RSC Advances,
2016 |
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[63]
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Removal of Cr (VI) Species from Aqueous Solution by Different Nanoporous Materials
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2016 |
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[64]
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Low-temperature plasma-modified Zeolite vs. natural Bulgarian Zeolite-comparative physicochemical, spectrophotochemical and fourier transform infrared …
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Macedonian Journal of Chemistry and Chemical Engineering,
2016 |
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[65]
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Low-temperature plasma-modified zeolite (LTPMZ) vs. natural Bulgarian zeolite (NBZ)–Comparative physicochemical, UV/VIS and FTIR studies
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Macedonian Journal of Chemistry and Chemical Engineering,
2016 |
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[66]
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Photocatalytic Degradation of Salicylic Acid and Reduction of Cr (VI) using TiO2
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2016 |
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[67]
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IMPLEMENTATION OF GUIDED INQUIRY LEARNING MODEL TO PRACTICE CRITICAL THINKING SKILL ON CHEMICAL EQUILIBRIUM MATERIAL AT SMA NEGERI 1 PROBOLINGGO
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UNESA Journal of Chemical Education,
2016 |
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Intensification of ions of Chrome (vi) Removal during Waste Water Treatment with Magnetic Field
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2015 |
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2015 |
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Batch adsorptive removal of benzoic acid from aqueous solution onto modified natural vermiculite: Kinetic, isotherm and thermodynamic studies
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Journal of Industrial and Engineering Chemistry,
2015 |
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[71]
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Inorganic hemostats: The state-of-the-art and recent advances
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Materials Science and Engineering: C,
2015 |
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[72]
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Magnetic adsorbents based on micro-and nano-structured materials
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RSC Advances,
2015 |
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[73]
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ВЛИЯНИЕ МАГНИТНОГО ПОЛЯ НА ПРОЦЕСС ОЧИСТКИ СТОЧНЫХ ВОД ОТ ИОНОВ ХРОМА ОТХОДАМИ МЕТАЛЛООБРАБОТКИ
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2015 |
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[74]
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The influence of mechanochemical activation and thermal treatment on magnetic properties of the BaTiO3-FexOy powder mixture
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2015 |
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[75]
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Интенсификация процесса очистки сточных вод от ионов хрома (VI) магнитным полем
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2015 |
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[76]
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Dwonload 2168. pdf
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2015 |
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[77]
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A Review on Cr (VI) Adsorption Using Inorganic Materials
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Langmuir,
2014 |
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[78]
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粉煤灰活性炭吸附含 Cr 废水试验研究
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有色金属科学与工程,
2014 |
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[79]
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Redox-Responsive Copper (I) Metallogel: A Metal–Organic Hybrid Sorbent for Reductive Removal of Chromium (VI) from Aqueous Solution
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Langmuir,
2014 |
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[80]
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Experimental study on removing Cr from aqueous solutions by coal fly ash carbon with adsorption
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有色金属科学与工程,
2014 |
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[81]
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Dispersion of carbon nanotubes in water and non-aqueous solvents
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RSC Advances,
2013 |
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[82]
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CATIONIC SORPTION OF HEXAVALENT CHROMIUM USING TOBERMORITE
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2013 |
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