Neutral - Eradication of As (III) and Congo red (CR) with green iron oxide (GIO) loaded chitosan(C) - (C - GIO) beads by a non - Thermal plasma jet via potential study.
暂无分享,去创建一个
[1] Abdel-rahman Mohamed,et al. Green synthesis and characterization of iron oxide nanoparticles for the removal of heavy metals (Cd2+ and Ni2+) from aqueous solutions with Antimicrobial Investigation , 2023, Scientific reports.
[2] Mahaveer D. Kurkuri,et al. Functional porous Ce-UiO-66 MOF@Keratin composites for the efficient adsorption of trypan blue dye from wastewater: A step towards practical implementations , 2023, Chemical Engineering Journal.
[3] M. Jang,et al. Green Iron Oxide (GIO) utilized for reductive removal of As(III) and methyl red (MR) with non-thermal plasma via synergistic catalytic study , 2023, Journal of Environmental Chemical Engineering.
[4] J. R. Koduru,et al. Enhanced adsorption removal of As(III) using MnOFe2O3 with the non-thermal atmospheric pressure plasma jet via the catalytic redox-adsorptive phenomenon , 2023, Journal of Water Process Engineering.
[5] Mahaveer D. Kurkuri,et al. Efficient separation of arsenic species of oxyanion As (III) and As (V) by using effective polymer inclusion membranes (PIM). , 2023, Chemosphere.
[6] W. Chiappim,et al. Effect of the pH on the Antibacterial Potential and Cytotoxicity of Different Plasma-Activated Liquids , 2022, International journal of molecular sciences.
[7] D. Chakravortty,et al. Generation of neutral pH high‐strength plasma‐activated water from a pin to water discharge and its bactericidal activity on multidrug‐resistant pathogens , 2022, Plasma Processes and Polymers.
[8] Mahaveer D. Kurkuri,et al. Sustainable Green Functional Nano Aluminium Fumarate-MOF Decorated on 3D Low-Cost Natural Diatoms for the Removal of Congo Red Dye and Fabric Whitening Agent from Wastewater: Batch & Continuous Adsorption Process , 2022, Materials Today Communications.
[9] R. Deshmukh,et al. Degradation and Detoxification of Remazol Blue Contaminants as a Model Textile Effluent via Advanced Nonthermal Plasma Oxidation Processes , 2022, IEEE Transactions on Plasma Science.
[10] N. Kaushik,et al. Nonthermal plasma‐generated ozone inhibits human coronavirus 229E infectivity on glass surface , 2022, Plasma Processes and Polymers.
[11] N. Kaushik,et al. Nitric-oxide enriched plasma-activated water inactivates 229E coronavirus and alters antiviral response genes in human lung host cells , 2022, Bioactive Materials.
[12] R. Morent,et al. Combinatorial effects of non-thermal plasma oxidation processes and photocatalytic activity on the inactivation of bacteria and degradation of toxic compounds in wastewater , 2022, RSC advances.
[13] T. de Caro,et al. A comprehensive strategy for exploring corrosion in iron-based artefacts through advanced Multiscale X-ray Microscopy , 2022, Scientific Reports.
[14] A. Fujishima,et al. Interactions between pH, reactive species, and cells in plasma-activated water can remove algae , 2022, RSC Advances.
[15] J. Xia,et al. Fe(II) bio-oxidation mediates red mud transformations to form Fe(III)/Al (hydr)oxide adsorbent for efficient As(V) removal under acidic conditions , 2022, Chemical Engineering Journal.
[16] G. Pan,et al. Efficient arsenic removal by a bifunctional heterogeneous catalyst through simultaneous hydrogen peroxide (H2O2) catalytic oxidation and adsorption , 2021, Journal of Cleaner Production.
[17] I. Aranaz,et al. Chitosan: An Overview of Its Properties and Applications , 2021, Polymers.
[18] N. H. Hieu,et al. Preparation of magnetic manganese ferrite/graphene oxide nanocomposites as efficient adsorbents towards ibuprofen , 2021 .
[19] T. Becker,et al. Uncovering the superior corrosion resistance of iron made via ancient Indian iron-making practice , 2021, Scientific Reports.
[20] M. Y. Naz,et al. Optical characterization of non-thermal plasma jet energy carriers for effective catalytic processing of industrial wastewaters , 2021, Scientific Reports.
[21] A. Glinushkin,et al. Properties and Use of Water Activated by Plasma of Piezoelectric Direct Discharge , 2021, Frontiers in Physics.
[22] Youngmee Kim,et al. Analysis of the effects of Cu-MOFs on fungal cell inactivation , 2020, RSC advances.
[23] G. Mihalache,et al. Plant growth promotion effect of plasma activated water on Lactuca sativa L. cultivated in two different volumes of substrate , 2020, Scientific Reports.
[24] Bin Zhang,et al. ROS-responsive and multifunctional anti-Alzheimer prodrugs: Tacrine-ibuprofen hybrids via a phenyl boronate linker. , 2020, European journal of medicinal chemistry.
[25] Arunima Rajan,et al. Assessing magnetic and inductive thermal properties of various surfactants functionalised Fe3O4 nanoparticles for hyperthermia , 2020, Scientific Reports.
[26] R. Amrollahi,et al. Measurement of electron temperature and density of atmospheric plasma needle , 2020, Vacuum.
[27] F. Krčma,et al. Influence of Plasma-Activated Water on Physical and Physical–Chemical Soil Properties , 2020 .
[28] E. Choi,et al. Cold plasma seed priming modulates growth, redox homeostasis and stress response by inducing reactive species in tomato (Solanum lycopersicum). , 2020, Free radical biology & medicine.
[29] H. Uhm,et al. Plasma mediated disinfection of rice seeds in water and air , 2020, Journal of Physics D: Applied Physics.
[30] E. Choi,et al. Cold Atmospheric Plasma-Activated Water Irrigation Induces Defense Hormone and Gene expression in Tomato seedlings , 2019, Scientific Reports.
[31] Valérie Orsat,et al. Nonthermal Plasma-Liquid Interactions in Food Processing: A Review. , 2019, Comprehensive reviews in food science and food safety.
[32] J. De Clercq,et al. Kinetic evaluation of chitosan-derived catalysts for the aldol reaction in water , 2019, Reaction Chemistry & Engineering.
[33] Youngmee Kim,et al. Cobalt(II)-coordination polymers containing glutarates and bipyridyl ligands and their antifungal potential , 2019, Scientific Reports.
[34] Y. Zhang,et al. Heterogeneous catalytic degradation of 2,4-dinitrotoluene by the combined persulfate and hydrogen peroxide activated by the as-synthesized Fe-Mn binary oxides , 2019, Chemical Engineering Journal.
[35] R. Morent,et al. Applications of Plasma-Liquid Systems: A Review , 2019, Materials.
[36] T. Pradeep,et al. Highly-sensitive As3+ detection using electrodeposited nanostructured MnOx and phase evolution of the active material during sensing. , 2019, ACS applied materials & interfaces.
[37] R. Kotnala,et al. Significance of interface barrier at electrode of hematite hydroelectric cell for generating ecopower by water splitting , 2019, International Journal of Energy Research.
[38] M. Saeed,et al. Radiation induced degradation of Congo red dye: a mechanistic study , 2019, Nukleonika.
[39] Zhenhua Zhou,et al. A Multifunctional Nanotherapy for Targeted Treatment of Colon Cancer by Simultaneously Regulating Tumor Microenvironment , 2019, Theranostics.
[40] Rahmi,et al. Preparation of magnetic chitosan using local iron sand for mercury removal , 2019, Heliyon.
[41] G. Pantaleo,et al. Sustainable Recycling of Insoluble Rust Waste for the Synthesis of Iron-Containing Perovskite-Type Catalysts , 2019, ACS omega.
[42] Bùi Xuân Vương,et al. Study on Preparation of Water-Soluble Chitosan with Varying Molecular Weights and Its Antioxidant Activity , 2019, Advances in Materials Science and Engineering.
[43] Jing Zhang,et al. Simultaneous photocatalytic redox removal of chromium(vi) and arsenic(iii) by hydrothermal carbon-sphere@nano-Fe3O4 , 2019, Environmental Science: Nano.
[44] A. Nandiyanto,et al. How to Read and Interpret FTIR Spectroscope of Organic Material , 2019, Indonesian Journal of Science and Technology.
[45] J. Agarwal,et al. 'Chitosan in water' as an eco-friendly and efficient catalytic system for Knoevenagel condensation reaction. , 2018, Carbohydrate polymers.
[46] Caihong Liu,et al. Enhanced removal of arsenite and arsenate by a multifunctional Fe-Ti-Mn composite oxide: Photooxidation, oxidation and adsorption. , 2018, Water research.
[47] N. Wang,et al. A critical review on arsenic removal from water using iron-based adsorbents , 2018, RSC advances.
[48] Ji Man Kim,et al. EDTA-functionalized KCC-1 and KIT-6 mesoporous silicas for Nd3+ ion recovery from aqueous solutions , 2018, Journal of Industrial and Engineering Chemistry.
[49] Jan O Back,et al. Removal of Arsenic from Water with Non-Thermal Plasma (NTP), Coagulation and Membrane Filtration , 2018, Water.
[50] Shiguo Chen,et al. Effects of Nonthermal Plasma Technology on Functional Food Components. , 2018, Comprehensive reviews in food science and food safety.
[51] Eun Ha Choi,et al. Biological and medical applications of plasma-activated media, water and solutions , 2018, Biological chemistry.
[52] K. Siliveru,et al. Plasma activated water (PAW): Chemistry, physico-chemical properties, applications in food and agriculture , 2018, Trends in Food Science & Technology.
[53] V. Ganesan,et al. Electrochemical sensor and biosensor platforms based on advanced nanomaterials for biological and biomedical applications. , 2018, Biosensors & bioelectronics.
[54] Vu Ngoc Phan,et al. Functional manganese ferrite/graphene oxide nanocomposites: effects of graphene oxide on the adsorption mechanisms of organic MB dye and inorganic As(v) ions from aqueous solution , 2018, RSC advances.
[55] M. Usman,et al. Magnetite and Green Rust: Synthesis, Properties, and Environmental Applications of Mixed-Valent Iron Minerals. , 2018, Chemical reviews.
[56] R. Morent,et al. Plasma Modification of Poly Lactic Acid Solutions to Generate High Quality Electrospun PLA Nanofibers , 2018, Scientific Reports.
[57] C. Bailly,et al. Plasma-activation of tap water using DBD for agronomy applications: Identification and quantification of long lifetime chemical species and production/consumption mechanisms. , 2017, Water research.
[58] C. Subrahmanyam,et al. Non-thermal discharge plasma promoted redox transformation of arsenic(III) and chromium(VI) in an aqueous medium , 2017 .
[59] P. Guerrero,et al. Chitosan as a bioactive polymer: Processing, properties and applications. , 2017, International journal of biological macromolecules.
[60] E. Choi,et al. The effect of the gap distance between an atmospheric-pressure plasma jet nozzle and liquid surface on OH and N2 species concentrations , 2017 .
[61] E. Choi,et al. Electron temperature and density of non-thermal atmospheric pressure argon plasma jet by convective wave packet model , 2017 .
[62] Tu Pham,et al. Synthesis and characterization of chitosan-coated magnetite nanoparticles and their application in curcumin drug delivery , 2016 .
[63] A. Nogueira,et al. Study of photoelectrochemical water splitting using composite films based on TiO2 nanoparticles and nitrogen or boron doped hollow carbon spheres as photoanodes , 2016 .
[64] A. Akbarzadeh,et al. Gene silencing effect of SiRNA-magnetic modified with biodegradable copolymer nanoparticles on hTERT gene expression in lung cancer cell line , 2016, Artificial cells, nanomedicine, and biotechnology.
[65] Jing Fang,et al. Non-thermal plasma-activated water inactivation of food-borne pathogen on fresh produce. , 2015, Journal of hazardous materials.
[66] C. Subrahmanyam,et al. Atmospheric pressure non-thermal plasma jet for the degradation of methylene blue in aqueous medium , 2015 .
[67] S. Jayasinghe,et al. Arsenic and human health effects: A review. , 2015, Environmental toxicology and pharmacology.
[68] K. Bhattacharyya,et al. Synthesis and characterization of Co/Ti layered double hydroxide and its application as a photocatalyst for degradation of aqueous Congo Red. , 2015, RSC advances.
[69] S. Govindwar,et al. Mineralization and Detoxification of the Carcinogenic Azo Dye Congo Red and Real Textile Effluent by a Polyurethane Foam Immobilized Microbial Consortium in an Upflow Column Bioreactor , 2015, International journal of environmental research and public health.
[70] Jue Zhang,et al. Assessment of the Physicochemical Properties and Biological Effects of Water Activated by Non-thermal Plasma Above and Beneath the Water Surface , 2015 .
[71] Ji Hoon Park,et al. Generation mechanism of hydroxyl radical species and its lifetime prediction during the plasma-initiated ultraviolet (UV) photolysis , 2015, Scientific Reports.
[72] M. Rinaudo,et al. Chitin and Chitosan Preparation from Marine Sources. Structure, Properties and Applications , 2015, Marine drugs.
[73] Mingbo Wu,et al. A green approach towards simultaneous remediations of chromium(VI) and arsenic(III) in aqueous solution , 2015 .
[74] P. Fazekas,et al. Optical emission spectra analysis of thermal plasma treatment of poly(vinyl chloride) , 2014 .
[75] D. Guzonas,et al. Modeling the Radiolysis of Supercritical Water by Fast Neutrons: Density Dependence of the Yields of Primary Species at 400°C , 2014, Radiation research.
[76] Jinhuai Liu,et al. Preparation and evaluation of magnetic nanoparticles impregnated chitosan beads for arsenic removal from water , 2014 .
[77] J. M. Rees,et al. Characterization of atmospheric pressure microplasma produced from argon and a mixture of argon–ethylenediamine , 2014 .
[78] M. R. Khan,et al. 1.5 MeV proton irradiation effects on electrical and structural properties of TiO2/n-Si interface , 2014 .
[79] Dejun Li,et al. Effect of nitrogen atomic percentage on N+-bombarded MWCNTs in cytocompatibility and hemocompatibility , 2014, Nanoscale Research Letters.
[80] G. Mckay,et al. Mechanism of arsenic removal using chitosan and nanochitosan. , 2014, Journal of colloid and interface science.
[81] Kyoochul Ha,et al. Magnetic iron oxide nanoparticles prepared by electrical wire explosion for arsenic removal , 2013 .
[82] D. Kołodyńska,et al. Chemical Composition of Native Oxide Layers on In^{+} Implanted and Thermally Annealed GaAs , 2013 .
[83] C. Subrahmanyam,et al. Degradation and mineralization of methylene blue by dielectric barrier discharge non-thermal plasma reactor , 2013 .
[84] Jamila S Yamani,et al. Enhanced arsenic removal using mixed metal oxide impregnated chitosan beads. , 2012, Water research.
[85] R. Saravanan,et al. Synthesis and characterization of chitosan–silver nanocomposite , 2012, Applied Nanoscience.
[86] Mingxian Liu,et al. Novel polymer nanocomposite hydrogel with natural clay nanotubes , 2012, Colloid and Polymer Science.
[87] N. Christofi,et al. Photodegradation of congo red using XeBr, KrCl and Cl2 barrier discharge excilamps: A kinetics study , 2011 .
[88] S. Kanazawa,et al. Observation of OH radicals produced by pulsed discharges on the surface of a liquid , 2011 .
[89] T. Pieler,et al. Programming Pluripotent Precursor Cells Derived from Xenopus Embryos to Generate Specific Tissues and Organs , 2010, Genes.
[90] A. Napartovich,et al. Generation of atmospheric pressure non-thermal plasma by diffusive and constricted discharges in air and nitrogen at the rest and flow , 2010 .
[91] T. Pradeep,et al. Manganese dioxide nanowhiskers: A potential adsorbent for the removal of Hg(II) from water , 2010 .
[92] S. Govindwar,et al. Decolorization and detoxification of Congo red and textile industry effluent by an isolated bacterium Pseudomonas sp. SU-EBT , 2010, Biodegradation.
[93] L. Philip,et al. As(III) removal from drinking water using manganese oxide-coated-alumina: Performance evaluation and mechanistic details of surface binding , 2009 .
[94] S. G. Kumar,et al. Photo fenton like process Fe3+/(NH4)2S2O8/UV for the degradation of Di azo dye congo red using low iron concentration , 2009 .
[95] M. Biesinger,et al. Passivation of GaAs by octadecanethiol self-assembled monolayers deposited from liquid and vapor phases , 2009 .
[96] Hind A. Al-Abadleh,et al. Vibrational spectroscopic characterization of some environmentally important organoarsenicals — A guide for understanding the nature of their surface complexes , 2008 .
[97] M. Biesinger,et al. X-ray photoelectron spectroscopic study of the formation of catalytic gold nanoparticles on ultraviolet-ozone oxidized GaAs(100) substrates , 2007 .
[98] M. Biesinger,et al. The role of proximity caps during the annealing of UV-ozone oxidized GaAs , 2007 .
[99] M. Baum,et al. Determination of phosphate/arsenate by a modified molybdenum blue method and reduction of arsenate by S(2)O(4)(2-). , 2007, Talanta.
[100] V. Snoeyink,et al. Optimizing arsenic removal during iron removal: Theoretical and practical considerations. , 2005 .
[101] J. Bollinger,et al. Arsenite oxidation and arsenate determination by the molybdene blue method. , 2003, Talanta.
[102] Y. Sakai,et al. A Novel Method of Dissolving Chitosan in Water for Industrial Application , 2001 .
[103] Abdul Ghaffar,et al. Water purification by electrical discharges , 2001 .
[104] N. A. Martin,et al. Kinetics and mechanism in the decomposition of NH3 in a radio-frequency pulse discharge , 1985 .
[105] M. Sillanpää,et al. Removal of arsenic using iron oxide amended with rice husk nanoparticles from aqueous solution , 2020 .
[106] L. Hultman,et al. X-ray photoelectron spectroscopy: Towards reliable binding energy referencing , 2020, Progress in Materials Science.
[107] Nilay Kahya. Water Soluble Chitosan Derivatives and their Biological Activities: A Review , 2019, Polymer Sciences.
[108] Young I Cho,et al. Non-Equilibrium Plasma Treatment of Liquids, Formation of Plasma Acid , 2011 .
[109] A. Nagar,et al. FTIR STUDY OF ARSENIC INDUCED BIOCHEMICAL CHANGES ON THE LIVER TISSUES OF FRESH WATER FINGERLINGS LABEO ROHITA , 2008 .
[110] J. Brisset,et al. Plasmachemical decolourisation of Bromothymol Blue by gliding electric discharge at atmospheric pressure , 2008 .
[111] Radu Burlica,et al. Formation of reactive species in gliding arc discharges with liquid water , 2006 .