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      KCI등재 SCOPUS SCIE

      ZnS nanoparticles as new additive for polyethersulfone membrane in humic acid filtration

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      https://www.riss.kr/link?id=A106442687

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      다국어 초록 (Multilingual Abstract)

      In this report, well-dispersed ZnS nanoparticles were applied as inorganic additives for polyethersulfone(PES) membrane to improve anti-fouling performance. ZnS nanoparticles were synthesized by lowtemperature precipitation and phase inversion method ...

      In this report, well-dispersed ZnS nanoparticles were applied as inorganic additives for polyethersulfone(PES) membrane to improve anti-fouling performance. ZnS nanoparticles were synthesized by lowtemperature precipitation and phase inversion method was used to embed them into PES membrane forhumic acid (HA)filtration. Intrinsic properties of the PES-ZnS composite membrane developed wereinvestigated at different ZnS loadings. Compared to the control PES membrane, the PES-ZnS membraneimproved hydrophilicity, porosity and thermal stability. Effect of ZnS on theflux recovery of the PESmembrane fouled with HA was more pronounced than that as TiO2 was used as embedding materials.

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      참고문헌 (Reference)

      1 A. Sotto, 21 : 10311-, 2011

      2 F. Wang, 26 : 345402-, 2015

      3 Xiaosheng Fang, "ZnS nanostructures: From synthesis to applications" Elsevier BV 56 (56): 175-287, 2011

      4 Sovann Khan, "ZnS Nano-Spheres Formed by the Aggregation of Small Crystallites and Their Photocatalytic Degradation of Eosin B" Wiley 35 (35): 159-164, 2017

      5 Ghanshyam L. Jadav, "Synthesis of novel silica-polyamide nanocomposite membrane with enhanced properties" Elsevier BV 328 (328): 257-267, 2009

      6 Xin Li, "Progress and perspectives for synthesis of sustainable antifouling composite membranes containing in situ generated nanoparticles" Elsevier BV 524 : 502-528, 2017

      7 Jing Guo, "Preparation and immobilization of zinc sulfide (ZnS) nanoparticles on polyvinylidene fluoride pellets for photocatalytic degradation of methylene blue in wastewater" Elsevier BV 473 : 425-432, 2019

      8 Jing Guo, "Preparation and characterization of polyethersulfone mixed matrix membranes embedded with Ti- or Zr-incorporated SBA-15 materials" 한국공업화학회 45 : 257-265, 2017

      9 A. Bottino, "Preparation and characterization of novel porous PVDF-ZrO2 composite membranes" Elsevier BV 146 (146): 35-40, 2002

      10 Changli Lü, "Preparation and characterization of ZnS–polymer nanocomposite films with high refractive index" Royal Society of Chemistry (RSC) 13 (13): 2189-2195, 2003

      1 A. Sotto, 21 : 10311-, 2011

      2 F. Wang, 26 : 345402-, 2015

      3 Xiaosheng Fang, "ZnS nanostructures: From synthesis to applications" Elsevier BV 56 (56): 175-287, 2011

      4 Sovann Khan, "ZnS Nano-Spheres Formed by the Aggregation of Small Crystallites and Their Photocatalytic Degradation of Eosin B" Wiley 35 (35): 159-164, 2017

      5 Ghanshyam L. Jadav, "Synthesis of novel silica-polyamide nanocomposite membrane with enhanced properties" Elsevier BV 328 (328): 257-267, 2009

      6 Xin Li, "Progress and perspectives for synthesis of sustainable antifouling composite membranes containing in situ generated nanoparticles" Elsevier BV 524 : 502-528, 2017

      7 Jing Guo, "Preparation and immobilization of zinc sulfide (ZnS) nanoparticles on polyvinylidene fluoride pellets for photocatalytic degradation of methylene blue in wastewater" Elsevier BV 473 : 425-432, 2019

      8 Jing Guo, "Preparation and characterization of polyethersulfone mixed matrix membranes embedded with Ti- or Zr-incorporated SBA-15 materials" 한국공업화학회 45 : 257-265, 2017

      9 A. Bottino, "Preparation and characterization of novel porous PVDF-ZrO2 composite membranes" Elsevier BV 146 (146): 35-40, 2002

      10 Changli Lü, "Preparation and characterization of ZnS–polymer nanocomposite films with high refractive index" Royal Society of Chemistry (RSC) 13 (13): 2189-2195, 2003

      11 Jun Yin, "Polymer-matrix nanocomposite membranes for water treatment" Elsevier BV 479 : 256-275, 2015

      12 Sibel Sen Kavurmaci, "Photocatalytic degradation of humic acid in the presence of montmorillonite" Elsevier BV 75-76 : 60-66, 2013

      13 G.S. Lai, "Novel mixed matrix membranes incorporated with dual-nanofillers for enhanced oil-water separation" Elsevier BV 178 : 113-121, 2017

      14 Hongchen Song, "Natural organic matter removal and flux decline with PEG–TiO2-doped PVDF membranes by integration of ultrafiltration with photocatalysis" Elsevier BV 405-406 : 48-56, 2012

      15 Yasin Orooji, "Nanostructured mesoporous carbon polyethersulfone composite ultrafiltration membrane with significantly low protein adsorption and bacterial adhesion" Elsevier BV 111 : 689-704, 2017

      16 Matthew J. Bachus, "Nanoinfusion of ZnO and ZnS nanoparticles into ethylene vinyl acetate in situ for improved optical properties" Wiley 34 (34): 354-358, 2013

      17 Anne Braghetta, "NOM Accumulation at NF Membrane Surface: Impact of Chemistry and Shear" American Society of Civil Engineers (ASCE) 124 (124): 1087-1098, 1998

      18 Jing Guo, "Modifications of polyethersulfone membrane by doping sulfated-TiO 2 nanoparticles for improving anti-fouling property in wastewater treatment" Royal Society of Chemistry (RSC) 7 (7): 33822-33828, 2017

      19 Yanxiao Yuan, "Mass transport modeling of natural organic matter (NOM) and salt during Nanofiltration of inorganic colloid-NOM mixtures" Elsevier BV 429 : 60-69, 2018

      20 Yi Feng, "Inorganic particle enhanced polymer hollow fiber membranes with high mechanical properties" Elsevier BV 167 : 209-218, 2015

      21 Xing Zheng, "Identification and quantification of major organic foulants in treated domestic wastewater affecting filterability in dead-end ultrafiltration" Elsevier BV 43 (43): 238-244, 2009

      22 Sovann Khan, "Humic acid fouling in a submerged photocatalytic membrane reactor with binary TiO2–ZrO2 particles" 한국공업화학회 21 (21): 779-786, 2015

      23 Wei Yuan, "Humic Acid Fouling during Ultrafiltration" American Chemical Society (ACS) 34 (34): 5043-5050, 2000

      24 Yi Li, "Highly selective sulfonated polyethersulfone (SPES)-based membranes with transition metal counterions for hydrogen recovery and natural gas separation" Elsevier BV 308 (308): 128-135, 2008

      25 Hooman Adib, "Fabrication of integrally skinned asymmetric membranes based on nanocomposite polyethersulfone by supercritical CO2 for gas separation" Elsevier BV 97 : 6-15, 2015

      26 Abhijit Majhi, "Fabrication and characterization of γ-Al2O3–clay composite ultrafiltration membrane for the separation of electrolytes from its aqueous solution" Elsevier BV 340 (340): 181-191, 2009

      27 Ceyda Senem Uyguner, "Evaluation of humic acid photocatalytic degradation by UV–vis and fluorescence spectroscopy" Elsevier BV 101 (101): 267-274, 2005

      28 Jiuyang Lin, "Enhancement of polyethersulfone (PES) membrane doped by monodisperse Stöber silica for water treatment" Elsevier BV 107 : 194-205, 2016

      29 Jeonghwan Kim, "Embedding TiO2 nanoparticles versus surface coating by layer-by-layer deposition on nanoporous polymeric films" Elsevier BV 173 : 121-128, 2013

      30 Arcadio Sotto, "Effect of nanoparticle aggregation at low concentrations of TiO2 on the hydrophilicity, morphology, and fouling resistance of PES–TiO2 membranes" Elsevier BV 363 (363): 540-550, 2011

      31 A COSTA, "Effect of membrane pore size and solution chemistry on the ultrafiltration of humic substances solutions" Elsevier BV 255 (255): 49-56, 2005

      32 Julian S. Taurozzi, "Effect of filler incorporation route on the properties of polysulfone–silver nanocomposite membranes of different porosities" Elsevier BV 325 (325): 58-68, 2008

      33 Ruixin Zhou, "CO 2 Reduction under Periodic Illumination of ZnS" American Chemical Society (ACS) 118 (118): 11649-11656, 2014

      34 Stefan Balta, "A new outlook on membrane enhancement with nanoparticles: The alternative of ZnO" Elsevier BV 389 : 155-161, 2012

      35 S.S. Madaeni, "A new approach to improve antifouling property of PVDF membrane using in situ polymerization of PAA functionalized TiO2 nanoparticles" Elsevier BV 380 (380): 155-162, 2011

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      2016 3.4 0.75 2.84
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