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      KCI등재 SCOPUS SCIE

      Malachite green removal from aqueous solutions using fibrous cellulose sulfate prepared from medical cotton waste: Comprehensive batch and column studies

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      https://www.riss.kr/link?id=A104710744

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      다국어 초록 (Multilingual Abstract)

      In this study, high capacity and regenerable fibrous cellulose sulfate was prepared by chemical modification of medical cotton waste and its performance was evaluated for malachite green removal through batch and fixed-bed experiments. Equilibrium was...

      In this study, high capacity and regenerable fibrous cellulose sulfate was prepared by chemical modification of medical cotton waste and its performance was evaluated for malachite green removal through batch and fixed-bed experiments. Equilibrium was achieved after 30 min of mixing (t90%: 3.5 min at 200 mg L1). The equilibrium and kinetic data were fitted to Redlich–Peterson and Dubinin– Radushkevich models (qm: 960 mg g1) and pseudo-second-order model, respectively. Breakthrough data were predicted by Thomas model. The breakthrough volume was increased by increasing flow rate due to decrease in mass transfer resistance. Adsorbent was regenerated using NaCl solution (4% w/v).

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      참고문헌 (Reference)

      1 M. -H. Baek, 176 (176): 820-, 2010

      2 R. K. Gautam, 212 : 227-, 2015

      3 S. Srivastava, 66 (66): 319-, 2004

      4 X. Liu, 36 (36): 462-, 2015

      5 V. Vimonses, 148 (148): 354-, 2009

      6 R. Malik, 27 (27): 1129-, 2007

      7 B. K. Nandi, 161 (161): 387-, 2009

      8 C. P. Sekhar, 77 (77): 842-, 2009

      9 A. Szydłowska-Czerniak, 81 (81): 613-, 2003

      10 N. Gupta, 9 : S707-S716, 2016

      1 M. -H. Baek, 176 (176): 820-, 2010

      2 R. K. Gautam, 212 : 227-, 2015

      3 S. Srivastava, 66 (66): 319-, 2004

      4 X. Liu, 36 (36): 462-, 2015

      5 V. Vimonses, 148 (148): 354-, 2009

      6 R. Malik, 27 (27): 1129-, 2007

      7 B. K. Nandi, 161 (161): 387-, 2009

      8 C. P. Sekhar, 77 (77): 842-, 2009

      9 A. Szydłowska-Czerniak, 81 (81): 613-, 2003

      10 N. Gupta, 9 : S707-S716, 2016

      11 M. K. Dahri, 2 (2): 1434-, 2014

      12 I. A. Rahman, 96 (96): 1578-, 2005

      13 Z. Bekçi, 154 (154): 254-, 2008

      14 F. Tümsek, 58 (58): 551-, 2013

      15 R. Han, 145 (145): 331-, 2007

      16 E. Gutiérrez-Segura, 223 (223): 5505-, 2012

      17 S. Chen, 113 : 114-, 2012

      18 G.S. Bohart, 42 (42): 1920

      19 H. C. Thomas, 66 (66): 1664-, 1944

      20 L. Ai, 156 (156): 243-, 2010

      21 T. G. Chuah, 175 (175): 305-, 2005

      22 R. St. John Manley, 9 (9): 1025-, 1971

      23 R. Batmaz, 21 (21): 1655-, 2014

      24 A. W. Carpenter, 49 (49): 5277-, 2015

      25 A. Mittal, 133 (133): 196-, 2006

      26 T. Robinson, 77 (77): 247-, 2001

      27 E. Bulut, 115 (115): 234-, 2008

      28 F.N. Azad, 31 : 383-, 2016

      29 M. Jamshidi, 32 : 119-, 2016

      30 Andreas Elsaesser, "Toxicology of nanoparticles" Elsevier BV 64 (64): 129-137, 2012

      31 Chih-Huang Weng, "Removal of methylene blue from aqueous solution by adsorption onto pineapple leaf powder" Elsevier BV 170 (170): 417-424, 2009

      32 M. Ghaedi, "Removal of malachite green from aqueous solution by zinc oxide nanoparticle loaded on activated carbon: Kinetics and isotherm study" 한국공업화학회 20 (20): 17-28, 2014

      33 Mohd Azmier Ahmad, "Removal of malachite green dye from aqueous solution using rambutan peel-based activated carbon: Equilibrium, kinetic and thermodynamic studies" Elsevier BV 171 (171): 510-516, 2011

      34 A. Katsigiannis, "Removal of emerging pollutants through Granular Activated Carbon" Elsevier BV 280 : 49-57, 2015

      35 Atul Kumar Kushwaha, "Removal of cationic methylene blue and malachite green dyes from aqueous solution by waste materials of Daucus carota" Elsevier BV 18 (18): 200-207, 2014

      36 D. Charumathi, "Packed bed column studies for the removal of synthetic dyes from textile wastewater using immobilised dead C. tropicalis" Elsevier BV 285 : 22-30, 2012

      37 M. Roosta, "Optimization of the ultrasonic assisted removal of methylene blue by gold nanoparticles loaded on activated carbon using experimental design methodology" Elsevier BV 21 (21): 242-252, 2014

      38 Suresh Gupta, "Modeling, simulation, and experimental validation for continuous Cr(VI) removal from aqueous solutions using sawdust as an adsorbent" Elsevier BV 100 (100): 5633-5640, 2009

      39 Roya Mirzajani, "Melamine supported magnetic iron oxide nanoparticles (Fe3O4@Mel) for spectrophotometric determination of malachite green in water samples and fish tissues" 한국공업화학회 23 : 171-178, 2015

      40 Swetha Jayanthi, "Macroporous three-dimensional graphene oxide foams for dye adsorption and antibacterial applications" Royal Society of Chemistry (RSC) 6 (6): 1231-1242, 2016

      41 J. C. Crittenden, "MWH’s Water Treatment: Principles and Design" John Wiley & Sons 2012

      42 Danail Hristozov, "Hazards and Risks of Engineered Nanoparticles for the Environment and Human Health" MDPI AG 1 (1): 1161-1194, 2009

      43 R.W. Sabnis, "Handbook of Acid-Base Indicators" CRC Press 2008

      44 Abbas Mohammadi, "Fast removal of malachite green dye using novel superparamagnetic sodium alginate-coated Fe3O4 nanoparticles" Elsevier BV 69 : 447-455, 2014

      45 Stephen Makali Musyoka, "Effect of functionalization on the adsorption capacity of cellulose for the removal of methyl violet" Elsevier BV 65 : 389-397, 2014

      46 Genlin Zhang, "Dyes adsorption using a synthetic carboxymethyl cellulose-acrylic acid adsorbent" Elsevier BV 26 (26): 1203-1211, 2014

      47 Virendra Kumar, "Development of Functional Adsorbent From Textile Cotton Waste by Radiation Induced Grafting Process: Equilibrium and Kinetic Studies of Acid Dye Adsorption" Informa UK Limited 47 (47): 1937-1947, 2012

      48 Yuan Gao, "Chemical preparation of crab shell-based activated carbon with superior adsorption performance for dye removal from wastewater" Elsevier BV 61 : 327-335, 2016

      49 R HAN, "Biosorption of methylene blue from aqueous solution by rice husk in a fixed-bed column" Elsevier BV 141 (141): 713-718, 2007

      50 Karla Aparecida Guimarães Gusmão, "Application of succinylated sugarcane bagasse as adsorbent to remove methylene blue and gentian violet from aqueous solutions – Kinetic and equilibrium studies" Elsevier BV 92 (92): 967-974, 2012

      51 Shamik Chowdhury, "Adsorption thermodynamics, kinetics and isosteric heat of adsorption of malachite green onto chemically modified rice husk" Elsevier BV 265 (265): 159-168, 2011

      52 M. Rajabi, "Adsorption of malachite green from aqueous solution by carboxylate group functionalized multi-walled carbon nanotubes: Determination of equilibrium and kinetics parameters" 한국공업화학회 34 : 130-138, 2016

      53 Hao Zheng, "Adsorption of malachite green by magnetic litchi pericarps: A response surface methodology investigation" Elsevier BV 162 : 232-239, 2015

      54 Wenqing Wang, "Adsorption of chromium (VI) by strong alkaline anion exchange fiber in a fixed-bed column: Experiments and models fitting and evaluating" Elsevier BV 149 : 16-23, 2015

      55 T. Santhi, "A new alternative adsorbent for the removal of cationic dyes from aqueous solution" Elsevier BV 9 : S466-S474, 2016

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      학술지 이력
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      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
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      2001-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 3.4 0.75 2.84
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      2.39 2.24 0.397 0.56
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