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    KCI등재 SCOPUS SCIE

    Utilization of agro-industrial waste for removal of copper ions from aqueous solutions and mining-wastewater

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    https://www.riss.kr/link?id=A106441479

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    In this study, unmodified lemon peel, as agro-industrial waste, was used to investigate removal efficiencyof copper ions from aqueous solutions and mining wastewater. The effects of solution pH, adsorptiontime, metal ion concentration and dose of adsorbent on sorption were studied in batch experiments. Themaximum Langmuir adsorption capacity was evaluated to be 13.2 mg/g at optimum contact time of15 min. The maximum removal of copper ions from mining-wastewater at natural pH (pH3) was 89%,indicating that lemon peel could be employed as an effective low-cost adsorbent for removal of copperions from wastewater at acidic conditions.
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    In this study, unmodified lemon peel, as agro-industrial waste, was used to investigate removal efficiencyof copper ions from aqueous solutions and mining wastewater. The effects of solution pH, adsorptiontime, metal ion concentration and dose of adso...

    In this study, unmodified lemon peel, as agro-industrial waste, was used to investigate removal efficiencyof copper ions from aqueous solutions and mining wastewater. The effects of solution pH, adsorptiontime, metal ion concentration and dose of adsorbent on sorption were studied in batch experiments. Themaximum Langmuir adsorption capacity was evaluated to be 13.2 mg/g at optimum contact time of15 min. The maximum removal of copper ions from mining-wastewater at natural pH (pH3) was 89%,indicating that lemon peel could be employed as an effective low-cost adsorbent for removal of copperions from wastewater at acidic conditions.

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    참고문헌 (Reference)

    1 C. T. Tovar, 10 (10): 117-, 2018

    2 T. A. H. Nguyen, 148 : 574-, 2013

    3 A. Herrera-Barros, 11 (11): 1-, 2018

    4 A. Neši c, 110 : 56-, 2017

    5 A. Razafsha, 9 (9): 543-, 2016

    6 P. D. Pathak, 113 (113): 444-, 2017

    7 Z.Y. Yao, 174 (174): 137-143, 2010

    8 G. Annadural, 47 (47): 185-190, 2002

    9 W. Zou, 279 (279): 238-, 2006

    10 Yingjie Dai, "Utilizations of agricultural waste as adsorbent for the removal of contaminants: A review" Elsevier BV 211 : 235-253, 2018

    1 C. T. Tovar, 10 (10): 117-, 2018

    2 T. A. H. Nguyen, 148 : 574-, 2013

    3 A. Herrera-Barros, 11 (11): 1-, 2018

    4 A. Neši c, 110 : 56-, 2017

    5 A. Razafsha, 9 (9): 543-, 2016

    6 P. D. Pathak, 113 (113): 444-, 2017

    7 Z.Y. Yao, 174 (174): 137-143, 2010

    8 G. Annadural, 47 (47): 185-190, 2002

    9 W. Zou, 279 (279): 238-, 2006

    10 Yingjie Dai, "Utilizations of agricultural waste as adsorbent for the removal of contaminants: A review" Elsevier BV 211 : 235-253, 2018

    11 Marina Sciban, "Study of the Adsorption of Copper(II) Ions from Water onto Wood Sawdust, Pulp and Lignin" SAGE Publications 22 (22): 195-206, 2016

    12 R. Sudha, "Removal of nickel(II) from aqueous solution using Citrus Limettioides peel and seed carbon" Elsevier BV 117 : 115-123, 2015

    13 Sadia Shakoor, "Removal of methylene blue dye from artificially contaminated water using citrus limetta peel waste as a very low cost adsorbent" Elsevier BV 66 : 154-163, 2016

    14 E.-S.Z. El-Ashtoukhy, "Removal of lead (II) and copper (II) from aqueous solution using pomegranate peel as a new adsorbent" Elsevier BV 223 (223): 162-173, 2008

    15 Fenglian Fu, "Removal of heavy metal ions from wastewaters: A review" Elsevier BV 92 (92): 407-418, 2011

    16 Özkan Demirbaş, "Removal of copper ions from aqueous solutions by hazelnut shell" Elsevier BV 153 (153): 677-684, 2008

    17 Haluk Aydın, "Removal of copper (II) from aqueous solution by adsorption onto low-cost adsorbents" Elsevier BV 87 (87): 37-45, 2008

    18 이명은, "Removal of Pb and Cu ions from aqueous solution by Mn3O4-coated activated carbon" 한국공업화학회 21 (21): 470-475, 2015

    19 Amit Bhatnagar, "Removal of Anionic Dyes from Water using Citrus limonum (Lemon) Peel: Equilibrium Studies and Kinetic Modeling" Informa UK Limited 44 (44): 316-334, 2009

    20 Thamer J. Mohammed, "Remediation of Cu(II) from Well Water of Iraq by Using Cortex of Fruits and Agricultural Waste" Springer Science and Business Media LLC 41 (41): 345-355, 2016

    21 K. Vasanth Kumar, "Relation between some two- and three-parameter isotherm models for the sorption of methylene blue onto lemon peel" Elsevier BV 138 (138): 633-635, 2006

    22 Sayed Zia Mohammadi, "REMOVAL OF Pb(II) IONS AND MALACHITE GREEN DYE FROM WASTEWATER BY ACTIVATED CARBON PRODUCED FROM LEMON PEEL" GN1 Genesis Network 37 : 804-, 2014

    23 Karla Córdova Aguilar, "Protein adsorption onto alginate-pectin microparticles and films produced by ionic gelation" Elsevier BV 154 : 17-24, 2015

    24 E. Menya, "Production and performance of activated carbon from rice husks for removal of natural organic matter from water: A review" Elsevier BV 129 : 271-296, 2018

    25 Hasan Arslanoglu, "Preparation of cation exchanger from lemon and sorption of divalent heavy metals" Elsevier BV 99 (99): 2699-2705, 2008

    26 Tehseen Aman, "Potato peels as solid waste for the removal of heavy metal copper(II) from waste water/industrial effluent" Elsevier BV 63 (63): 116-121, 2008

    27 Aleksandra R. Nesic, "Novel composite films based on amidated pectin for cationic dye adsorption" Elsevier BV 116 : 620-626, 2014

    28 E. Pehlivan, "Modified barley straw as a potential biosorbent for removal of copper ions from aqueous solution" Elsevier BV 135 (135): 2229-2234, 2012

    29 Sha Liang, "Isotherms, kinetics and thermodynamic studies of adsorption of Cu2+ from aqueous solutions by Mg2+/K+ type orange peel adsorbents" Elsevier BV 174 (174): 756-762, 2010

    30 Edris Bazrafshan, "Heavy metals removal from aqueous environments by electrocoagulation process– a systematic review" Springer Science and Business Media LLC 13 (13): 74-, 2015

    31 Giorgio Vilardi, "Heavy metals adsorption by banana peels micro-powder: Equilibrium modeling by non-linear models" Elsevier BV 26 (26): 455-464, 2018

    32 E. Rosales, "Grapefruit peelings as a promising biosorbent for the removal of leather dyes and hexavalent chromium" Elsevier BV 101 : 61-71, 2016

    33 Luis A. Romero-Cano, "Functionalized adsorbents prepared from fruit peels: Equilibrium, kinetic and thermodynamic studies for copper adsorption in aqueous solution" Elsevier BV 162 : 195-204, 2017

    34 Ji Ma, "Facile and scalable synthesis of magnetite/carbon adsorbents by recycling discarded fruit peels and their potential usage in water treatment" Elsevier BV 233 : 110-115, 2017

    35 Meisam Torab-Mostaedi, "Equilibrium, kinetic, and thermodynamic studies for biosorption of cadmium and nickel on grapefruit peel" Elsevier BV 44 (44): 295-302, 2013

    36 C. Femina Carolin, "Efficient techniques for the removal of toxic heavy metals from aquatic environment: A review" Elsevier BV 5 (5): 2782-2799, 2017

    37 A. Ronda, "Effect of lead in biosorption of copper by almond shell" Elsevier BV 44 (44): 466-473, 2013

    38 M.E. Fernandez, "Development and characterization of activated hydrochars from orange peels as potential adsorbents for emerging organic contaminants" Elsevier BV 183 : 221-228, 2015

    39 Rajeev Kumar, "Decolourization of hazardous brilliant green from aqueous solution using binary oxidized cactus fruit peel" Elsevier BV 226 : 377-383, 2013

    40 Geoffrey Michael Gadd, "Biosorption: critical review of scientific rationale, environmental importance and significance for pollution treatment" Wiley 84 (84): 13-28, 2009

    41 Huan-Ping Chao, "Biosorption of heavy metals on Citrus maxima peel, passion fruit shell, and sugarcane bagasse in a fixed-bed column" 한국공업화학회 20 (20): 3408-3414, 2014

    42 Anna Witek-Krowiak, "Biosorption of heavy metals from aqueous solutions onto peanut shell as a low-cost biosorbent" Elsevier BV 265 (265): 126-134, 2011

    43 K KRISHNANI, "Biosorption mechanism of nine different heavy metals onto biomatrix from rice husk" Elsevier BV 153 (153): 1222-1234, 2008

    44 Nan Zhou, "Biochars with excellent Pb(II) adsorption property produced from fresh and dehydrated banana peels via hydrothermal carbonization" Elsevier BV 232 : 204-210, 2017

    45 Carolina Monteiro Santos, "Application of orange peel waste in the production of solid biofuels and biosorbents" Elsevier BV 196 : 469-479, 2015

    46 Amit Bhatnagar, "Agricultural waste peels as versatile biomass for water purification – A review" Elsevier BV 270 : 244-271, 2015

    47 Ioannis Anastopoulos, "Agricultural peels for dye adsorption: A review of recent literature" Elsevier BV 200 : 381-389, 2014

    48 Amit Bhatnagar, "Adsorptive removal of cobalt from aqueous solution by utilizing lemon peel as biosorbent" Elsevier BV 48 (48): 181-186, 2010

    49 Alexander E. Burakov, "Adsorption of heavy metals on conventional and nanostructured materials for wastewater treatment purposes: A review" Elsevier BV 148 : 702-712, 2018

    50 K.S. Tong, "Adsorption of copper ion from its aqueous solution by a novel biosorbent Uncaria gambir: Equilibrium, kinetics, and thermodynamic studies" Elsevier BV 170 (170): 145-153, 2011

    51 W.S. Wan Ngah, "Adsorption of Cu(II) ions in aqueous solution using chitosan beads, chitosan–GLA beads and chitosan–alginate beads" Elsevier BV 143 (143): 62-72, 2008

    52 Mohammad Hossien Salmani Nodoushan, "Adsorption of Arsenite from Aqueous Solutions Using Granola Modified Lemon Peel" International Society for Phytocosmetic Sciences 4 (4): 2017

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    2023 평가 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
    2020-01-01 등재 등재학술지 유지 (해외등재 학술지 평가) KCI등재
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