Journal of Encapsulation and Adsorption Sciences

Journal of Encapsulation and Adsorption Sciences

ISSN Print: 2161-4865
ISSN Online: 2161-4873
www.scirp.org/journal/jeas
E-mail: jeas@scirp.org
"Biosorption of Cu(II), Pb(II) and Zn(II) Ions from Aqueous Solutions Using Selected Waste Materials: Adsorption and Characterisation Studies"
written by Wiwid Pranata Putra, Azlan Kamari, Siti Najiah Mohd Yusoff, Che Fauziah Ishak, Azmi Mohamed, Norhayati Hashim, Illyas Md Isa,
published by Journal of Encapsulation and Adsorption Sciences, Vol.4 No.1, 2014
has been cited by the following article(s):
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2021
[2] Cellulose-Based Adsorbents for Heavy Metal Removal
2021
[3] The adsorptive removal of Mo (VI) from aqueous solution by a synthetic magnetic chromium ferrite nanocomposite using a nonionic surfactant
2020
[4] Removal of cadmium and copper from aqueous media by biosorption on cattail (typha angustifolia) leaves: Kinetic and isotherm studies
2020
[5] Modeling and optimization of biosorption of lead (II) ions from aqueous solution onto pine leaves (Pinus kesiya) using response surface methodology
2020
[6] Isotherm, kinetics and thermodynamic parameters study of arsenic (III) and copper (II) adsorption onto Limonia acidissima shell carbon
2020
[7] Clay-activated carbon adsorbent obtained by activation of spent bleaching earth and its application for removing Pb (II) ion
2020
[8] REMOVAL OF COPPER METAL IONS BY SUGARCANE BAGASSE AND RICE HUSK BIOCHARS FROM CONTAMINATED AQUEOUS SOLUTIONS
2020
[9] Adsorption of Selected Metals Ions in Solution Using Nano-Bentonite Particles: Isotherms and Kinetics
2020
[10] Optimum Operating Conditions for the Removal of Phosphate from Water Using of Wood-Branch Nanoparticles from Eucalyptus camaldulensis
2020
[11] The application of eggshells and sugarcane bagasse as potential biomaterials in the removal of heavy metals from aqueous solutions
2020
[12] A biotechnological approach of Pb (II) sequestration from synthetic wastewater using floral wastes
2020
[13] Efficient Removal of Ni (II) from Aqueous Solution by Date Seeds Powder Biosorbent: Adsorption Kinetics, Isotherm and Thermodynamics
2020
[14] Decontamination of Copper and Manganese from Aqueous Media by Untreated and Chemically Treated Sugarcane Bagasse: A Comparative Study
2020
[15] Conversion of coconut waste into cost effective adsorbent for Cu (II) and Ni (II) removal from aqueous solutions
2020
[16] Enhanced Zn (II) ion adsorption on surface modified mixed biomass–Borassus flabellifer and Aspergillus tamarii: Equilibrium, kinetics and thermodynamics study
2020
[17] Efficacy of biochar in removal of organic pesticide, Bentazone from watershed systems
2020
[18] Industrial solid waste for heavy metals adsorption features and challenges; a review
2020
[19] Role of MGDA Modified Pods of Peltophorum Pterocarpum (DC.) K. Heyne for the Removal of Hexavalent Chromium from Aqueous Solution: A Sustainable and Economical Approach
International Journal for Research in Applied Science & Engineering Technology, 2019
[20] Comparative study for adsorption of methylene blue dye on biochar derived from orange peel and banana biomass in aqueous solutions
2019
[21] The Biosorption of Lead from Aqueous Solutions by a Wood-immobilized Fungal Biosorbent
2019
[22] ADSORPTION CHARACTERISTICS OF CU (II) ONTO BLUE GREEN ALGAE-MODELING AND APPLICABILITY OF VARIOUS ISOTHERMS
2019
[23] Reduction of lead (II) from aqueous solution by biosorbent derivated from lengkeng (euphoria logan lour) shell with batch method
2019
[24] A Novel Microwave Synthesis of Manganese Based MOF for Adsorptive of Cd (II), Pb (II) and Hg (II) Ions from Aqua Medium
2019
[25] Removal of Cadmium from Aqueous Solutions by Saccharomyces cerevisiae–Alginate System
2019
[26] Fabrication of Sugarcane Bagasse Based Mesh as an Adsorbent of Copper (Cu2+) Metal Contaminant for Wastewater Treatment
2019
[27] Amine modified kaolinite clay from Nigeria: A resource for removing Cd2+ and Pb2+ ions from aqueous solution
2019
[28] Optimization of Crude Oil Sorption by Particle Size Variation of a Composite Constituent
2019
[29] Application of biochar derived from date palm biomass for removal of lead and copper ions in a batch reactor: kinetics and isotherm scrutiny
2019
[30] Environmental and socioeconomic factors induced blood lead in children: an investigation from Kashmir, India
2019
[31] Biosorption of Pb (II) ions from aqueous solution using alginates extracted from Djiboutian seaweeds and deposited on silica particles
2019
[32] Synthesis, characterization, and application of date palm leaf waste-derived biochar to remove cadmium and hazardous cationic dyes from synthetic wastewater
2019
[33] Application of the biochar derived from orange peel for effective biosorption of copper and cadmium in batch studies: isotherm models and kinetic studies
2019
[34] A novel cyanopropylsilane-functionalized titanium oxide magnetic nanoparticle for the adsorption of nickel and lead ions from industrial wastewater: Equilibrium …
2019
[35] Combined solar electrocoagulation and adsorption processes for Pb (II) removal from aqueous solution
2019
[36] Epuration des eaux chargées en sulfaméthazine et tétracycline par adsorption sur les charbons actifs.
2019
[37] Comparative Sorption of Nickel from an Aqueous Solution Using Biochar Derived from Banana and Orange Peel Using a Batch System: Kinetic and Isotherm Models
2019
[38] Performance Evaluation of Coal Fly Ash Based Zeolite A for Heavy Metal Ions Adsorption of Wastewater
2019
[39] Lignocellulose@ Activated Clay Nanocomposite with Hierarchical Nanostructure Enhancing the Removal of Aqueous Zn (II)
2019
[40] Optimization of Zinc Ions Removal by Modified Phoenix Dactylifera L. Seeds Using Response Surface Methodology
2019
[41] Immobilization of Zn (II) ions from contaminated biomass using ceramic matrices
2019
[42] Preparation of mesoporous silica from coal slag and its metal ion adsorption behavior
2019
[43] Comparative study of sponge gourd derived biochar and activated carbon for bio-sorption and desorption of Pb (II) ions
2019
[44] Adsorption performance and mechanism of a low-cost biosorbent from spent seedcake of Calophyllum inophyllum in simultaneous cleanup of potentially toxic metals …
2019
[45] Potential of Punica granatum biochar to adsorb Cu (II) in soil
2019
[46] 4 Applications of Biosorption in Heavy Metals Removal
2019
[47] Adsorption of Cu onto Maize Husk Lignocellulose in Single and Binary Cu-Zn Solution Systems: Equilibrium, Isotherm, Kinetic, Thermodynamic and Mechanistic …
2019
[48] Calcined cow leather as a new low-cost biosorbent for copper (II), zinc (II) and nickel (II) ions removal from aqueous solution
Moroccan Journal of Chemistry, 2019
[49] Adsorption of heavy metal lead using Citrus grandis (Pomelo) leaves as low-cost adsorbent
2019
[50] Removal of heavy metals from wastewater using date palm as a biosorbent: a comparative review
2018
[51] Characterization and sorption behavior of some toxic metal ions on Fusarium oxysporum as biomass adsorbent
2018
[52] Preparation of High Surface Area Oxidized Activated Carbon from Peanut Shell and Application for the Removal of Organic Pollutants and Heavy Metal Ions
2018
[53] Bioconversion and Biotransformation Efficiencies of Wild Macrofungi
2018
[54] Copper (II) Bioremoval from Simulated Industrial Wastewater by Acid-Treated Plantain (Musa Paradisiaca) Peel and Plantain Peel-Chitosan Composite: Kinetic, Mass Transfer and Isotherm Modelling Studies
Applied Journal of Environmental Engineering Science, 2018
[55] Determinación de la influencia del tamaño de partícula del residuo de café como biosorbente de metales pesados
2018
[56] Removal of Pb (II) From Contaminated Water by Bagasse Adsorbent Modified with Dithizone
2018
[57] Removal of Cu (II) from aqueous solution using tea waste as an adsorbent: A Comprehensive Review
International Research Journal of Engineering and Technology, 2018
[58] Removal of Cu (II) from Aqueous Solution using Tea Waste as an Adsorbent
2018
[59] Isolation and Characterization of Cellulose from Underexploited Golden Melon Skin
2018
[60] Применение отходов лесопиления для очистки поверхностных стоков на объектах транспортной инфраструктуры
2018
[61] Copper (II) Bioremoval from Simulated Industrial Wastewater by Acid-Treated Plantain (Musa Paradisiaca) Peel and Plantain Peel-Chitosan Composite: Kinetic, Mass …
2018
[62] ADSORPTION OF LEAD FROM AQUEOUS SOLUTION USING MODIFIED ACTIVATED CARBON PREPARED FROM PALM KERNEL SHELL
2018
[63] Adsorpsi ion Pb (II) Menggunakan Campuran Daun Seri (Muntingia Calabura L.) dan Bentonit
2018
[64] Advances of Bioadsorption as an alternative in the elimination of heavy metals from mining-metallurgical effluents.
IOSR Journal of Environmental Science, Toxicology and Food Technology, 2018
[65] Study of Arsenic Levels in Drinking Water Networks in the Town Of Allato, Huancavelica Peru
American Journal of Engineering Research, 2018
[66] Heavy metals in handloom-dyeing effluents and their biosorption by agricultural byproducts
Environmental Science and Pollution Research, 2018
[67] Kinetic and equilibrium adsorption of lead from water using magnetic metformin-substituted SBA-15
Environmental Science: Water Research & Technology, 2018
[68] A Review on Heavy Metal Ions and Dye Adsorption from Water by Agricultural Solid Waste Adsorbents
Water, Air, & Soil Pollution, 2018
[69] Bentonite coated with magnetite Fe3O4 nanoparticles as a novel adsorbent for copper (II) ions removal from water/wastewater
Environmental Technology & Innovation, 2018
[70] BIO-COMPOSITES FOR THE SORPTION OF COPPER FROM AQUEOUS SOLUTION: A COMPARATIVE STUDY
Groundwater for Sustainable Development, 2018
[71] Agricultural solid waste for sorption of metal ions, part II: competitive assessment in multielemental solution and lake water
Environmental Science and Pollution Research, 2018
[72] Biosorption of copper (II) and manganese (II) from waste water using low cost bio adsorbents
2018
[73] Adsorption of Lead onto a Waste Biomaterial-Biochar
Nature and Science, 2018
[74] Sugarcane bagasse fiber and its cellulose nanocrystals for polymer reinforcement and heavy metal adsorbent: a review
Cellulose, 2018
[75] Sugarcane Bagasse As Potentially Low-Cost Biosorbent
2018
[76] Bioadsorción de Cu 2+, Ni 2+, Zn 2+ y Pb 2+ empleando un proceso de lodo activado
2018
[77] Bioadsorption of Cu2+, Ni2+, Zn2+ and Pb2+ using an activated sludge process
2018
[78] Biosorption potential of natural, pyrolysed and acid-assisted pyrolysed sugarcane bagasse for the removal of lead from contaminated water
2018
[79] The use of sea shell (Donax trunculus) powder to remove Sr (II) ions from aqueous solutions
2018
[80] Competitive Removal of Lead Copper and Cadmium from Aqueous Solution onto Tea Waste
2017
[81] Production and characterization of coconut shell and mesquite wood biochar
2017
[82] Sesame husk as adsorbent for copper (II) ions removal from aqueous solution
2017
[83] Chemical Modification of Cellulose Isolated from Underutilized Hibiscus sabdariffa via Surface Grafting: A Potential Bio-based Resource for Industrial …
2017
[84] Preparation and application of EDTA-functionalized underutilized Adansonia digitata seed for removal of Cu(II) from aqueous solution
Sustainable Environment Research, 2017
[85] Modelling of pollutant adsorption by activated carbon and biochar with and without magnetite impregnation for the treatment of refinery and other wastewaters
2017
[86] Cellulose‐based Materials for the Removal of Heavy Metals from Wastewater–An Overview
ChemBioEng Reviews, 2017
[87] Adsorption of Cu (II) and Cd (II) from Aqueous Solution by Using Rice Husk Adsorbent
2017
[88] Application of black walnut (Juglans nigra) husk for the removal of lead (II) ion from aqueous solution
2017
[89] Kemijska modifikacija površinskim cijepljenjem celuloze izolirane iz biljke Hibiscus sabdariffa: potencijalni bioizvor za industrijsku primjenu
Kemija u industriji: ?asopis kemi?ara i kemijskih in?enjera Hrvatske, 2017
[90] Low cost drinking water treatment using indigenous materials for remote communities in developing countries
2017
[91] Removal of Copper and Lead using Banana Biochar in Batch Adsorption Systems: Isotherms and Kinetic Studies
Arabian Journal for Science and Engineering, 2017
[92] Adsorption of Cu (II) by Low Cost Adsorbents: A Review
Current Environmental Engineering, 2017
[93] Sugarcane bagasse: a potential low-cost biosorbent for the removal of hazardous materials
Clean Technologies and Environmental Policy, 2017
[94] Surface modification of cellulose isolated from Sesamun indicum underutilized seed: A means of enhancing cellulose hydrophobicity
Journal of Science: Advanced Materials and Devices, 2017
[95] Biosorption of Cu2+ and Ni2+ Ions from Synthetic Waters
Applied Biochemistry and Biotechnology, 2017
[96] Feasible preparation and characterization of tunable novel montmorillonite/block-copolymers based composites as potential dual adsorbent candidates
Applied Clay Science, 2017
[97] Biosorption studies of lead and copper using rogers mushroom biomass 'Lepiota Hystrix'
South African Journal of Chemical Engineering, 2017
[98] Kinetic and isotherm analysis of Cu (II) adsorption onto almond shell (Prunus Dulcis)
Ecological Chemistry and Engineering S, 2017
[99] Absorption Behaviours of Copper, Lead, and Arsenic in Aqueous Solution Using Date Palm Fibres and Orange Peel: Kinetics and Thermodynamics.
2017
[100] Determination of the Efficacy of Eggshell as a Low-Cost Adsorbent for the Treatment of Metal Laden Effluents
International Journal of Environmental Research, 2017
[101] Batch adsorption and desorption studies on the removal of lead (II) from aqueous solution using nanochitosan/sodium alginate/microcrystalline cellulose beads
International Journal of Biological Macromolecules, 2017
[102] Effect of Particle Size on the Sorption of Lead from Water by Different Species of Sawdust: Equilibrium and Kinetic Study
2017
[103] CAPACIDAD DE ADSORCIóN DE PLOMO CON INTERCAMBIADORES CATIóNICOS DE CARBóN XANTADO ADSORPTION CAPACITY OF LEAD WITH CATIONICS EXCHANGERS OF XANTED COAL
Rev. U.D.C.A Act. &Div. Cient., 2017
[104] Adsorption of Cr (VI) and Cu (II) Ions onto Kaolinite Clay
International Journal of Recent Engineering Science, 2017
[105] CAPACIDAD DE ADSORCIÓN DE PLOMO CON INTERCAMBIADORES CATIÓNICOS DE CARBÓN XANTADO
Revista U.D.C.A Actualidad & Divulgación Científica?, 2017
[106] ADSORPTION CAPACITY OF LEAD WITH CATIONICS EXCHANGERS OF XANTED COAL
Revista U.D.C.A Actualidad & Divulgación Científica?, 2017
[107] Characterization and Utilization of Citric Acid Modified Cow Hoof for Adsorption of Cadmium and Copper from Wastewater
2017
[108] Removal of heavy metals from simulated water by using eggshell powder
2017
[109] Kenaf bast fiber filter cartridge for removal of heavy metals and dyes in aqueous solution
2016
[110] An evaluation of the major factors influencing the removal of copper ions using the egg shell (Dromaius novaehollandiae): chitosan (Agaricus bisporus) …
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[111] An investigation into the efficacy of eggshells as a low-cost adsorbent for the removal of potentially toxic inorganic elements from aqueous solutions
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[112] A RESPONSE SURFACE METHODOLOGY APPROACH FOR THE OPTIMIZATION OF CU2+ REMOVAL USING RICE HUSK–DERIVED ACTIVATED …
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[113] 蛋壳作为吸附材料的研究进展
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[114] The Study of the Removal of Cu (II) from Aqueous Solution by Papia undulates Shell
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[115] Removal of Chromium (VI) ions from Aqueous Solution Using Wood Sawdust as Adsorbent
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[116] Anthracene Bioadsorption from Simulated Wastewater by Chemically-Treated Unripe Plantain Peel Bioadsorbent: Batch Kinetics and Isothermal Modeling Studies
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[117] Development of novel blend membranes based on carbohydrate polymers for the removal of toxic metal ions through sorption
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[118] Adsorption removal of zinc (II) from aqueous phase by raw and base modified Eucalyptus sheathiana bark: Kinetics, mechanism and equilibrium study
Process Safety and Environmental Protection, 2016
[119] Application of Kenaf Bast Fiber to Adsorb Cu(II), Pb(II) and Zn(II) in Aqueous Solution: Single - and Multi - metal Systems
International Journal of Environmental Science and Development, 2016
[120] Adsorption of copper (Cu2+) from aqueous solution using date palm trunk fibre: isotherms and kinetics
Journal of Discrete Mathematical Sciences and Cryptography, 2016
[121] An evaluation of the major factors influencing the removal of copper ions using the egg shell (Dromaius novaehollandiae): chitosan (Agaricus bisporus) composite
3 Biotech, 2016
[122] Comparing different kinds of materials for adsorption of pollutants in wastewater
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[123] Zeolite A synthesized from alkaline assisted pre-activated halloysite for efficient heavy metal removal in polluted river water and industrial wastewater
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[124] Copper and Zinc Removal from Contaminated Water Using Coffee Waste
Journal of Scientific Research & Reports, 2016
[125] Removal of Cu (II) from aqueous solution using synthetic poly (catechol-diethylenetriamine-p-phenylenediamine) particles
Ecotoxicology and Environmental Safety, 2016
[126] Evaluation of Heavy Metal Removal from Wastewater in a Modified Packed Bed Biofilm Reactor
PLOS ONE, 2016
[127] Bioremediation of Cu (II) contaminated water by Saccharum officinarum: effect of oxalic acid modification on equilibrium, kinetic and thermodynamic …
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[128] An investigation into the efficacy of eggshells as a low cost adsorbent for the removal of potentially toxic inorganic elements from aqueous solutions
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[129] Surface modification of naturally available biomass for enhancement of heavy metal removal efficiency, upscaling prospects, and management aspects of spent …
Applied Biochemistry and Biotechnology, 2016
[130] Factors affect on bioremediation of Co(II) and Pb(II) onto Lonicera japonica flowers powder
Desalination and Water Treatment, 2016
[131] Nitrilotriacetic acid functionalized Adansonia digitata biosorbent: Preparation, characterization and sorption of Pb (II) and Cu (II) pollutants from aqueous …
Journal of Advanced Research, 2016
[132] Eleusine coracana silica immobilised spirogyra rhizobrachiales adsorbent for biosorption of Ni2+ and Pb2+ ions
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[133] Sequestration of Zn2+ from aqueous solution using Klebsiella pneumoniae: Batch kinetics and continuous studies
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[134] A RESPONSE SURFACE METHODOLOGY APPROACH FOR THE OPTIMIZATION OF CU2+ REMOVAL USING RICE HUSK–DERIVED ACTIVATED CARBON
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[135] Adsorção e pré-concentração dos íons Cu2+, Ni2+ e Zn2+ em soluções aquosas usando como adsorvente zeólita 4A
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[136] Biosorption of Cadmium ion from Aqueous Solutions by Low-Cost Soybean Waste (Gliycine Max)
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[137] Compact bioreactor treatment system for malaysian municipal sewage
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[138] Otostegia persica biomass as a new biosorbent for the removal of lead from aqueous solutions
International Journal of Environmental Science and Technology, 2015
[139] An Overview of Low Cost Adsorbents for Copper (II) Ions Removal
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[140] Biosorption of Cu (II) from aqueous solutions: Kinetics and characterization studies
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[141] Kinetic and Adsorption Behaviour of Aqueous Fe 2+, Cu 2+ and Zn 2+ Using a 30 nm Hydroxyapatite Based Powder Synthesized via a Combined Ultrasound and Microwave Based Technique
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[142] One-step calcination of the spent bleaching earth for the efficient removal of heavy metal ions
ACS Sustainable Chemistry & Engineering, 2015
[143] Factors affect on bioremediation of Co (II) and Pb (II) onto Lonicera japonica flowers powder
Desalination and Water Treatment, 2015
[144] Cost effective and eco-friendly method for copper removal by adsorption with Emu feather (Dromaius novaehollandiae) and Chitosan (Agaricus bisporus) Composite
International Journal of ChemTech Research, 2015
[145] Functional nanofibers for separation of rhodium (III) and iridium (IV) chlorido species
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[146] Conversion of spent mushroom substrate into micronutrient fertilizer via biosorption in a pilot plant
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[147] Biosorption of Copper from Synthetic Waters by Using Tobacco Leaf: Equilibrium, Kinetic and Thermodynamic Tests
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[148] Biosorption characteristics of Cd(II) ions using herbal plant of mahkota dewa(Phaleria macrocarpa)
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[149] Using Spent Mushroom Substrate as the Base for Organic-Mineral Micronutrient Fertilizer–Field Tests on Maize
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[150] Heavy Metal Adsorption onto Kappaphycus sp. from Aqueous Solutions: The Use of Error Functions for Validation of Isotherm and Kinetics Models
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[151] Characterization of peat samples collected from Brunei Darussalam and their evaluation as potential adsorbents for Cu (II) removal from aqueous solution
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[152] Low-cost magnetized Lonicera japonica flower biomass for the sorption removal of heavy metals
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[157] Biosorption characteristics of Cd (II) ions using herbal plant of mahkota dewa (Phaleria macrocarpa)
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[158] Removal of Pb (II) ions by using Papaya (Carica papaya L) leaves and Petai (Parkia Speciosa Hassk) peels as biosorbent
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[159] Kinetic and adsorption behaviour of aqueous Fe2+, Cu2+ and Zn2+ using a 30 nm hydroxyapatite based powder synthesized via a combined ultrasound and …
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