Journal of Water Resource and Protection

Journal of Water Resource and Protection

ISSN Print: 1945-3094
ISSN Online: 1945-3108
www.scirp.org/Journal/jwarp
E-mail: jwarp@scirp.org
"Biosorption of Ni(II), Cu(II) and Pb(II) by Punica gerana-tum from Aqueous Solutions"
written by Peyman Salehi, Behvar Asghari, Fatemeh Mohammadi,
published by Journal of Water Resource and Protection, Vol.2 No.8, 2010
has been cited by the following article(s):
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[1] Pomegranate peel waste biomass modified with H 3 PO 4 as a promising sorbent for uranium (VI) removal
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[2] Pomegranate peel waste biomass modified with H
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[3] Mespilus germanica (MG) and Tribulus terrestris (TT) used as biosorbents for Lead removal from aqueous solutions: adsorption kinetics and mechanisms
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[4] Assessment of By-Product from Botryosphaeria rhodina MAMB-05 as an Effective Biosorbent of Pb(II)
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[5] Assessment of By-Product from Botryosphaeria rhodina MAMB-05 as an Effective Biosorbent of Pb (II)
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[6] Proficient Removal of As (III) from Water Using Orchid Plant (Vanda sp.) as Biosorbent.
Asian Journal of Chemistry, 2017
[7] Assessment of Heavy Metal Accumulation and Antibacterial Activity of Some Medicinal Herbs Grown in an Industrial Area of Steel Production, Ahvaz
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[8] Fixed-bed Column Study for Adsorption of Cadmium on Oil Palm
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[9] Biosorption of nickel (II) and copper (II) ions from aqueous solution using novel biomass derived from Nannorrhops ritchiana (Mazri Palm)
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[10] Adsorption of Cu (II) using Sauropus androgynus (L.) Merr. from aqueous solution
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[11] Synthesis, physico-chemical properties and analytical applications of calixpyrrole and calixarenes
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[12] Adsorption of Cu (II) using Sauropus androgynus (L.) Merr. from aqueous solution.
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[13] حذف جذبی فلزهای سنگین از پس‌آب تأسیسات فراوری شیمیایی اورانیم اصفهان با تفاله‌ی نیشکر آلاییده شده با نانوذرات مغناطیسی‎
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[14] Adsorptive remval of heavy metals from Esfahan uranium conversion facility (UCF) wastewater by bagass impregnated with magnetic nanoparticles
Journal of Nuclear …, 2015
[15] Adsorptive remval of heavy metals from Esfahan uranium conversion facility (UCF)wastewater by bagass impregnated with magnetic nanoparticles
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[16] Synthesis, physico-chemical properties and analytical applications of calixpyrrole and calixarene derivatives
ProQuest Dissertations Publishing, 2015
[17] Optimization, equilibrium, kinetic, thermodynamic and desorption studies on the sorption of Cu (II) from an aqueous solution using marine green algae: Halimeda gracilis
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[18] Synthesis, physico-chemical properties and analytical applications of calixpyrrole and calixarenes.
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[19] Optimization, equilibrium, kinetic, thermodynamic and desorption studies on the sorption of Cu (II) from an aqueous solution using marine green algae: Halimeda …
Ecotoxicology and Environmental Safety, 2015
[20] حذف جذبي فلزهاي سنگين از پس آب تاسيسات فراوري شيميايي اورانيم اصفهان با تفاله نيشکر آلاييده شده با نانوذرات مغناطيسي‎
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[21] Selective Removal of Transition Metal ions from Waste water By ion Imprinting Technology
International Journal of ChemTech Research, 2014
[22] Diethyl ether-modified calix [4] pyrrole receptor: thermodynamics of lead cation complexation–lead extraction from water by its polymer
Complex Metals, 2014
[23] Toxicology of some important medicinal plants in southern Africa
Food and Chemical Toxicology, 2013
[24] Competitive adsorption of Cr (VI) and Ni (II) onto coconut shell activated carbon in single and binary systems
Water, Air, & Soil Pollution, 2013
[25] Use of Citrus grandis (L.) Osbeck (Fam. Rutaceae) Peels Waste Material as a Biosorbent for Lead Contaminated Water
International Journal of Chemical and Environmental Engineering, 2012
[26] The characteristics of waste Saccharomyces cerevisiae biosorption of arsenic (III)
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[27] Zinc and lead biosorption by Delftia tsuruhatensis: a bacterial strain resistant to metals isolated from mine tailings
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[28] Use of Citrus grandis (L.) Osbeck (Fam. Rutaceae) Peels Waste Material as a Biosorbent for Lead Contaminated Water.
International Journal of Chemical & Environmental Engineering, 2012
[29] The characteristics of waste Saccharomyces cerevisiae biosorption of arsenic(III)
Environmental Science and Pollution Research, 2012
[30] Equilibrium, thermodynamic and kinetic investigations on biosorption of arsenic from aqueous solution by algae ( Maugeotia genuflexa) biomass
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[31] Equilibrium, thermodynamic and kinetic investigations on biosorption of arsenic from aqueous solution by algae (Maugeotia genuflexa) biomass
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