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Articles

Adsorption of heavy metals from aqueous solutions by waste coffee residues: kinetics, equilibrium, and thermodynamics

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Pages 5056-5064 | Received 26 May 2014, Accepted 18 Dec 2014, Published online: 02 Jan 2015

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Van Thuan Le, Thanh Minh Pham, Van Dat Doan, Olga Evgenyevna Lebedeva & Hoai Thuong Nguyen. (2019) Removal of Pb(ii) ions from aqueous solution using a novel composite adsorbent of Fe3o4/PVA/spent coffee grounds. Separation Science and Technology 54:18, pages 3070-3081.
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Julia Ayala & Begoña Fernández. (2019) Treatment of mining waste leachate by the adsorption process using spent coffee grounds. Environmental Technology 40:15, pages 2037-2051.
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Sevgi Kocaoba & Munevver Arısoy. (2018) Biosorption of cadmium(II) and lead(II) from aqueous solutions using Pleurotus ostreatus immobilized on bentonite. Separation Science and Technology 53:11, pages 1703-1710.
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Articles from other publishers (13)

R. Sivaranjanee, P. Senthil Kumar & S. Mahalaxmi. (2022) A review on agro-based materials on the separation of environmental pollutants from water system. Chemical Engineering Research and Design 181, pages 423-457.
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Sandeep R. Korake & Pradip D. Jadhao. (2021) Investigation of Taguchi optimization, equilibrium isotherms, and kinetic modeling for cadmium adsorption onto deposited silt. Heliyon 7:1, pages e05755.
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Vicente A. Mirón-Mérida, Blanca E. Barragán-Huerta & Paulina Gutiérrez-Macías. 2021. Valorization of Agri-Food Wastes and By-Products. Valorization of Agri-Food Wastes and By-Products 173 198 .
Paola Ricciardi, Giacomo Cillari, Marco Carnevale Miino & Maria Cristina Collivignarelli. (2020) Valorization of agro-industry residues in the building and environmental sector: A review. Waste Management & Research 38:5, pages 487-513.
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. (2019) Evaluation of the Effectiveness of Nanoporous Material Obtained by Activation of Coffee Sludge. Nanosistemi, Nanomateriali, Nanotehnologii 17:2.
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Aileen D. Nieva, Reuben James Q. Buenafe, Drex R. Guinto & Jean Claudine F. Leaño. (2019) Biosorption of Copper (II) from Simulated Wastewater Using Spent Coffee Grounds: A Column Study. International Journal of Environmental Science and Development 10:9, pages 261-265.
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Valentina Innocenzi, Marina Prisciandaro, Francesco Tortora, Giuseppe Mazziotti di Celso & Francesco Vegliò. (2018) Treatment of WEEE industrial wastewaters: Removal of yttrium and zinc by means of micellar enhanced ultra filtration. Waste Management 74, pages 393-403.
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Anjali Achazhiyath Edathil, Ismaila Shittu, Jerina Hisham Zain, Fawzi Banat & Mohammad Abu Haija. (2018) Novel magnetic coffee waste nanocomposite as effective bioadsorbent for Pb(II) removal from aqueous solutions. Journal of Environmental Chemical Engineering 6:2, pages 2390-2400.
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Mohamed Nasser Sahmoune. 2018. Green Adsorbents for Pollutant Removal. Green Adsorbents for Pollutant Removal 193 213 .
Gnu Nam, Min-Suk Kim, Namju Lee, Young-Hoon Choi & Ji Ahn. (2017) An Environmentally Benign Approach for As (V) Absorption from Wastewater Using Untreated Coffee Grounds—Preliminary Results. Water 9:11, pages 867.
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Xiaotao Zhang, Ximing Wang & Zhangjing Chen. (2017) A Novel Nanocomposite as an Efficient Adsorbent for the Rapid Adsorption of Ni(II) from Aqueous Solution. Materials 10:10, pages 1124.
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Sayiter Yildiz. (2017) Artificial neural network (ANN) approach for modeling Zn(II) adsorption in batch process. Korean Journal of Chemical Engineering 34:9, pages 2423-2434.
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Asmita A. Chavan, Javier Pinto, Ioannis Liakos, Ilker S. Bayer, Simone Lauciello, Athanassia Athanassiou & Despina Fragouli. (2016) Spent Coffee Bioelastomeric Composite Foams for the Removal of Pb 2+ and Hg 2+ from Water . ACS Sustainable Chemistry & Engineering 4:10, pages 5495-5502.
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