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Original Articles

POWDERED ACTIVATED CARBONS FROM PINUS CARIBAEA SAWDUST

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Pages 3191-3206 | Received 01 Sep 2000, Published online: 15 Feb 2007

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Read on this site (2)

N. H. M. Salleh, D. Arbain, M. Z. M. Daud & N. Zainalabidin. (2014) Preparation and characterisation of rice husk activated carbon for neutral protease adsorption. Materials Research Innovations 18:sup6, pages S6-307-S6-309.
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L. M. Cotoruelo, M. D. Marqués, F. J. Díaz, J. Rodríguez‐Mirasol, T. Cordero & J. J. Rodríguez. (2007) Activated Carbons from Lignin: Their Application in Liquid Phase Adsorption. Separation Science and Technology 42:15, pages 3363-3389.
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Articles from other publishers (26)

G. V. Pankina, P. A. Chernavskii, A. N. Kharlanov, A. V. Malkov & V. V. Lunin. (2020) Iron Supported on a Carbon Material Prepared from Shadbush (Amelanchier) Wood Pulp: Carbidizing Bismuth-Promoted Fe-Containing Catalysts for the Hydrogenation of CO. Russian Journal of Physical Chemistry A 94:11, pages 2212-2218.
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G. V. Pankina, A. N. Kharlanov, A. V. Shumyantsev & V. V. Lunin. (2020) Analyzing Structural and Physicochemical Characteristics of Bismuth-Promoted Fe-Containing Catalysts of CO Hydrogenation. Russian Journal of Physical Chemistry A 94:10, pages 1996-2003.
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Ramiro Ruiz-Rosas, Francisco J. García-Mateos, María del Carmen Gutiérrez, José Rodríguez-Mirasol & Tomás Cordero. (2019) About the Role of Porosity and Surface Chemistry of Phosphorus-Containing Activated Carbons in the Removal of Micropollutants. Frontiers in Materials 6.
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Nikolas Hagemann, Kurt Spokas, Hans-Peter Schmidt, Ralf Kägi, Marc Böhler & Thomas Bucheli. (2018) Activated Carbon, Biochar and Charcoal: Linkages and Synergies across Pyrogenic Carbon’s ABCs. Water 10:2, pages 182.
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Francois Brouers & Francisco Marquez-Montesino. (2016) Dubinin isotherms versus the Brouers–Sotolongo family isotherms: A case study. Adsorption Science & Technology 34:9-10, pages 552-564.
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G. V. Pankina, P. A. Chernavskii & V. V. Lunin. (2016) A new hydrocarbon material based on seabuckthorn (Hippophae rhamnoides) sawdust: A structural promoter of cobalt catalyst for Fischer–Tropsch synthesis. Russian Journal of Physical Chemistry A 90:9, pages 1743-1748.
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Juan J. Rodríguez, Tomás Cordero & José Rodríguez-Mirasol. 2016. Production of Biofuels and Chemicals from Lignin. Production of Biofuels and Chemicals from Lignin 217 262 .
Aleksandra Cyganiuk, Olga Gorska, Andrzej Olejniczak & Jerzy P. Lukaszewicz. (2012) Pyrolytic production of microporous charcoals from different wood resources. Journal of Analytical and Applied Pyrolysis 98, pages 15-21.
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Luis M. Cotoruelo, María D. Marqués, Francisco J. Díaz, José Rodríguez-Mirasol, Juan J. Rodríguez & Tomás Cordero. (2012) Lignin-based activated carbons as adsorbents for crystal violet removal from aqueous solutions. Environmental Progress & Sustainable Energy 31:3, pages 386-396.
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Luis M. Cotoruelo, María D. Marqués, José Rodríguez-Mirasol, Juan J. Rodríguez & Tomás Cordero. (2010) Cationic dyes removal by multilayer adsorption on activated carbons from lignin. Journal of Porous Materials 18:6, pages 693-702.
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L. M. Cotoruelo, M. D. Marqués, A. Leiva, J. Rodríguez-Mirasol & T. Cordero. (2011) Adsorption of oxygen-containing aromatics used in petrochemical, pharmaceutical and food industries by means of lignin based active carbons. Adsorption 17:3, pages 539-550.
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A.J. Romero-Anaya, A. Molina, P. Garcia, A.A. Ruiz-Colorado, A. Linares-Solano & C. Salinas-Martínez de Lecea. (2011) Phosphoric acid activation of recalcitrant biomass originated in ethanol production from banana plants. Biomass and Bioenergy 35:3, pages 1196-1204.
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Sayed Zia Mohammadi, Mohammad Ali Karimi, Daryoush Afzali & Fatemeh Mansouri. (2010) Removal of Pb(II) from aqueous solutions using activated carbon from Sea-buckthorn stones by chemical activation. Desalination 262:1-3, pages 86-93.
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Mehmet Uğurlu, Ibrahim Kula, M. Hamdi Karaoğlu & Yasin Arslan. (2009) Removal of Ni(II) ions from aqueous solutions using activated-carbon prepared from olive stone by ZnCl 2 activation . Environmental Progress & Sustainable Energy 28:4, pages 547-557.
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F. Boudrahem, F. Aissani-Benissad & H. Aït-Amar. (2009) Batch sorption dynamics and equilibrium for the removal of lead ions from aqueous phase using activated carbon developed from coffee residue activated with zinc chloride. Journal of Environmental Management 90:10, pages 3031-3039.
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C.K. Singh, J.N. Sahu, K.K. Mahalik, C.R. Mohanty, B. Raj Mohan & B.C. Meikap. (2008) Studies on the removal of Pb(II) from wastewater by activated carbon developed from Tamarind wood activated with sulphuric acid. Journal of Hazardous Materials 153:1-2, pages 221-228.
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Mehmet Uğurlu, Ahmet Gürses & Metin Açıkyıldız. (2008) Comparison of textile dyeing effluent adsorption on commercial activated carbon and activated carbon prepared from olive stone by ZnCl2 activation. Microporous and Mesoporous Materials 111:1-3, pages 228-235.
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Ibrahim Kula, Mehmet Uğurlu, Hamdi Karaoğlu & Ali Çelik. (2008) Adsorption of Cd(II) ions from aqueous solutions using activated carbon prepared from olive stone by ZnCl2 activation. Bioresource Technology 99:3, pages 492-501.
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Suhas, P.J.M. Carrott & M.M.L. Ribeiro Carrott. (2007) Lignin – from natural adsorbent to activated carbon: A review. Bioresource Technology 98:12, pages 2301-2312.
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Mehmet Uğurlu, Ahmet Gürses & Çetin Doğar. (2007) Adsorption studies on the treatment of textile dyeing effluent by activated carbon prepared from olive stone by ZnCl 2 activation . Coloration Technology 123:2, pages 106-114.
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Kaustubha Mohanty, D. Das & M. N. Biswas. (2006) Preparation and characterization of activated carbons from Sterculia alata nutshell by chemical activation with zinc chloride to remove phenol from wastewater. Adsorption 12:2, pages 119-132.
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Kaustubha Mohanty, D. Das & M.N. Biswas. (2005) Adsorption of phenol from aqueous solutions using activated carbons prepared from Tectona grandis sawdust by ZnCl2 activation. Chemical Engineering Journal 115:1-2, pages 121-131.
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V. V. Goud, K. Mohanty, M. S. Rao & N. S. Jayakumar. (2005) Prediction of Mass Transfer Coefficients in a Packed Bed using Tamarind Nut Shell Activated Carbon to Remove Phenol. Chemical Engineering & Technology 28:9, pages 991-997.
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V. V. Goud, K. Mohanty, M. S. Rao & N. S. Jayakumar. (2005) Phenol Removal from Aqueous Solutions by Tamarind Nutshell Activated Carbon: Batch and Column Studies. Chemical Engineering & Technology 28:7, pages 814-821.
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Kaustubha Mohanty, Mousam Jha, B.C. Meikap & M.N. Biswas. (2005) Removal of chromium (VI) from dilute aqueous solutions by activated carbon developed from Terminalia arjuna nuts activated with zinc chloride. Chemical Engineering Science 60:11, pages 3049-3059.
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F. Brouers, O. Sotolongo, F. Marquez & J.P. Pirard. (2005) Microporous and heterogeneous surface adsorption isotherms arising from Levy distributions. Physica A: Statistical Mechanics and its Applications 349:1-2, pages 271-282.
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