Optimal removal of diclofenac and amoxicillin by activated carbon prepared from coconut shell through response surface methodology

South African Journal of Chemical Engineering - Tập 38 - Trang 78-89 - 2021
Mohamed M. Arêmou Daouda1,2, Akuemaho V. Onésime Akowanou1, S. E. Reine Mahunon1, Chris K. Adjinda1, Martin Pépin Aina1, Patrick Drogui3
1Laboratoire des Sciences et Techniques de l'Eau et de l'Environnement, Institut National de l'Eau, Université d'Abomey-Calavi, Bénin,West Africa
2International Chair in Mathematical Physics and Applications, (ICMPA-UNESCO Chair), Université d'Abomey-Calavi, Bénin,West Africa
3Institut National de la Recherche Scientifique (INRS Eau Terre et Environnement), Université du Québec, 490 rue de la Couronne, Québec City, Canada

Tài liệu tham khảo

Abdul Khalil, 2013, Activated carbon from various agricultural wastes by chemical activation with KOH: preparation and characterization, J. Biobased Mater. Bioenergy, 7, 708, 10.1166/jbmb.2013.1379

As, 2015, Optimization of the process parameters for the preparation of activated carbon from low cost phoenix dactylifera using response surface methodology, Austin Chem. Eng., 2

Asfaram, 2015, Removal of basic dye Auramine-O by ZnS:cu nanoparticles loaded on activated carbon: optimization of parameters using response surface methodology with central composite design, RSC Adv, 5, 18438, 10.1039/C4RA15637D

A.S.T.M. International, 2006. Standard test method for determination of iodine number of activated carbon 1. www.astm.org 94, 1–5.

Baçaoui, 2001, Optimization of conditions for the preparation of activated carbons from olive-waste cakes, Carbon N. Y., 39, 425, 10.1016/S0008-6223(00)00135-4

Bazrafshan, 2016, Application of adsorption process for phenolic compounds removal from aqueous environments: a systematic review, Glob. Nest J., 18, 146, 10.30955/gnj.001709

Budi, E., Nasbey, H., Bintoro, R.A., Wulandari, F., 2017. Activated coconut shell charcoal carbon using chemical-physical activation activated coconut shell charcoal carbon using chemical- physical activation 050003, 1–7. 10.1063/1.4941886.

Busch, 2016, Micropollutants in European rivers: a mode of action survey to support the development of effect-based tools for water monitoring, Environ. Toxicol. Chem., 35, 1887, 10.1002/etc.3460

Cagnon, 2009, Contributions of hemicellulose, cellulose and lignin to the mass and the porous properties of chars and steam activated carbons from various lignocellulosic precursors, Bioresour. Technol., 100, 292, 10.1016/j.biortech.2008.06.009

1986, Test-method-for-activated-carbon_86.pdf, Eur. Counc. Chem. Manuf. Fed.

Fytianos, 2000, Sorption-desorption behaviour of 2,4-dichlorophenol by marine sediments, Chemosphere, 40, 3, 10.1016/S0045-6535(99)00214-3

Godin, 2011, Revue bibliographique sur les méthodes d'analyse des polysaccharides structuraux des biomasses lignocellulosiques, Biotechnol. Agron. Soc. Environ., 15, 165

Gratuito, M.K.B., Panyathanmaporn, T., Chumnanklang, R., 2008. Production of activated carbon from coconut shell : optimization using response surface methodology 99, 4887–4895. 10.1016/j.biortech.2007.09.042.

Gueye, 2014, High efficiency activated carbons from African biomass residues for the removal of chromium(VI) from wastewater, J. Environ. Chem. Eng., 2, 273, 10.1016/j.jece.2013.12.014

Hui, T.S., Abbas, M., Zaini, A., 2015. Potassium hydroxide activation of activated carbon : a commentary. 10.5714/CL.2015.16.4.275.

Itodo, A.U., Abdulrahman, F.W., Hassan, L.G., Maigandi, S.A., Itodo, H.U., 2010. Application of methylene blue and iodine adsorption in the measurement of specific surface area by four acid and salt treated activated carbons . 3, 25–33.

Jawad, 2017, Response surface methodology approach for optimization of color removal and COD reduction of methylene blue using microwave-induced NaOH activated carbon from biomass waste, Desalin. Water Treat., 62, 208, 10.5004/dwt.2017.20132

Jawad, 2016, Adsorption of methylene blue onto activated carbon developed from biomass waste by H2SO4 activation: kinetic, equilibrium and thermodynamic studies, Desalin. Water Treat., 57, 25194, 10.1080/19443994.2016.1144534

Jawad, 2017, High surface area mesoporous activated carbon developed from coconut leaf by chemical activation with H3PO4 for adsorption of methylene blue, Desalin. Water Treat., 74, 326, 10.5004/dwt.2017.20571

Jawad, 2015, Adsorption of methylene blue onto coconut (Cocos nucifera) leaf: optimization, isotherm and kinetic studies, Desalin. Water Treat., 57, 8839, 10.1080/19443994.2015.1026282

Kang, 2011, Preparation of activated carbon with highly developed mesoporous structure from Camellia oleifera shell through water vapor gasification and phosphoric acid modification, Biomass and Bioenergy, 35, 3643, 10.1016/j.biombioe.2011.05.007

Kim, 2011, Surface functionality and carbon structures in lignocellulosic-derived biochars produced by fast pyrolysis, Energy and Fuels, 25, 4693, 10.1021/ef200915s

Kovalova, 2013, Elimination of micropollutants during post-treatment of hospital wastewater with powdered activated carbon, ozone, and UV, Environ. Sci. Technol., 47, 7899, 10.1021/es400708w

Mahmood, 2017, Adsorption of amoxicillin onto activated carbon from aqueous solution, Int. J. Curr. Eng. Technol., 7, 62

Marsh, 2006

Miguet, 2016, Sustainable thermal regeneration of spent activated carbons by solar energy: application to water treatment, Ind. Eng. Chem. Res., 55, 7003, 10.1021/acs.iecr.6b01260

Mohd Iqbaldin, 2013, Properties of coconut shell activated carbon, J. Trop. For. Sci., 25, 497

Moussavi, 2013, Preparation, characterization and adsorption potential of the NH4Cl-induced activated carbon for the removal of amoxicillin antibiotic from water, Chem. Eng. J., 217, 119, 10.1016/j.cej.2012.11.069

Pasquini, 2014, Occurrence of eight household micropollutants in urban wastewater and their fate in a wastewater treatment plant. Statistical evaluation, Sci. Total Environ., 481, 459, 10.1016/j.scitotenv.2014.02.075

Pellerin, 2002, Technique de Van Soest pour la détermination des constituants pariétaux de végétaux à l'analyse des produits de compostage et litières diverses à usage agronomique . Principe Mode opératoire. Note Tech. NT01-01, Fich. NTVansoest.doc, 1

Rashid, 2016, KOH-activated carbon developed from biomass waste: adsorption equilibrium, kinetic and thermodynamic studies for Methylene blue uptake, Desalin. Water Treat., 57, 27226, 10.1080/19443994.2016.1167630

Senthilkumar, 2017, Optimization of activated carbon preparation from pomegranate peel (Punica granatum Peel) using RSM, Chem. Eng. Commun., 204, 238, 10.1080/00986445.2016.1262358

Suhas, Gupta, 2016, Cellulose: a review as natural, modified and activated carbon adsorbent, Bioresour. Technol., 216, 1066, 10.1016/j.biortech.2016.05.106

Sun, 2016, Characterization and ciprofloxacin adsorption properties of activated carbons prepared from biomass wastes by H3PO4 activation, Bioresour. Technol., 217, 239, 10.1016/j.biortech.2016.03.047

Telegang Chekem, 2017

Vargas, 2010, NaOH-activated carbon from flamboyant (Delonix regia) pods : optimization of preparation conditions using central composite rotatable design, Chem. Eng. J., 162, 43, 10.1016/j.cej.2010.04.052

Xiong, 2019, Highly e ffi cient removal of diclofenac sodium from medical wastewater by Mg /Al layered double hydroxide-poly (m-phenylenediamine) composite, Chem. Eng. J., 366, 83, 10.1016/j.cej.2019.02.069

Zhang, 2011, Thermodynamic and kinetic parameters of ciprofloxacin adsorption onto modified coal fly ash from aqueous solution, J. Mol. Liq., 163, 53, 10.1016/j.molliq.2011.07.005