References
- G. Crini, P.M. Badot, Application of chitosan, a natural aminopolysaccharide, for dye removal from aqueous solutions by adsorption processes using batch studies: A review of recent literature, Progr. Polym. Sci., 33 (2008) 399–447.
- A.H. Jawad, R.A. Rashid, R.M.A. Mahmuod, M.A.M. Ishak, N.N. Kasim, K. Ismail, Adsorption of methylene blue onto coconut (Cocos nucifera) leaf: optimization, isotherm and kinetic studies, Desal. Wat. Treat., 57(19) (2016) 8839–8853.
- A.R. Khataee, A. Movafeghi, S. Torbati, S.Y. SalehiLisar, M. Zarei. Phytoremediation potential of duckweed (Lemna minor L.) in degradation of C.I. Acid Blue 92: artificial neural network modeling, Ecotoxicol. Environ. Saf., 80 (2012) 291–298.
- L. Fan, Y. Zhou, W. Yang, G. Chen, F. Yang, Electrochemical degradation of aqueoussolution of Amaranth azo dye on ACF under potentiostatic model, Dyes Pigments, 76 (2008) 440–446.
- J.S. Wu, C.H. Liu, K.H. Chu, S.Y. Suen, Removal of cationic dye methyl violet 2B from water by cation exchange membranes, J. Membr. Sci. 309 (2008) 239–245.
- Y.S. Woo, M. Rafatullah, A.F.M. Al-Karkhi, T.T. Tow, Removal of Terasil Red R dye by using Fenton oxidation: a statistical analysis, Desal. Water Treat., 53 (2013) 1–9.
- A.H. Jawad, A.F.M. Alkarkhi, N.S.A. Mubarak, Photocatalytic decolorization of methylene blue by an immobilized TiO2 film under visible light irradiation: optimization using response surface methodology (RSM), Desal. Water Treat., 56 (2015) 161–172.
- A.H. Jawad, N.S.A. Mubarak, M.A.M. Ishak, K. Ismail, W.I. Nawawi. Kinetics of photocatalytic decolourization of cationic dye using porous TiO2 film. J. Taibah Univ. for Sci., 10 (2016) 352–362.
- L. Yu, X.Y. Zhang, S. Wanga, Q.W. Tang, T. Xie, N.Y. Lei, Y.L. Chen, W.C. Qiao, W.W. Li, M.H.W. Lam, Microbial community structure associated with treatment of azo dye in a start-up anaerobic sequenced batch reactor, J. Taiwan Inst. Chem. E., 54 (2015) 118–124.
- M.J. Ahmad, Application of agricultural based activated carbons by microwave and conventional activations for basic dye adsorption: Review, J. Environ. Chem. Eng., 4 (2016) 89–99.
- A.L. Cazetta, A.M.M. Vargas, E.M. Nogami, M.H. Kunita, M.R. Guilherme, A.C. Martins, T.L. Silva, J.G.G. Moraes, V. C. Almeida. NaOH-activated carbon of high surface area produced from coconut shell: Kinetics and equilibrium studies from the methylene blue adsorption. Chem. Eng. J., 174 (2011) 117–125.
- A.A. Hassan, Removal of reactive red 3B from aqueous solution by using treated orange peel, Int. J. Civ. Eng. Technol., 5 (2014) 160–169.
[13 K.Y. Foo, B.H. Hameed, Preparation, characterization and evaluation of adsorptive properties of orange peel based activated carbon via microwave induced K2CO3 activation, Bioresour. Technol., 104 (2012) 679–686.
- K.Y. Foo, B.H. Hameed, Potential of jackfruit peel as precursor for activated carbon prepared by microwave induced NaOH activation, Bioresour. Technol., 112 (2012) 143–150.
- K.Y. Foo, B.H. Hameed, Factors affecting the carbon yield and adsorption capability of the mangosteen peel activated carbon prepared by microwave assisted K2CO3 activation, Chem. Eng. J., 180 (2012c) 66–74.
- K.Y. Foo, B.H. Hameed, Porous structure and adsorptive properties of pineapple peel based activated carbons prepared via microwave assisted KOH and K2CO3 activation, Microporous Mesoporous Mater., 148 (2012) 191–195.
- S. Dutta, A. Bhattacharyya, A. Ganguly, S. Gupta, S. Basu, Application of response surface methodology for preparation of low-cost adsorbent from citrus fruit peel and for removal of methylene blue, Desalination, 275 (2011) 26–36.
- A.C. Arampatzidou, E.A. Deliyanni, Comparison of activation media and pyrolysis temperature for activated carbons development by pyrolysis of potato peels for effective adsorption of endocrine disruptor bisphenol-A, J. Colloid Interface Sci., 466 (2016) 101–112
- V.O. Njoku, K.Y. Foo, M. Asif, B.H. Hameed, Preparation of activated carbons from rambutan (Nephelium lappaceum) peel by microwave-induced KOH activation for acid yellow 17 dye adsorption, Chem. Eng. J., 250(2014) 198–204.
- M.A. Ahmad, N.A.A. Puad, O.S. Bello, Kinetic, equilibrium and thermodynamic studies of synthetic dye removal using pomegranate peel activated carbon prepared by microwave-induced KOH activation, Water Resour. Ind., 6 (2014) 18–35.
- Y.Y. Pei, J.Y. Liu (2011) Adsorption of Pb2+ in wastewater using adsorbent derived from grapefruit peel, Adv. Mater. Res., 391–392 (2011) 968–972.
- H.I. Owamah, Biosorptive removal of Pb(II) and Cu(II) from wastewater using activated carbon from cassava peels, J. Mater. Cycles Waste Manage., 16 (2014) 347–358.
- R. Pandey, N.G. Ansari, R.L. Prasad, R.C. Murthy, Removal of Cd(II) ions from simulated wastewater by HCl modified Cucumis sativus peel: equilibrium and kinetic study, Air Soil Water Res., 7 (2014) 93–101.
- O.S. Bello, M.A. Ahmad, B. Semire, Scavenging malachite green dye from aqueous solutions using pomelo (Citrus grandis) peels: kinetic, equilibrium and thermodynamic studies, Desal. Water Treat., 56 (2015) 521–535.
- K. Amela, M.A. Hassen, D. Kerroum, Isotherm and kinetics study of biosorption of cationic dye onto banana peel. Energy Procedia., 19 (2012) 286–295.
- P. Singh, P. Raizada, D. Pathania, G. Sharma, P. Sharma, Microwave induced KOH activation of guava peel carbon as an adsorbent for congo red dye removal from aqueous phase, Indian J. Chem. Technol., 20 (2013) 305–311.
- D.Z. Husein, Adsorption and removal of mercury ions from aqueous solution using raw and chemically modified Egyptian mandarin peel, Desalin. Water Treat., 51 (2013) 6761–6769.
- S.M.V. Palmeira, L.M. Gois, L.D. Souza, Extraction of phenolic compounds from mango peels, Latin. Am. Appl. Res., 42 (2012) 77–81.
- K. Bandyopadhyay, C. Chakraborty, S. Bhattacharyya, Fortification of mango peel and kernel powder in cookies formulation. J. Academia Indust. Res., 2 (2014) 661–664.
- H.J.Y. Kim, H. Moon, D. Kim, M. Lee, H. Cho, Y.S. Cho, M.A. Kim, S.K. Cho, Antioxidant and antiproliferative activities of mango (Mangifera indica L.) flesh and peel. Food Chem., 121 (2010) 429–436.
- I.S. Ashoush, M.G.E. Gadallah, Utilization of Mango peels and seed kernels powders as sources of phyto chemicals in biscuit. World J. Dairy Food Sci., 6 (2011) 35–42.
- A.H. Jawad, A.F.M. Alkarkhi, O.C. Jason, A.M. Easa, N.A.N. Norulaini, Production of the lactic acid from mango peel waste – Factorial experiment. J. King Saud Univ. Sci., 25 (2013) 39–45.
- K.V. Kumar, A. Kumaran, Removal of methylene blue by mango seed kernel powder. Biochem. Eng. J., 27 (2005) 83–93.
- M.M. Dávila-Jiménez, M.P. Elizalde-González, V. Hernández-Montoy, Performance of mango seed adsorbents in the adsorption of anthraquinone and azo acid dyes in single and binary aqueous solutions. Bioresour. Technol., 100 (2009) 6199–6206.
- W.S. Alencar, E. Acayanka, E.C. Lima, B. Royer, F.E. de Souza, J. Lameira, C.N. Alves, Application of Mangifera indica (mango) seeds as a biosorbent for removal of Victazol Orange 3R dye from aqueous solution and study of the biosorption mechanism. Chem. Eng. J., 209 (2012) 577–588.
- K. Munusamy, R.S. Somani, H.C. Bajaj, Breakthrough adsorption studies of mixed gases on mango (Mangifera indica L.) seed shell derived activated carbon extrudes. J. Environ. Chem. Eng., 3 (2015) 2750–2759.
- M.P. Elizalde-González, V. Hernández-Montoya, Characterization of mango pit as raw material in the preparation of activated carbon for wastewater treatment. Biochem. Eng. J., 36 (2007) 230–283.
- F.C. Wu, R.L. Tseng, C.C. Hu. Comparisons of pore properties and adsorption performance of KOH-activated and steam-activated carbons. Microporous Mesoporous Mater., 80 (2005) 95–106.
- Ö. Gerçel, A. Özcan, A.S. Özcan, H.F. Gerçel. Preparation of activated carbon from a renewable bio-plant of Euphorbia rigida by H2SO4 activation and its adsorption behavior in aqueous solutions. Appl. Surf. Sci., 253 (2007) 4843–4852.
- V.K. Garg, R. Kumar, R. Gupta. Removal of malachite green dye from aqueous solution by adsorption using agro-industry waste: a case study of Prosopis cineraria. Dyes Pigments, 62 (2004) 1–10.
- M. Auta, B.H. Hameed. Optimized waste tea activated carbon for adsorption of Methylene Blue and Acid Blue 29 dyes using response surface methodology. Chem. Eng. J., 175 (2011) 233–243.
- M. Ahmedna, W.E. Marshall, R.M. Rao, S.J. Clarke. Use of filtration and buffers in raw sugar colour measurements. J. Sci. Food Agric., 75 (1997) 109–116.
- F.A. Adekola, H.I. Adegoke. Adsorption of blue-dye on activated carbons produced from rice husk, coconut shell and coconut coir pith. Ife J. Sci., 7 (2005) 151–157.
- ASTM Standard, Standard Test Method for Total Ash Content of Activated Carbon, Designation D2866-94, 2000.
- Lubrizol standard test method, Iodine value, test procedure AATM 1112-01, October 16 (2006).
- M.V. Lopez-Ramon, F. Stoeckli, C. Moreno-Castilla, F. Carrasco- Marin, On the characterization of acidic and basic surface sites on carbons by various techniques, Carbon, 37 (1999) 1215–1221.
- R. Gnanasambandam, A. Protor. Determination of pectin degree of esterification by diffuse reflectance Fourier transforms infrared spectroscopy. Food Chem., 68 (2000) 327–332.
- M. Benadjemia, L. Millière, L. Reinert, N. Benderdouche, L. Duclaux, Preparation, characterization and Methylene Blue adsorption of phosphoric acid activated carbons from globe artichoke leaves, Fuel Process. Technol., 92 (2011) 1203–1212.
- G.E. Nascimento, M.M.M.B. Duarte, N.F. Campos, O.R.S. Rocha, V.L. Silva. Adsorption of azo dyes using peanut hull and orange peel: a comparative study. Environ. Technol., 35 (2014) 1436–1453.
- S. Chakraborty, S. Chowdhury, P.D. Saha. Adsorption of crystal violet from aqueous solution onto NaOH-modified rice husk. Carbohydr. Polym., 86 (2011) 1533–1541.
- H. Lata, V.K. Garg, R.K. Gupta. Removal of a basic dye from aqueous solution by adsorption using Parthenium hysterophorus: An agricultural waste. Dyes Pigments 74 (2007) 653–658.
- B. Royer, N.F. Cardoso, E.C. Lima, J.C.P. Vaghetti, R.C. Veses. Applications of Brazalin pine-fruit shell in natural and carbonized forms as adsorbents to removal of methylene blue from aqueous solutions: kinetics and equilibrium study. J. Hazard. Mater., 164 (2009) 1213–1222.
- A.E. Ofomaja. Sorption dynamics and isotherm studies of methylene blue uptake on to palm kernel fibre. Chem. Eng. J., 126 (2007) 35–43.
- S. Lagergren, About the theory of so called adsorption of soluble substances, kungliga SvenskaVetenskapsakademiens, Handlingar, Band, 24, No. 04 (1898) 1–39.
- Y.S. Ho, G. McKay, Pseudo-second-order model sorption processes, Process Biochem., 34 (1999) 451–465.
- I. Langmuir, The adsorption of gases on plane surfaces of glass, mica and platinum, J. Am. Chem. Soc., 40 (1918) 1361–1403.
- H.M.F. Freundlich. Over the adsorption in solution. J. Phys. Chem., 57 (1906) 385–470.
- M.J. Temkin, V. Pyzhev, Recent modifications to Langmuir isotherms, Acta Physiochim. USSR, 12 (1940) 217–222.
- S. Karagoz, T. Tay, S. Ucar, M. Erdem. Activated carbons from waste biomass by sulfuric acid activation and their use on methylene blue adsorption. Bioresour. Technol., 99 (2008) 6214–6222.
- Y.S. Ho R. Malaryvizhi, N. Sulochana. Equilibrium isotherm studies of methylene blue adsorption onto activated carbon prepared from Delonix regia pods. J Environ Prot Sci., 3:1 (2009) 1–6.
- D. Pathania, S. Sharma, P. Singh. Removal of methylene blue by adsorption onto activated carbon developed from Ficus carica bast. Arab. J. Chem., http://doi.org/10.1016/j. arabjc.2013.04.021.
- L.W. Low, T.T. Teng, A. Ahmad, N. Morad, Y.S. Wong. A novel pretreatment method of lignocellulosic material as adsorbent and kinetic study of dye waste adsorption. Water, Air, Soil Pollut., 218 (2011) 293–306.
- A.H. Jawad, R.A. Rashid, M.A.M. Ishak, L.D. Wilson. Adsorption of methylene blue onto activated carbon developed from biomass waste by H2SO4 activation: kinetic, equilibrium and thermodynamic studies. Desal. Water Treat., 57(52) (2016) 25194–25206.
- G. Karaçetin, S. Sivrikaya, M. Imamoğlu. Adsorption of methylene blue from aqueous solutions by activated carbon prepared from hazelnut husk using zinc chloride. J. Anal. Appl. Pyrolysis., 110 (2014) 270–276.
- R.A. Rashid, A.H. Jawad, M.A.M. Ishak, N.N. Kasim. KOH-activated carbon developed from biomass waste: adsorption equilibrium, kinetic and thermodynamic studies for Methylene blue uptake. Desal. Water Treat., 57(56) (2016) 27226–27236.
- Y. Yu, Y.Y. Zhuang, Z.H. Wang. Adsorption of water-soluable dye onto functionalized resin, J. Colloid Interf. Sci., 242 (2001) 288–293.
- D.D. Asouhidou, K.S. Triantafyllidis, N.K. Lazaridis, K.A. Matis, S.S. Kim, T.J. Pinnavaia. Sorption of reactive dyes from aqueous solutions by ordered hexagonal and disordered mesoporous carbons. Micropor. Mesopor. Mater., 117 (2009) 257–267.
- T. Calvete, E.C. Lima, N.F. Cardoso, J.C.P. Vaghetti, S.L.P. Dias, F.A. Pavan. Application of carbon adsorbents prepared from Brazilian-pine shell for the removal of reactive orange 16 from aqueous solution: Kinetic, equilibrium, and thermodynamic studies. J. Environ. Manage., 91 (2010) 1695–1706.