Modeling of batch sorber system: kinetic, mechanistic, and thermodynamic modeling

Springer Science and Business Media LLC - Tập 7 - Trang 3173-3180 - 2016
Vishal Mishra1
1School of Bio Chemical Engineering, Indian Institute of Technology (Banaras Hindu University) Varanasi, Varanasi, India

Tóm tắt

The present investigation has dealt with the biosorption of copper and zinc ions on the surface of egg-shell particles in the liquid phase. Various rate models were evaluated to elucidate the kinetics of copper and zinc biosorptions, and the results indicated that the pseudo-second-order model was more appropriate than the pseudo-first-order model. The curve of the initial sorption rate versus the initial concentration of copper and zinc ions also complemented the results of the pseudo-second-order model. Models used for the mechanistic modeling were the intra-particle model of pore diffusion and Bangham’s model of film diffusion. The results of the mechanistic modeling together with the values of pore and film diffusivities indicated that the preferential mode of the biosorption of copper and zinc ions on the surface of egg-shell particles in the liquid phase was film diffusion. The results of the intra-particle model showed that the biosorption of the copper and zinc ions was not dominated by the pore diffusion, which was due to macro-pores with open-void spaces present on the surface of egg-shell particles. The thermodynamic modeling reproduced the fact that the sorption of copper and zinc was spontaneous, exothermic with the increased order of the randomness at the solid–liquid interface.

Tài liệu tham khảo

Argun ME, Dursun S, Karatas M, Guru M (2008) Activation of pine cone using Fenton oxidation for Cd (II) and Pb (II) removal. Bioresour Technol 99:8691–8698 Arshad MNZ, Muhammad YS, Nadeem R (2008) The use of Neem biomass for the biosorption of zinc from aqueous solutions. J Hazard Mater 157:534–540 Basha S, Murthy ZVP, Jha B (2009) Sorption of Hg(II) onto Carica papaya: experimental studies and design of batch sorber. Chem Eng J 147:226–234 Bligili MS (2006) Adsorption of 4-chlorophenol aqueous solutions by xad-4 resin: isotherm, kinetic, and thermodynamic analysis. J Hazard Mater B 137:157–164 Dang VBH, Doan HD, Dang V, Lohi TA (2009) Equilibrium and kinetics of biosorption of Cadmium (II) and Copper (II) ions by wheat straw. Bioresour Technol 100:211–219 Febrianto J, Kosasih NA, Sunarso J, Ju HY, Indraswati N, Ismadji S (2009) Equilibrium and kinetic studies in adsorption of heavy metals using biosorbent: a summary of recent studies. J Hazard Mater 162:616–645 Gupta VK, Rastogi A (2009) Biosorption of hexavalent chromium by raw and acid treated algae Oedogonium hatie from aqueous solutions. J Hazard Mater 163:396–402 Ho YS, McKay G (1988) The kinetics of sorption of basic dyes from aqueous solutions by sphagnum moss peat. Can J Chem Eng 76:822–827 Kambahty Y, Mody K, Basha S, Jha B (2009) Kinetics, equilibrium and thermodynamic studies on biosorption of hexavalent chromium by dead fungal biomass of marine Aspergillus niger. Chem Eng J 145:489–495 Khadivinia E, Sharafi H, Hadi F (2014) Cadmium biosorption by a glyphosate-degrading bacterium, a novel biosorbent isolated from pesticide-contaminated agricultural soils. J Ind Eng Chem 20:4304–4310 Kumar KV, Ramamurthi K, Sivanesan S (2005) Modeling the mechanism involved during sorption of methylene blue onto fly ash. J Colloid Interface Sci 284:14–21 Mishra V (2015) Study on co-biosorption of Zn (II) and Cu (II) in liquid phase. Desalt Wat Treat 57:12141–12155 Mishra V, Tadepalli S (2014) Biosorption of toxic heavy metals on sawdust. Clean Soil Air Wat 42:1–8 Mishra V, Balomajumder C, Agarwal VK (2012) Sorption of Zn (II) ion onto surface of activated carbon derived from eucalyptus bark saw dust from industrial wastewater: isotherm, kinetics, mechanistic modeling and thermodynamics. Desalt Wat Treat 46:332–351 Nemr AE (2009) Potential of Pomegranate husk carbon for Cr(VI) removal from wastewater: kinetic and isotherms studies. J Hazard Mater 161:132–141 Pamukoglu MY, Kargi F (2007) Effects of operating parameterson kinetics of copper (II) ion non pre-treated powered waste sludge (PWS). Enzym Microb Technol 2:76–82 Srinivasan K, Hema M (2009) Nickle removal from waste water by using activated carbon prepared from agro industrial wastes. Res J Chem Environ 13:54–65 Subudhi S, Batta N, Pathak M (2014) Bioflocculant production and biosorption of zinc and lead by a novel bacterial species, Achromobacter sp. TERI-IASST N, isolated from oil refinery waste. Chemosphere 113:116–124 Tsai WT, Yang JM, Lai CW, Cheng YH, Lin CC, Yeh CW (2006) Characterization and adsorption properties of eggshells and eggshell membrane. Bioresour Technol 97:488–493 Vaghetti CJP, Lima EC, Royer B, Brasil LJ, Cunha BM, Simon NM, Cardosos FN, Norena ZPC (2008) Application of Brazilian fruit coat as a biosorbent to remove of Cr(VI) from aqueous solution- kinetic and equilibrium study. Biochem Eng J 42:67–76