Adsorption of copper (II) on mesoporous silica: the effect of nano-scale confinement

Andrew W. Knight1, A Tigges1, Anastasia Gennadyevna Ilgen1
1Geochemistry Department, Sandia National Laboratories, 1515 Eubank Blvd SE, Albuquerque, NM, 87123, USA

Tóm tắt

Từ khóa


Tài liệu tham khảo

Weber WJ, Huang WL (1996) A distributed reactivity model for sorption by soils and sediments. 4. Intraparticle heterogeneity and phase-distribution relationships under nonequilibrium conditions—response. Environ Sci Technol 30(10):3130–3131

Wang YF et al (2003) Surface chemistry of mesoporous materials: effect of nanopore confinement. Struct Prop Relationsh Oxide Surf Interfaces II 751:121–125

Ilgen AG et al (2017) Shales at all scales: exploring coupled processes in mudrocks. Earth Sci Rev 166:132–152

Sing KSW et al (1985) Reporting physisorption data for gas solid systems with special reference to the determination of surface-area and porosity (Recommendations 1984). Pure Appl Chem 57(4):603–619

Logar NZ, Kaucic V (2006) Nanoporous materials: from catalysis and hydrogen storage to wastewater treatment. Acta Chim Slov 53(2):117–135

Levinger NE (2002) Water in confinement. Science 298(5599):1722–1723

Marti J et al (2006) Molecular dynamics simulation of liquid water confined inside graphite channels: dielectric and dynamical properties. J Phys Chem B 110(47):23987–23994

Senapati S, Chandra A (2001) Dielectric constant of water confined in a nanocavity. J Phys Chem B 105(22):5106–5109

Takei T et al (2000) Changes in density and surface tension of water in silica pores. Colloid Polym Sci 278(5):475–480

Nelson JM et al (2014) Probing the mechanisms of pore size dependent geochemistry: effects of meso-confinement on Zn sorption in mesoporous silica. In: abstracts of papers of the American chemical society, vol 247

Zimmerman AR et al (2004) Protection of mesopore-adsorbed organic matter from enzymatic degradation. Environ Sci Technol 38(17):4542–4548

Kim YH et al (2004) Arsenic removal using mesoporous alumina prepared via a templating method. Environ Sci Technol 38(3):924–931

Madden AS, Hochella MF, Luxton TP (2006) Insights for size-dependent reactivity of hematite nanomineral surfaces through Cu2+ sorption. Geochim Cosmochim Acta 70(16):4095–4104

Zeng H et al (2009) Nanoscale size effects on uranium(VI) adsorption to hematite. Environ Sci Technol 43(5):1373–1378

Ferreira DR et al (2012) An electron paramagnetic resonance spectroscopy investigation of the retention mechanisms of Mn and Cu in the nanopore channels of three zeolite minerals. Clays Clay Miner 60(6):588–598

Ferreira DR, Schulthess CP, Giotto MV (2012) An investigation of strong sodium retention mechanisms in nanopore environments using nuclear magnetic resonance spectroscopy. Environ Sci Technol 46(1):300–306

Ferreira DR, Schulthess CP, Kabengi NJ (2012) Calorimetric evidence in support of the nanopore inner sphere enhancement theory on cation adsorption. Soil Chem 77:94–99

Moore JW (1991) Copper, in inorganic contaminants of surface water: research and monitoring priorities. Springer, New York

Cheah SF, Brown GE, Parks GA (1998) XAFS spectroscopy study of Cu(II) sorption on amorphous SiO2 and gamma-Al2O3: effect of substrate and time on sorption complexes. J Colloid Interface Sci 208(1):110–128

Cheah SF, Brown GE, Parks GA (2000) XAFS study of Cu model compounds and Cu2+ sorption products on amorphous SiO2, gamma-Al2O3, and anatase. Am Miner 85(1):118–132

Rengaraj S et al (2004) Removal of copper from aqueous solution by aminated and protonated mesoporous aluminas: kinetics and equilibrium. J Colloid Interface Sci 273(1):14–21

Chiron N, Guilet R, Deydier E (2003) Adsorption of Cu(II) and Pb(II) onto a grafted silica: isotherms and kinetic models. Water Res 37(13):3079–3086

Aguado J et al (2009) Aqueous heavy metals removal by adsorption on amine-functionalized mesoporous silica. J Hazard Mater 163(1):213–221

Pinkas J (2005) Chemistry of silicates and alumino silicates. Ceram-Silik 49(4):287–298

Ojeda ML et al (2003) On comparing BJH and NLDFT pore-size distributions determined from N(2) sorption on SBA-15 substrata. Phys Chem Chem Phys 5(9):1859–1866

Ravikovitch PI, Neimark AV (2001) Characterization of micro- and mesoporosity in SBA-15 materials from adsorption data by the NLDFT method. J Phys Chem B 105(29):6817–6823

Carrott MMLR et al (2001) Adsorption of nitrogen, neopentane, n-hexane, benzene and methanol for the evaluation of pore sizes in silica grades of MCM-41. Microporous Mesoporous Mater 47(2–3):323–337

Ndungu K (2012) Model predictions of copper speciation in coastal water compared to measurements by analytical voltammetry. Environ Sci Technol 46(14):7644–7652

Langmuir I (1918) The adsorption of gases on plane surfaces of glass, mica and platinum. J Am Chem Soc 40:1361–1403

Elkady MF, El-Aassar MR, Hassan HS (2016) Adsorption profile of basic dye onto novel fabricated carboxylated functionalized co-polymer nanofibers. Polymers 8(5):177

Nethaji S, Sivasamy A, Mandal AB (2013) Adsorption isotherms, kinetics and mechanism for the adsorption of cationic and anionic dyes onto carbonaceous particles prepared from Juglans regia shell biomass. Int J Environ Sci Technol 10(2):231–242

Smith KS (1999) Metal sorption on mineral surfaces: an overview with examples relating to mineral deposits. In: Plumblee GS, Logsdon MJ (eds) The environmental geochemistry of mineral deposits. Society of Economic Geologists, Inc, Littleton, pp 161–182

Mahmoud MA (2015) Kinetics and thermodynamics of aluminum oxide nanopowder as adsorbent for Fe(III) from aqueous solution. Beni-Suef Univ J Basic Appl Sci 4(2):142–149

Vadivelan V, Kumar KV (2005) Equilibrium, kinetics, mechanism, and process design for the sorption of methylene blue onto rice husk. J Colloid Interface Sci 286(1):90–100

Freundlich H (1906) Concerning adsorption in solutions. Zeitschrift Fur Physikalische Chemie-Stochiometrie Und Verwandtschaftslehre 57(4):385–470

Everett JA (ed) (1998) Adsorption models in adsorption of metals by geomedia. Academic Press, San Diego

Dabrowski A (2001) Adsorption—from theory to practice. Adv Colloid Interface Sci 93(1–3):135–224

Polanyi M (1963) Potential theory of adsorption. Science 141(358):1010

Corbett JF (1972) Pseudo first-order kinetics. J Chem Educ 49(10):663

Creed J, Brockhoff C, Martin T (1994) EPA method 200.8, revision 5.4. Determination of trace elements in waters and wastes by inductively coupled plasma—mass spectrometry. U.E.P. Agency, Knoxville

Pollock RA et al (2011) Size and spatial distribution of micropores in SBA-15 using CM-SANS. Chem Mater 23(17):3828–3840

Galarneau A et al (2001) True microporosity and surface area of mesoporous SBA-15 silicas as a function of synthesis temperature. Langmuir 17(26):8328–8335

Kruk M et al (2000) Characterization of the porous structure of SBA-15. Chem Mater 12(7):1961–1968

Zhuravlev LT (2000) The surface chemistry of amorphous silica. Zhuravlev model. Colloids Surf A Physicochem Eng Aspects 173(1–3):1–38

Ide M et al (2013) Quantification of silanol sites for the most common mesoporous ordered silicas and organosilicas: total versus accessible silanols. Phys Chem Chem Phys 15(2):642–650

Giret S, Hu Y, Masoumifard N, Boulanger J, Juere E, Kleitz F, Lariviere D (2018) Selective separation and preconcentration of scadium with mesoporous silica. Appl Mater Interfaces 10:448–457

Kosmulski M (2009) pH-dependent surface charging and points of zero charge. IV. Update and new approach. J Colloid Interface Sci 337(2):439–448

Wang YF et al (2003) Nanogeochemistry: geochemical reactions and mass transfers in nanopores. Geology 31(5):387–390

Kalluri RK, Konatham D, Striolo A (2011) Aqueous NaCl solutions within charged carbon-slit pores: partition coefficients and density distributions from molecular dynamics simulations. J Phys Chem C 115(28):13786–13795

Wang YF (2014) Nanogeochemistry: nanostructures, emergent properties and their control on geochemical reactions and mass transfers. Chem Geol 378:1–23

Singer DM, Guo H, Davis JA (2014) U(VI) and Sr(II) batch sorption and diffusion kinetics into mesoporous silica (MCM-41). Chem Geol 390:152–163

Malash GF, El-Khaiary MI (2010) Piecewise linear regression: a statistical method for the analysis of experimental adsorption data by the intraparticle-diffusion models. Chem Eng J 163(3):256–263

Wei W et al (2016) Biosorption of Pb(II) from aqueous solution by extracellular polymeric substances extracted from Klebsiella sp. J1: adsorption behavior and mechanism assessment. Sci Rep 6:31575