1,094
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Effect of medium properties on the transport of cadmium in saturated porous medium

, , , , , & show all
Pages 255-265 | Received 24 Mar 2021, Accepted 16 Sep 2021, Published online: 23 Sep 2021

References

  • Matei N, Popescu A, Radu GL, et al. Cadmium and lead occurrence in soil and grape from Murfatlar Vineyard. Ovidius University Annals of Chemistry. 2015;26(1):37–40.
  • Xiao X, Zhang J, Wang H, et al. Distribution and health risk assessment of potentially toxic elements in soils around coal industrial areas: a global meta-analysis. SciTotal Environ. 2020;713:135292.
  • Dong J, Li B, Bao Q. In situ reactive zone with modified Mg(OH)2 for remediation of heavy metal polluted groundwater: immobilization and interaction of Cr(III), Pb(II) and Cd(II). J Contam Hydrol. 2017;199:50–57.
  • Kumarasinghe U, Kawamoto K, Saito T, et al. Evaluation of applicability of filling materials in permeable reactive barrier (PRB) system to remediate groundwater contaminated with Cd and Pb at open solid waste dump sites. Process SafEnviron Prot. 2018;120:118–127.
  • He H, Xiang Z, Chen X, et al. Biosorption of Cd(II) from synthetic wastewater using dry biofilms from biotrickling filters. Int J Environ Sci Technol. 2018;15(7):1491–1500.
  • Huang Y, Yang C, Sun Z, et al. Removal of cadmium and lead from aqueous solutions using nitrilotriacetic acid anhydride modified ligno-cellulosic material. RSC Adv. 2015;5(15):11475–11484.
  • Wu M, Liu H, Yang C. Effects of pretreatment methods of wheat straw on adsorption of Cd(II) from waterlogged paddy soil. Int J Environ Res Public Health. 2019;16(2):205.
  • Li J, Xu Y. Immobilization remediation of Cd-polluted soil with different water condition. J Environ Manage. 2017;193:607–612.
  • Li L, Zhaoli YN. Kinetics and thermodynamics of Cd(II) adsorption on to soil colloids. J Shanxi Agric Univ. 2016;36:786–792.
  • Wang Y, Yin X, Sun H, et al. Transport of vanadium (V) in saturated porous media: effects of pH, ionic-strength and clay mineral. Chem Speciation Bioavailability. 2016;28(1–4):7–12.
  • Zhang L, Hou L, Wang L, et al. Transport of fullerene nanoparticles (nC60) in saturated sand and sandy soil: controlling factors and modeling. Environ Sci Technol. 2012;46(46):7230–7238.
  • Gavrilescu M. The role of colloidal systems. In: Fanun M, editor. Environmental Protection. Amsterdam: Elsevier; 2014. p. 397–451.
  • Zhang T, Wang W, Zhao Y, et al. Removal of heavy metals and dyes by clay-based adsorbents: from natural clays to 1D and 2D nano-composites. Chem Eng J. 2021;420:127574.
  • Chen H, Gao B, Yang L, et al. Montmorillonite enhanced ciprofloxacin transport in saturated porous media with sorbed ciprofloxacin showing antibiotic activity. J Contam Hydrol. 2015;173:1–7.
  • Lv X, Gao B, Sun Y, et al. Effects of humic acid and solution chemistry on the retention and transport of cerium dioxide nanoparticles in saturated porous media. Water Air Soil Pollut. 2014;225:2167–2176.
  • Liu J, Zhu R, Liang X, et al. Synergistic adsorption of Cd(II) with sulfate/phosphate on ferrihydrite: an in situ ATR-FTIR/2D-COS study. Chem Geol. 2018;477:12–21.
  • Wang D, Paradelo M, Bradford SA, et al. Facilitated transport of Cu with hydroxyapatite nanoparticles in saturated sand: effects of solution ionic strength and composition. Water Res. 2011;45(18):5905–5915.
  • Han P, Wang X, Cai L, et al. Transport and retention behaviors of titanium dioxide nanoparticles in iron oxide-coated quartz sand: effects of pH, ionic strength, and humic acid. Colloids Surf A Physicochem Eng Aspects. 2014;454(1):119–127.
  • Mähler J, Persson I. Rapid adsorption of arsenic from aqueous solution by ferrihydrite-coated sand and granular ferric hydroxide. Appl Geochem. 2013;37(10):179–189.
  • Jerez J, Flury M. Humic acid-, ferrihydrite-, and aluminosilicate-coated sands for column transport experiments. Colloids Surf A Physicochem Eng Aspects. 2006;273(1–3):90–96.
  • Unuabonah EI, Olu-Owolabi BI, Adebowale KO. Competitive adsorption of metal ions onto goethite–humic acid-modified kaolinite clay. Int J Environ Sci Technol. 2016;13(4):1043–1054.
  • Yin X, Jiang Y, Tan Y, et al. Co-transport of graphene oxide and heavy metal ions in surface-modified porous media. Chemosphere. 2019;218:1–13.
  • Yang Y, Koopal LK. Immobilisation of humic acids and binding of nitrophenol to immobilised humics. Colloids Surf A Physicochem Eng Aspects. 1999;151(1–2):201–212.
  • Wang J, Guo X. Adsorption kinetic models: physical meanings, applications, and solving methods. J Hazard Mater. 2020b;390:122156.
  • Wang J, Guo X. Adsorption isotherm models: classification, physical meaning, application and solving method. Chemosphere. 2020a;258:127279.
  • Jiang Y, Zhang X, Yin X, et al. Graphene oxide-facilitated transport of Pb2+ and Cd2+ in saturated porous media. Sci Total Environ. 2018;631-632:369–376.
  • Sun H, Gao B, Tian Y, et al. Kaolinite and lead in satu rated porous media: facili tated and impeded tran sport. J Environ Eng. 2010;136(11):1305–1308.
  • Hao C, Gao B, Hui L, et al. Effects of pH and ionic strength on sulfamethoxazole and ciprofloxacin transport in saturated porous media. J Contam Hydrol. 2011;126(1):29–36.
  • Luo X, Yu L, Wang C, et al. Sorption of vanadium (V) onto natural soil colloids under various solution pH and ionic strength conditions. Chemosphere. 2017;169:609–617.
  • Du H, Peacock CL, Chen W, et al. Binding of Cd by ferrihydrite organo-mineral composites: implications for Cd mobility and fate in natural and contaminated environments. Chemosphere. 2018;207:404–412.
  • Qu C, Chen W, Fein JB, et al. The role of interfacial reactions in controlling the distribution of Cd within goethite−humic acid−bacteria composites. J Hazard Mater. 2021;405:124081.
  • Qu C, Chen W, Hu X, et al. Heavy metal behaviour at mineral-organo interfaces: mechanisms, modelling and influence factors. Environ Int. 2019;131:104995.
  • Ma J, Guo H, Lei M, et al. Enhanced transport of ferrihydrite colloid by chain-shaped humic acid colloid in saturated porous media. SciTotal Environ. 2018;621:1581–1591.
  • Braun A, Klumpp E, Azzam R, et al. Transport and deposition of stabilized engineered silver nanoparticles in water saturated loamy sand and silty loam. SciTotal Environ. 2015;535:102–112.
  • Torkzaban S, Bradford SA, Vanderzalm JL, et al. Colloid release and clogging in porous media: effects of solution ionic strength and flow velocity. J Contam Hydrol. 2015;181:161–171.
  • Zhou D, Jiang X, Lu Y, et al. Cotransport of graphene oxide and Cu(II) through saturated porous media. Sci Total Environ. 2016;550:717–726.
  • Zhang Y, Zhu C, Liu F, et al. Effects of ionic strength on removal of toxic pollutants from aqueous media with multifarious adsorbents: a review. SciTotal Environ. 2018;646:265–279.
  • Tan Y, Yin X, Wang C, et al. Sorption of cadmium onto Mg-Fe Layered Double Hydroxide (LDH)-Kiwi branch biochar. Environ Pollut Bioavailability. 2019;31(1):189–197.
  • Altin O, Ozbelge OH, Dogu T. Effect of pH, flow rate and concentration on the sorption of Pb and Cd on montmorillonite: II. Modelling. J Chem Technol Biot. 2015;74(12):1139–1144.
  • Wang Y, Li Y, Zhang Y, et al. Effects of macromolecular humic/fulvic acid on Cd(II) adsorption onto reed-derived biochar as compared with tannic acid. Int J Biol Macromol. 2019;134:43–55.