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2021 | OriginalPaper | Chapter

Adsorption of Cations on Minerals

Authors : Feng Rao, Zhili Li, Ramiro Escudero Garcia

Published in: Adsorption at Natural Minerals/Water Interfaces

Publisher: Springer International Publishing

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Abstract

The adsorption of cations on minerals plays an important role theoretically in surface and colloidal chemistry, and applicably in various engineering processes such as water treatment, agriculture and flotation of minerals. This chapter introduces the fundamentals of the adsorption of cations on minerals, the measurements, and classifies the applications. Then, structure and surface chemistry of clay minerals, which have been proved to be the most workable mineral in cations adsorption, are introduced. Other oxide minerals, such as goethite, are present for their structure and adsorption behavior as well. After that, the chapter summarizes and differentiates the adsorption on the basis of different types of cations, namely lead, mercury, copper, chromium and other cations. It tries to present the research results through a novel classification, rather than the types of adsorbents. The gaps between fundamental research and engineering applications are discussed, as well as the further research opportunities are present.

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Literature
1.
go back to reference Carroll, D.: Ion exchange in clays and other minerals. Geol. Soc. Am. Bull. 70, 749–779 (1959)CrossRef Carroll, D.: Ion exchange in clays and other minerals. Geol. Soc. Am. Bull. 70, 749–779 (1959)CrossRef
2.
go back to reference Jiang, M.Q., Jin, X.Y., Lu, X.Q., Chen, Z.L.: Adsorption of Pb (II), Cd (II), Ni (II) and Cu (II) onto natural kaolinite clay. Desalination 252, 33–39 (2010)CrossRef Jiang, M.Q., Jin, X.Y., Lu, X.Q., Chen, Z.L.: Adsorption of Pb (II), Cd (II), Ni (II) and Cu (II) onto natural kaolinite clay. Desalination 252, 33–39 (2010)CrossRef
3.
go back to reference Erdem, E., Karapinar, N., Donat, R.: The removal of heavy metal cations by natural zeolites. J. Colloid Interf. Sci. 280, 309–314 (2004)CrossRef Erdem, E., Karapinar, N., Donat, R.: The removal of heavy metal cations by natural zeolites. J. Colloid Interf. Sci. 280, 309–314 (2004)CrossRef
4.
go back to reference Davis, J.A., Fuller, C.C., Cook, A.D.: A model for trace metal sorption processes at the calcite surface: adsorption of Cd2+ and subsequent solid solution formation. Geochim. Cosmochim. Acta 51, 1477–1490 (1987)CrossRef Davis, J.A., Fuller, C.C., Cook, A.D.: A model for trace metal sorption processes at the calcite surface: adsorption of Cd2+ and subsequent solid solution formation. Geochim. Cosmochim. Acta 51, 1477–1490 (1987)CrossRef
5.
go back to reference Hayes, K.F., Leckie, J.O.: In: Mechanism of Lead Ion Adsorption at the Goethite-Water Interface. ACS Publications (1986) Hayes, K.F., Leckie, J.O.: In: Mechanism of Lead Ion Adsorption at the Goethite-Water Interface. ACS Publications (1986)
6.
go back to reference Tahir, S., Rauf, N.: Thermodynamic studies of Ni (II) adsorption onto bentonite from aqueous solution. J. Chem. Thermodyn. 35 (2003) Tahir, S., Rauf, N.: Thermodynamic studies of Ni (II) adsorption onto bentonite from aqueous solution. J. Chem. Thermodyn. 35 (2003)
7.
go back to reference Adebowale, K.O., Unuabonah, I.E., Olu-Owolabi, B.I.: The effect of some operating variables on the adsorption of lead and cadmium ions on kaolinite clay. J. Hazard. Mater. 134, 130–139 (2006)CrossRef Adebowale, K.O., Unuabonah, I.E., Olu-Owolabi, B.I.: The effect of some operating variables on the adsorption of lead and cadmium ions on kaolinite clay. J. Hazard. Mater. 134, 130–139 (2006)CrossRef
8.
go back to reference Zhao, D., Yang, X., Zhang, H., Chen, C., Wang, X.: Effect of environmental conditions on Pb (II) adsorption on β-MnO2. Chem. Eng. J. 164, 49–55 (2010)CrossRef Zhao, D., Yang, X., Zhang, H., Chen, C., Wang, X.: Effect of environmental conditions on Pb (II) adsorption on β-MnO2. Chem. Eng. J. 164, 49–55 (2010)CrossRef
9.
go back to reference Sheng, G., Wang, S., Hu, J., Lu, Y., Li, J., Dong, Y., Wang, X.: Adsorption of Pb (II) on diatomite as affected via aqueous solution chemistry and temperature. Colloid Surf. A 339, 159–166 (2009)CrossRef Sheng, G., Wang, S., Hu, J., Lu, Y., Li, J., Dong, Y., Wang, X.: Adsorption of Pb (II) on diatomite as affected via aqueous solution chemistry and temperature. Colloid Surf. A 339, 159–166 (2009)CrossRef
10.
go back to reference Liang, P., Qin, Y., Hu, B., Li, C., Peng, T., Jiang, Z.: Study of the adsorption behavior of heavy metal ions on nanometer-size titanium dioxide with ICP-AES. Fresen J. Anal. Chem. 368, 638–640 (2000)CrossRef Liang, P., Qin, Y., Hu, B., Li, C., Peng, T., Jiang, Z.: Study of the adsorption behavior of heavy metal ions on nanometer-size titanium dioxide with ICP-AES. Fresen J. Anal. Chem. 368, 638–640 (2000)CrossRef
11.
go back to reference Dong, D., Derry, L.A., Lion, L.W.: Pb scavenging from a freshwater lake by Mn oxides in heterogeneous surface coating materials. Water Res. 37, 1662–1666 (2003)CrossRef Dong, D., Derry, L.A., Lion, L.W.: Pb scavenging from a freshwater lake by Mn oxides in heterogeneous surface coating materials. Water Res. 37, 1662–1666 (2003)CrossRef
12.
go back to reference Eren, E., Afsin, B.: An investigation of Cu (II) adsorption by raw and acid-activated bentonite: a combined potentiometric, thermodynamic, XRD, IR, DTA study. J. Hazard. Mater. 151, 682–691 (2008)CrossRef Eren, E., Afsin, B.: An investigation of Cu (II) adsorption by raw and acid-activated bentonite: a combined potentiometric, thermodynamic, XRD, IR, DTA study. J. Hazard. Mater. 151, 682–691 (2008)CrossRef
13.
go back to reference Abdel-Samad, H., Watson, P.R.: An XPS study of the adsorption of lead on goethite (α–FeOOH). Appl. Surf. Sci. 136, 46–54 (1998)CrossRef Abdel-Samad, H., Watson, P.R.: An XPS study of the adsorption of lead on goethite (α–FeOOH). Appl. Surf. Sci. 136, 46–54 (1998)CrossRef
14.
go back to reference Li, H., Mu, S., Weng, X., Zhao, Y., Song, S.: Rutile flotation with Pb2+ ions as activator: adsorption of Pb2+ at rutile/water interface. Colloid Surf. A 506, 431–437 (2016)CrossRef Li, H., Mu, S., Weng, X., Zhao, Y., Song, S.: Rutile flotation with Pb2+ ions as activator: adsorption of Pb2+ at rutile/water interface. Colloid Surf. A 506, 431–437 (2016)CrossRef
15.
go back to reference Strawn, D.G., Scheidegger, A.M., Sparks, D.L.: Kinetics and mechanisms of Pb (II) sorption and desorption at the aluminum oxide–water interface. Environ. Sci. Technol. 32, 2596–2601 (1998)CrossRef Strawn, D.G., Scheidegger, A.M., Sparks, D.L.: Kinetics and mechanisms of Pb (II) sorption and desorption at the aluminum oxide–water interface. Environ. Sci. Technol. 32, 2596–2601 (1998)CrossRef
16.
go back to reference Fu, F., Wang, Q.: Removal of heavy metal ions from wastewaters: a review. J. Environ. Manag. 92, 407–418 (2011)CrossRef Fu, F., Wang, Q.: Removal of heavy metal ions from wastewaters: a review. J. Environ. Manag. 92, 407–418 (2011)CrossRef
17.
go back to reference Babel, S., Kurniawan, T.A.: Low-cost adsorbents for heavy metals uptake from contaminated water: a review. J. Hazard. Mater. 97, 219–243 (2003)CrossRef Babel, S., Kurniawan, T.A.: Low-cost adsorbents for heavy metals uptake from contaminated water: a review. J. Hazard. Mater. 97, 219–243 (2003)CrossRef
18.
go back to reference Uddin, M.K.: A review on the adsorption of heavy metals by clay minerals, with special focus on the past decade. Chem. Eng. J. 308, 438–462 (2017)CrossRef Uddin, M.K.: A review on the adsorption of heavy metals by clay minerals, with special focus on the past decade. Chem. Eng. J. 308, 438–462 (2017)CrossRef
19.
go back to reference Li, Y.H., Wang, S., Wei, J., Zhang, X., Xu, C., Luan, Z., Wu, D., Wei, B.: Lead adsorption on carbon nanotubes. Chem. Phys. Lett. 357, 263–266 (2002)CrossRef Li, Y.H., Wang, S., Wei, J., Zhang, X., Xu, C., Luan, Z., Wu, D., Wei, B.: Lead adsorption on carbon nanotubes. Chem. Phys. Lett. 357, 263–266 (2002)CrossRef
20.
go back to reference Sekar, M., Sakthi, V., Rengaraj, S.: Kinetics and equilibrium adsorption study of lead (II) onto activated carbon prepared from coconut shell. J. Colloid Interf. Sci. 279, 307–313 (2004)CrossRef Sekar, M., Sakthi, V., Rengaraj, S.: Kinetics and equilibrium adsorption study of lead (II) onto activated carbon prepared from coconut shell. J. Colloid Interf. Sci. 279, 307–313 (2004)CrossRef
21.
go back to reference Bhattacharyya, K.G., Gupta, S.S.: Kaolinite, montmorillonite, and their modified derivatives as adsorbents for removal of Cu (II) from aqueous solution. Sep. Purif. Technol. 50, 388–397 (2006)CrossRef Bhattacharyya, K.G., Gupta, S.S.: Kaolinite, montmorillonite, and their modified derivatives as adsorbents for removal of Cu (II) from aqueous solution. Sep. Purif. Technol. 50, 388–397 (2006)CrossRef
22.
go back to reference Li, N., Bai, R.: Copper adsorption on chitosan–cellulose hydrogel beads: behaviors and mechanisms. Sep. Purif. Technol. 42, 237–247 (2005)CrossRef Li, N., Bai, R.: Copper adsorption on chitosan–cellulose hydrogel beads: behaviors and mechanisms. Sep. Purif. Technol. 42, 237–247 (2005)CrossRef
23.
go back to reference Tan, G., Xiao, D.: Adsorption of cadmium ion from aqueous solution by ground wheat stems. J. Hazard. Mater. 164, 1359–1363 (2009)CrossRef Tan, G., Xiao, D.: Adsorption of cadmium ion from aqueous solution by ground wheat stems. J. Hazard. Mater. 164, 1359–1363 (2009)CrossRef
24.
go back to reference Boparai, H.K., Joseph, M., O’Carroll, D.M.: Kinetics and thermodynamics of cadmium ion removal by adsorption onto nano zerovalent iron particles. J. Hazard. Mater. 186, 458–465 (2011)CrossRef Boparai, H.K., Joseph, M., O’Carroll, D.M.: Kinetics and thermodynamics of cadmium ion removal by adsorption onto nano zerovalent iron particles. J. Hazard. Mater. 186, 458–465 (2011)CrossRef
25.
go back to reference Nabais, J.V., Carrott, P., Carrott, M.R., Belchior, M., Boavida, D., Diall, T., Gulyurtlu, I.: Mercury removal from aqueous solution and flue gas by adsorption on activated carbon fibres. Appl. Surf. Sci. 252, 6046–6052 (2006)CrossRef Nabais, J.V., Carrott, P., Carrott, M.R., Belchior, M., Boavida, D., Diall, T., Gulyurtlu, I.: Mercury removal from aqueous solution and flue gas by adsorption on activated carbon fibres. Appl. Surf. Sci. 252, 6046–6052 (2006)CrossRef
26.
go back to reference Owlad, M., Aroua, M.K., Daud, W.A.W., Baroutian, S.: Removal of hexavalent chromium-contaminated water and wastewater: a review. Water Air Soil Poll. 200, 59–77 (2009)CrossRef Owlad, M., Aroua, M.K., Daud, W.A.W., Baroutian, S.: Removal of hexavalent chromium-contaminated water and wastewater: a review. Water Air Soil Poll. 200, 59–77 (2009)CrossRef
27.
go back to reference Schneider, R., Cavalin, C., Barros, M., Tavares, C.: Adsorption of chromium ions in activated carbon. Chem. Eng. J. 132, 355–362 (2007)CrossRef Schneider, R., Cavalin, C., Barros, M., Tavares, C.: Adsorption of chromium ions in activated carbon. Chem. Eng. J. 132, 355–362 (2007)CrossRef
28.
go back to reference Strawn, D.G., Sparks, D.L.: The use of XAFS to distinguish between inner-and outer-sphere lead adsorption complexes on montmorillonite. J. Colloid Interf. Sci. 216, 257–269 (1999)CrossRef Strawn, D.G., Sparks, D.L.: The use of XAFS to distinguish between inner-and outer-sphere lead adsorption complexes on montmorillonite. J. Colloid Interf. Sci. 216, 257–269 (1999)CrossRef
29.
go back to reference Oubagaranadin, J.U.K., Murthy, Z.: Adsorption of divalent lead on a montmorillonite–illite type of clay. Ind. Eng. Chem. Res. 48, 10627–10636 (2009)CrossRef Oubagaranadin, J.U.K., Murthy, Z.: Adsorption of divalent lead on a montmorillonite–illite type of clay. Ind. Eng. Chem. Res. 48, 10627–10636 (2009)CrossRef
30.
go back to reference Weaver, C.E., Pollard, L.D.: The Chemistry of Clay Minerals. Elsevier (2011) Weaver, C.E., Pollard, L.D.: The Chemistry of Clay Minerals. Elsevier (2011)
31.
go back to reference El-Bayaa, A., Badawy, N., AlKhalik, E.A.: Effect of ionic strength on the adsorption of copper and chromium ions by vermiculite pure clay mineral. J. Hazard. Mater. 170, 1204–1209 (2009)CrossRef El-Bayaa, A., Badawy, N., AlKhalik, E.A.: Effect of ionic strength on the adsorption of copper and chromium ions by vermiculite pure clay mineral. J. Hazard. Mater. 170, 1204–1209 (2009)CrossRef
32.
go back to reference Coles, C.A., Yong, R.N.: Aspects of kaolinite characterization and retention of Pb and Cd. Appl. Clay Sci. 22, 39–45 (2002)CrossRef Coles, C.A., Yong, R.N.: Aspects of kaolinite characterization and retention of Pb and Cd. Appl. Clay Sci. 22, 39–45 (2002)CrossRef
33.
go back to reference Gu, X., Evans, L.J.: Surface complexation modelling of Cd (II), Cu (II), Ni (II), Pb (II) and Zn (II) adsorption onto kaolinite. Geochim. Cosmochim. Acta 72, 267–276 (2008)CrossRef Gu, X., Evans, L.J.: Surface complexation modelling of Cd (II), Cu (II), Ni (II), Pb (II) and Zn (II) adsorption onto kaolinite. Geochim. Cosmochim. Acta 72, 267–276 (2008)CrossRef
34.
go back to reference Zhao, D., Chen, S., Yang, S., Yang, X., Yang, S.: Investigation of the sorption behavior of Cd (II) on GMZ bentonite as affected by solution chemistry. Chem. Eng. J. 166, 1010–1016 (2011)CrossRef Zhao, D., Chen, S., Yang, S., Yang, X., Yang, S.: Investigation of the sorption behavior of Cd (II) on GMZ bentonite as affected by solution chemistry. Chem. Eng. J. 166, 1010–1016 (2011)CrossRef
35.
go back to reference Jia, F., Wang, Q., Wu, J., Li, Y.: Two-dimensional molybdenum disulfide as a superb adsorbent for removing Hg2+ from water. Acs. Sustain. Chem. Eng. 5, 7410–7419 (2017)CrossRef Jia, F., Wang, Q., Wu, J., Li, Y.: Two-dimensional molybdenum disulfide as a superb adsorbent for removing Hg2+ from water. Acs. Sustain. Chem. Eng. 5, 7410–7419 (2017)CrossRef
36.
go back to reference Liu, C., Jia, F., Wang, Q., Yang, B., Song, S.: Two-dimensional molydbenum disulfide as adsorbent for high-efficient Pb(II) removal from water. Appl. Mater. Today 9, 220–228 (2017)CrossRef Liu, C., Jia, F., Wang, Q., Yang, B., Song, S.: Two-dimensional molydbenum disulfide as adsorbent for high-efficient Pb(II) removal from water. Appl. Mater. Today 9, 220–228 (2017)CrossRef
37.
go back to reference Jia, F., Zhang, X., Song, S.: AFM study on the adsorption of Hg2+ on natural molybdenum disulfide in aqueous solutions. Phys. Chem. Chem. Phys. 19, 3837–3844 (2017)CrossRef Jia, F., Zhang, X., Song, S.: AFM study on the adsorption of Hg2+ on natural molybdenum disulfide in aqueous solutions. Phys. Chem. Chem. Phys. 19, 3837–3844 (2017)CrossRef
38.
go back to reference Jia, F., Liu, C., Yang, B., Zhang, X., Yi, H., Ni, J., Song, S.: Thermal modification of the molybdenum disulfide surface for tremendous improvement of Hg2+ adsorption from aqueous solution. Acs. Sustain. Chem. Eng. 6, 9065–9073 (2018)CrossRef Jia, F., Liu, C., Yang, B., Zhang, X., Yi, H., Ni, J., Song, S.: Thermal modification of the molybdenum disulfide surface for tremendous improvement of Hg2+ adsorption from aqueous solution. Acs. Sustain. Chem. Eng. 6, 9065–9073 (2018)CrossRef
39.
go back to reference Jean, G.E., Bancroft, G.M.: Heavy metal adsorption by sulphide mineral surfaces. Geochim. Cosmochim. Acta 50, 1455–1463 (1986)CrossRef Jean, G.E., Bancroft, G.M.: Heavy metal adsorption by sulphide mineral surfaces. Geochim. Cosmochim. Acta 50, 1455–1463 (1986)CrossRef
40.
go back to reference McKenzie, R.: The adsorption of lead and other heavy metals on oxides of manganese and iron. Soil Res. 18, 61–73 (1980)CrossRef McKenzie, R.: The adsorption of lead and other heavy metals on oxides of manganese and iron. Soil Res. 18, 61–73 (1980)CrossRef
41.
go back to reference McBride, M.: Environmental Chemistry of Soils. Oxford University Press, New York (1994) McBride, M.: Environmental Chemistry of Soils. Oxford University Press, New York (1994)
42.
go back to reference Dzombak, D.A.: Surface Complexation Modeling: Hydrous Ferric Oxide. Wiley (1990) Dzombak, D.A.: Surface Complexation Modeling: Hydrous Ferric Oxide. Wiley (1990)
43.
go back to reference Sturchio, N.C., Chiarello, R.P., Cheng, L., Lyman, P.F., Bedzyk, M.J., Qian, Y., You, H., Yee, D., Geissbuhler, P., Sorensen, L.B.: Lead adsorption at the calcite-water interface: synchrotron X-ray standing wave and X-ray reflectivity studies. Geochim. Cosmochim. Acta 61, 251–263 (1997)CrossRef Sturchio, N.C., Chiarello, R.P., Cheng, L., Lyman, P.F., Bedzyk, M.J., Qian, Y., You, H., Yee, D., Geissbuhler, P., Sorensen, L.B.: Lead adsorption at the calcite-water interface: synchrotron X-ray standing wave and X-ray reflectivity studies. Geochim. Cosmochim. Acta 61, 251–263 (1997)CrossRef
44.
go back to reference Qian, Y., Sturchio, N.C., Chiarello, R.P., Lyman, P.F., Lee, T.L., Bedzyk, M.J.: Lattice location of trace elements within minerals and at their surfaces with X-ray standing waves. Science-New York Then Washington, 1555–1555 (1994) Qian, Y., Sturchio, N.C., Chiarello, R.P., Lyman, P.F., Lee, T.L., Bedzyk, M.J.: Lattice location of trace elements within minerals and at their surfaces with X-ray standing waves. Science-New York Then Washington, 1555–1555 (1994)
45.
go back to reference Brown, J.R., Bancroft, G.M., Fyfe, W.S., McLean, R.A.: Mercury removal from water by iron sulfide minerals. An electron spectroscopy for chemical analysis (ESCA) study. Environ. Sci. Technol. 13, 1142–1144 (1979)CrossRef Brown, J.R., Bancroft, G.M., Fyfe, W.S., McLean, R.A.: Mercury removal from water by iron sulfide minerals. An electron spectroscopy for chemical analysis (ESCA) study. Environ. Sci. Technol. 13, 1142–1144 (1979)CrossRef
46.
go back to reference Özverdi, A., Erdem, M.: Cu2+, Cd2+ and Pb2+ adsorption from aqueous solutions by pyrite and synthetic iron sulphide. J. Hazard. Mater. 137, 626–632 (2006)CrossRef Özverdi, A., Erdem, M.: Cu2+, Cd2+ and Pb2+ adsorption from aqueous solutions by pyrite and synthetic iron sulphide. J. Hazard. Mater. 137, 626–632 (2006)CrossRef
47.
go back to reference Richard, F.C., Bourg, A.C.: Aqueous geochemistry of chromium: a review. Water Res. 25, 807–816 (1991)CrossRef Richard, F.C., Bourg, A.C.: Aqueous geochemistry of chromium: a review. Water Res. 25, 807–816 (1991)CrossRef
48.
go back to reference Aoki, T., Munemori, M.: Recovery of chromium (VI) from wastewaters with iron (III) hydroxide—I: adsorption mechanism of chromium (VI) on iron (III) hydroxide. Water Res. 16, 793–796 (1982)CrossRef Aoki, T., Munemori, M.: Recovery of chromium (VI) from wastewaters with iron (III) hydroxide—I: adsorption mechanism of chromium (VI) on iron (III) hydroxide. Water Res. 16, 793–796 (1982)CrossRef
49.
go back to reference Lu, A., Zhong, S., Chen, J., Shi, J., Tang, J., Lu, X.: Removal of Cr (VI) and Cr (III) from aqueous solutions and industrial wastewaters by natural clino-pyrrhotite. Environ. Sci. Technol. 40, 3064–3069 (2006)CrossRef Lu, A., Zhong, S., Chen, J., Shi, J., Tang, J., Lu, X.: Removal of Cr (VI) and Cr (III) from aqueous solutions and industrial wastewaters by natural clino-pyrrhotite. Environ. Sci. Technol. 40, 3064–3069 (2006)CrossRef
50.
go back to reference Albadarin, A.B., Mangwandi, C., Ala’a, H., Walker, G.M., Allen, S.J., Ahmad, M.N.: Kinetic and thermodynamics of chromium ions adsorption onto low-cost dolomite adsorbent. Chem. Eng. J. 179, 193–202 (2012)CrossRef Albadarin, A.B., Mangwandi, C., Ala’a, H., Walker, G.M., Allen, S.J., Ahmad, M.N.: Kinetic and thermodynamics of chromium ions adsorption onto low-cost dolomite adsorbent. Chem. Eng. J. 179, 193–202 (2012)CrossRef
51.
go back to reference Garcıa-Sánchez, A., Alvarez-Ayuso, E.: Sorption of Zn, Cd and Cr on calcite. Application to purification of industrial wastewaters. Miner. Eng. 15, 539–547 (2002)CrossRef Garcıa-Sánchez, A., Alvarez-Ayuso, E.: Sorption of Zn, Cd and Cr on calcite. Application to purification of industrial wastewaters. Miner. Eng. 15, 539–547 (2002)CrossRef
52.
go back to reference Yang, L., Yang, Q., Jia, F. et al.: Cr(VI) Removal from water with amorphous graphite concentrate contaminated by iron. Min. Proc. Ext. Met. Rev. 38(2) (2017) Yang, L., Yang, Q., Jia, F. et al.: Cr(VI) Removal from water with amorphous graphite concentrate contaminated by iron. Min. Proc. Ext. Met. Rev. 38(2) (2017)
53.
go back to reference Waldron, K.J., Robinson, N.J.: How do bacterial cells ensure that metalloproteins get the correct metal? Nat. Rev. Microbiol. 7, 25–35 (2009)CrossRef Waldron, K.J., Robinson, N.J.: How do bacterial cells ensure that metalloproteins get the correct metal? Nat. Rev. Microbiol. 7, 25–35 (2009)CrossRef
54.
go back to reference Andreini, C., Bertini, I., Rosato, A.: A hint to search for metalloproteins in gene banks. Bioinformatics 20, 1373–1380 (2004)CrossRef Andreini, C., Bertini, I., Rosato, A.: A hint to search for metalloproteins in gene banks. Bioinformatics 20, 1373–1380 (2004)CrossRef
55.
go back to reference Lemire, J.A., Harrison, J.J., Turner, R.J.: Antimicrobial activity of metals: mechanisms, molecular targets and applications. Nat. Rev. Microbiol. 11, 371–384 (2013)CrossRef Lemire, J.A., Harrison, J.J., Turner, R.J.: Antimicrobial activity of metals: mechanisms, molecular targets and applications. Nat. Rev. Microbiol. 11, 371–384 (2013)CrossRef
56.
go back to reference Ayres, P.G., Millardet, A.: France’s forgotten mycologist. Mycologist 18, 23–26 (2004)CrossRef Ayres, P.G., Millardet, A.: France’s forgotten mycologist. Mycologist 18, 23–26 (2004)CrossRef
57.
go back to reference Kwakye-Awuah, B., Williams, C., Kenward, M., Radecka, I.: Antimicrobial action and efficiency of silver-loaded zeolite X. J. Appl. Microbiol. 104, 1516–1524 (2008)CrossRef Kwakye-Awuah, B., Williams, C., Kenward, M., Radecka, I.: Antimicrobial action and efficiency of silver-loaded zeolite X. J. Appl. Microbiol. 104, 1516–1524 (2008)CrossRef
58.
go back to reference Ōya, A., Banse, T., Ohashi, F., Ōtani, S.: An antimicrobial and antifungal agent derived from montmorillonite. Appl. Clay Sci. 6, 135–142 (1991)CrossRef Ōya, A., Banse, T., Ohashi, F., Ōtani, S.: An antimicrobial and antifungal agent derived from montmorillonite. Appl. Clay Sci. 6, 135–142 (1991)CrossRef
59.
go back to reference Garrido-Ramirez, E.G., Theng, B.K.G., Mora, M.L.: Appl. Clay Sci. 47, 182 (2010)CrossRef Garrido-Ramirez, E.G., Theng, B.K.G., Mora, M.L.: Appl. Clay Sci. 47, 182 (2010)CrossRef
60.
61.
62.
go back to reference Li, J., Mu, Z., Xu, X., Tian, H., Duan, M., Li, L., Hao, Z., Qiao, S., Lu, G.: Micropor. Mesopor. Mat. 114, 214 (2008)CrossRef Li, J., Mu, Z., Xu, X., Tian, H., Duan, M., Li, L., Hao, Z., Qiao, S., Lu, G.: Micropor. Mesopor. Mat. 114, 214 (2008)CrossRef
63.
go back to reference Rao, F., Song, S., Lopez-valdivieso, A.: Synthesis and characterization of Ag-PILC through the formation of Ag@Montmorillonite nanocomposite. NANO: Brief Reports and Reviews 10, 1–9 (2015) Rao, F., Song, S., Lopez-valdivieso, A.: Synthesis and characterization of Ag-PILC through the formation of Ag@Montmorillonite nanocomposite. NANO: Brief Reports and Reviews 10, 1–9 (2015)
64.
go back to reference Rao, F., Song, S., Lopez-valdivieso, A.: Synthesis of Ag-PILC through direct insertion of silver nanoparticles into smectite interlayers. Mater. Technol. 27, 186–190 (2012)CrossRef Rao, F., Song, S., Lopez-valdivieso, A.: Synthesis of Ag-PILC through direct insertion of silver nanoparticles into smectite interlayers. Mater. Technol. 27, 186–190 (2012)CrossRef
65.
go back to reference Mohammadzadeh Pakdel, P., Peighambardoust, S.J.: Review on recent progress in chitosan-based hydrogels for wastewater treatment application. Carbohydr. Polym. 201, 264–279 (2018)CrossRef Mohammadzadeh Pakdel, P., Peighambardoust, S.J.: Review on recent progress in chitosan-based hydrogels for wastewater treatment application. Carbohydr. Polym. 201, 264–279 (2018)CrossRef
66.
go back to reference Han, H., Lu, X., Liu, L., Yang, W., Shi, W., He, X.: Bioinspired and microgel-tackified adhesive hydrogel with rapid self-healing and high stretchability. Macromolecules 52, 72–80 (2018) Han, H., Lu, X., Liu, L., Yang, W., Shi, W., He, X.: Bioinspired and microgel-tackified adhesive hydrogel with rapid self-healing and high stretchability. Macromolecules 52, 72–80 (2018)
67.
go back to reference Yang, X., Qin, Z., Wu, H., Lv, H., Yu, X.: Tuning hydrogel mechanics by kinetically dependent cross-linking. Macromolecules 52, 1249–1256 (2019)CrossRef Yang, X., Qin, Z., Wu, H., Lv, H., Yu, X.: Tuning hydrogel mechanics by kinetically dependent cross-linking. Macromolecules 52, 1249–1256 (2019)CrossRef
68.
go back to reference Wang, W., Zhao, Y., Yi, H., Chen, T., Kang, S., Li, H., Song, S.: Preparation and characterization of self- assembly hydrogels with exfoliated montmorillonite nanosheets and chitosan. Nanotechnology 29, 025605 (2018)CrossRef Wang, W., Zhao, Y., Yi, H., Chen, T., Kang, S., Li, H., Song, S.: Preparation and characterization of self- assembly hydrogels with exfoliated montmorillonite nanosheets and chitosan. Nanotechnology 29, 025605 (2018)CrossRef
69.
go back to reference Feng, Q., Wei, K., Lin, S., Xu, Z., Sun, Y., Shi, P., Li, G., Bian, L.: Mechanically resilient, injectable, and bioadhesive supramolecular gelatin hydrogels crosslinked by weak host-guest interactions assist cell infiltration and in situ tissue regeneration. Biomaterials 101, 217–228 (2016)CrossRef Feng, Q., Wei, K., Lin, S., Xu, Z., Sun, Y., Shi, P., Li, G., Bian, L.: Mechanically resilient, injectable, and bioadhesive supramolecular gelatin hydrogels crosslinked by weak host-guest interactions assist cell infiltration and in situ tissue regeneration. Biomaterials 101, 217–228 (2016)CrossRef
70.
go back to reference Boardman, S., Lad, R., Green, D., Thornton, P.: Chitosan hydrogels for targeted dye and protein adsorption. J. Appl. Polym. Sci. 134, 1–10 (2017)CrossRef Boardman, S., Lad, R., Green, D., Thornton, P.: Chitosan hydrogels for targeted dye and protein adsorption. J. Appl. Polym. Sci. 134, 1–10 (2017)CrossRef
71.
go back to reference Salzano de Luna, M., Castaldo, R., Altobelli, R., Gioiella, L., Filippone, G., Gentile, G., Ambrogi, V.: Chitosan hydrogels embedding hyper-crosslinked polymer particles as reusable broad-spectrum adsorbents for dye removal. Carbohydr. Polym. 177, 347–354 (2017)CrossRef Salzano de Luna, M., Castaldo, R., Altobelli, R., Gioiella, L., Filippone, G., Gentile, G., Ambrogi, V.: Chitosan hydrogels embedding hyper-crosslinked polymer particles as reusable broad-spectrum adsorbents for dye removal. Carbohydr. Polym. 177, 347–354 (2017)CrossRef
72.
go back to reference Maity, J., Ray, S.: Removal of Cu (II) ion from water using sugar cane bagasse cellulose and gelatin based composite hydrogels. Int. J. Biol. Macromol. 97, 238–248 (2017)CrossRef Maity, J., Ray, S.: Removal of Cu (II) ion from water using sugar cane bagasse cellulose and gelatin based composite hydrogels. Int. J. Biol. Macromol. 97, 238–248 (2017)CrossRef
73.
go back to reference Hu, Z., Omer, A., Ouyang, X., Yu, D.: Fabrication of carboxylated cellulose nanocrystal/sodium alginate hydrogel beads for adsorption of Pb(II) from aqueous solution. Int. J. Biol. Macromol. 108, 149–157 (2018)CrossRef Hu, Z., Omer, A., Ouyang, X., Yu, D.: Fabrication of carboxylated cellulose nanocrystal/sodium alginate hydrogel beads for adsorption of Pb(II) from aqueous solution. Int. J. Biol. Macromol. 108, 149–157 (2018)CrossRef
74.
go back to reference Heng, L., Guo, X., Guo, T., Wang, B., Jiang, L.: Strengthening of polymer ordered porous materials based on a layered nanocomposite internal structure. Nanoscale 8, 13507–13512 (2016)CrossRef Heng, L., Guo, X., Guo, T., Wang, B., Jiang, L.: Strengthening of polymer ordered porous materials based on a layered nanocomposite internal structure. Nanoscale 8, 13507–13512 (2016)CrossRef
75.
go back to reference Liu, C., Liu, H., Zhang, K., Dou, M., Pan, B., He, X., Lu, C.: Partly reduced graphene oxide aerogels induced by proanthocyanidins for efficient dye removal. Bioresour. Technol. 282, 148–155 (2019)CrossRef Liu, C., Liu, H., Zhang, K., Dou, M., Pan, B., He, X., Lu, C.: Partly reduced graphene oxide aerogels induced by proanthocyanidins for efficient dye removal. Bioresour. Technol. 282, 148–155 (2019)CrossRef
76.
go back to reference Kumararaja, K., Manjaiah, P., Datta, S., Shabeer, T., Sarkar, B.: Chitosan-g-poly (acrylic acid) -bentonite composite: a potential immobilizing agent of heavy metals in soil. Cellulose 25, 3985–3999 (2018)CrossRef Kumararaja, K., Manjaiah, P., Datta, S., Shabeer, T., Sarkar, B.: Chitosan-g-poly (acrylic acid) -bentonite composite: a potential immobilizing agent of heavy metals in soil. Cellulose 25, 3985–3999 (2018)CrossRef
77.
go back to reference Ma, Y., Lv, L., Guo, Y., Fu, Y., Shao, Q., Wu, T., Guo, S., Sun, K., Guo, X., Wujcik, E.K., Guo, Z.: Porous lignin based poly (acrylic acid)/organo-montmorillonite nanocomposites: swelling behaviors and rapid removal of Pb (II) ions. Polymer 128, 12–23 (2017)CrossRef Ma, Y., Lv, L., Guo, Y., Fu, Y., Shao, Q., Wu, T., Guo, S., Sun, K., Guo, X., Wujcik, E.K., Guo, Z.: Porous lignin based poly (acrylic acid)/organo-montmorillonite nanocomposites: swelling behaviors and rapid removal of Pb (II) ions. Polymer 128, 12–23 (2017)CrossRef
78.
go back to reference Ji, J., Zeng, C., Ke, Y., Pei, Y.: Preparation of poly(acrylamide-co-acrylic acid)/silica nanocomposite microspheres and their performance as a plugging material for deep profile control. J. Appl. Polym. Sci. 134, 1–11 (2017)CrossRef Ji, J., Zeng, C., Ke, Y., Pei, Y.: Preparation of poly(acrylamide-co-acrylic acid)/silica nanocomposite microspheres and their performance as a plugging material for deep profile control. J. Appl. Polym. Sci. 134, 1–11 (2017)CrossRef
79.
go back to reference Liang, T., Yan, C., Li, X., Zhou, S., Wang, H.: Polyacrylic acid grafted silica fume as an excellent adsorbent for dysprosium(III) removal from industrial wastewater. Water Sci. Technol. 77, 1570–1580 (2018)CrossRef Liang, T., Yan, C., Li, X., Zhou, S., Wang, H.: Polyacrylic acid grafted silica fume as an excellent adsorbent for dysprosium(III) removal from industrial wastewater. Water Sci. Technol. 77, 1570–1580 (2018)CrossRef
80.
go back to reference Wan, Y., Wang, T., Lu, H., Xu, X., Zuo, C., Wang, Y., Teng, C.: Design and synthesis of graphene/SnO2/polyacrylamide nanocomposites as anode material for lithium-ion batteries. Rsc. Adv. 8, 11744–11748 (2018)CrossRef Wan, Y., Wang, T., Lu, H., Xu, X., Zuo, C., Wang, Y., Teng, C.: Design and synthesis of graphene/SnO2/polyacrylamide nanocomposites as anode material for lithium-ion batteries. Rsc. Adv. 8, 11744–11748 (2018)CrossRef
Metadata
Title
Adsorption of Cations on Minerals
Authors
Feng Rao
Zhili Li
Ramiro Escudero Garcia
Copyright Year
2021
DOI
https://doi.org/10.1007/978-3-030-54451-5_5

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