References
[1] L.K. Wang, Y.T. Hung, N.K. Shammas (Eds.), Physicochemical Treatment Processes, vol. 3, Humana Press, New Jersey (2004), pp. 141–198
[2] Gopalratnam, V. C, et al. (1988), "The Simultaneous Removal of Oil and Heavy Metals from Industrial Wastewater by Joint Precipitation and Air Flotation." Environ. Prog., 7, 84.
[3] J Environ Sci Health A Tox Hazard Subst Environ Eng. 2004;39(2):455-64. Ion exchange extraction of heavy metals from wastewater sludges.
[4] Gunatilake S.K., Al-Enezi, Journal of Multidisciplinary Engineering Science Studies (JMESS) ISSN: 2912-1309 Vol. 1 Issue 1, November - 2015 www.jmess.org JMESSP13420004 12 Methods of Removing Heavy Metals from Industrial Wastewater
[5] W. Zuoa, G. Zhanga, Q. Mengb, H. Zhangb“Characteristics and application of multiple
membrane process in plating wastewater reutilization”Desalination, 222 (2008), pp. 187–196
[6] M.R. Jakobsen, J.F. Rasmussen, S. Nielsen, L.M. Ottosen Electrodialytic removal of cadmium from wastewater sludgeJ. Hazard. Mater., 106B (2004), pp. 127–132
[7] Tripathi A, Ranjan MR (2015) Heavy Metal Removal from Wastewater Using Low Cost Adsorbents. J BioremedBiodeg 6: 315.
[8] Shah BA, Shah AV, Singh RR (2009) Sorption isotherms and kinetics of chromium uptake from wastewater using natural sorbent material. International Journal of Environmental Science and Technology 6: 77-90.
[9] Siti Nur AA, Mohd Halim SI, Lias Kamal Md, ShamsulIzhar (2013) Adsorption Process of Heavy Metals by Low-Cost Adsorbent: A Review. World Applied Sciences Journal 28: 1518-1530.
[10] Parmar M, Thakur Lokendra Singh (2013) Heavy metal Cu, Ni and Zn: toxicity, health hazards and their removal techniques by low cost adsorbents: a short overview. Int J Plant Animal &Env. Science 3: 143-147.
[11] Zhang, H., Zou, K., Guo, S. H., and Duan, X. 2006. “Nanostructural Drug-inorganic Clay Composites: Structure, Thermal Property and in Vitro Release of Captopril-intercalated Mg-Al-Layered Double Hydroxides.” Journal of Solid State Chemistry 179: 1792-801.
[12] Pavlovic, I., Perez, M. R., Barriga, C., and Ulibarri, M. A. 2009. “Adsorption of Cu2+, Cd2+ and Pb2+ Ions by Layered Double Hydroxides Intercalated with the Chelating Agents Ethylene Diamine Tetraacetic Acid and Meso-2,3-dimercaptosuccinate.” Applied Clay Science 43: 125-9.
[13] Kameda, T., Takeuchi, H., and Yoshioka, T. 2011. “Ni-Al Layered Double Hydroxides Modified with Citrate, Malate, and Tartrate: Preparation by Coprecipitation and Uptake of Cu2+ from Aqueous Solution.” Journal of Physics and Chemistry of Solids 72: 846-51.
[14] Zhang, S., Kano, N., and Imaizumi, H. 2014. “Adsorption of Cu(II), Pb(II) by Mg-Al-Layered Double Hydroxides (LDHs): Intercalated with the Chelating Agents EDTA and EDDS.” Journal of Chemical Engineering of Japan
[15] a. Perez, M. R., Pavlovic, I., Barriga, C., Cornejo, J., Hermosín, M. C., and Ulibarri, M. A. 2006. “Uptake of Cu2+, Cd2+ and Pb2+ on Zn-Al Layered Double Hydroxide Intercalated with EDTA.” Applied Clay Science 32: 245-51.
b. Liang, X. F., Zang, Y. B., Xu, Y. Y., Tan, X., Hou, W. G., Wang, L., and Sun, Y. B. 2013. “Sorption of Metal Cations on Layered Double Hydroxides.” Colloids and Surfaces A: Physicochem. Eng. Aspects 433: 122-31.
[16] Structural aspects of Layered double hydroxides by D.G. Evans and R.C.T. Slade Springer-Verlag Berlin 2006, printed in Germany
[17] Layered Double Hydroxides: Present and Future By Vicente Rives Nova Science Publishers Ind. New Yark.
[18] V.R.L. Constantino and T. J. Pinnavia Basic properties of Mg-Al-LDHs intercalated by Carbonate, hydroxide, Chloride and sulfate anions Inorg. Chem. 1995, 34, 883-892.
[19] Synthesis, characterization and applications of layered double hydroxides containing organic guests, Steven P. Newman and William Jones New J. Chem., 1998, 22, 105-115.
[20] Miyata S. Clays Clay Miner. 1975; 23:369–375.
[21] L C Hsu, Shan-Li Wang, Yu-min Tzou, C F Lin, J H Chen, The removal and recovery of Cr(VI) by Li/Al layered double hydroxide (LDH), Journal of Hazardous Materials 2007,142(1-2):242.
[22] Agency for Toxic Substances and Disease Registry, Toxicological Profile for Lead, U.S. Department of Health and Human Services, Atlanta, 2007
[23] Agency for Toxic Substances and Disease Registry, Toxicological Profile for Cadmium, U.S. Department of Health and Human Services, Atlanta, 2007
[24] J. Dojlido and G. A. Best, Chemistry of Water and Water Pollution, Ellis Horwood Ltd, Chichester, 1993 Search PubMed.
[25] B. Volesky, Biosorption of Heavy Metals, CRC Press, Boca Raton, FL, 1990
[26] J. Dojlido and G. A. Best, Chemistry of Water and Water Pollution, Ellis Horwood Ltd, Chichester, 1993
[27] World Health Organization, Guidelines for Drinking, Water Quality, WHO, Geneva, 1984 Search PubMed.
[28] A. Mudhoo, S. K. Sharma, V. K. Garg and C. H. Tseng, Crit. Rev. Environ. Sci. Technol., 2011, 41, 435
[29] J. Matschullat, Sci. Total Environ., 2000, 249, 297
[30] M. Berg, H. C. Tran, T. C. Nguyen, H. V. Pham, R. Schertenleib and W. Giger, Environ. Sci. Technol., 2001, 35, 2621
[31] British Geological Survey and Mott MacDonald Ltd, Groundwater Studies for Arsenic Contamination in Bangladesh, BGS, Keyworth, 1998.
[32] W. R. Cullen and K. J. Reimer, Chem. Rev., 1989, 89, 713
[33] B. A. Manning and S. Goldberg, Soil Sci., 1997, 162, 886 CrossRef CAS PubMed.
[34] W. M. Mok and C. M. Wai, in Arsenic in the Environment: Part I: Cycling and Characterization, ed. J. O. Nriagu, John Wiley & Sons, New York, 1994, ch. 4, pp. 99–118 Search PubMed.
[35] B. A. Manning, S. E. Fendorf and S. Goldberg, Environ. Sci. Technol., 1998, 32, 2383 CrossRef CAS.
[36] G. A. Waychunas, B. A. Rea, C. C. Fuller and J. A. Davis, Geochim. Cosmochim. Acta, 1993, 57, 2251
[37] B. A. Manning and S. Goldberg, Environ. Sci. Technol., 1997, 31, 2005
[38] E. Smith, R. Naidu and A. M. Alston, J. Environ. Qual., 1999, 28, 1719.
[39] B. A. Manning and D. L. Suarez, Soil Sci. Soc. Am. J., 2000, 64, 128.
[40] D. Mohan, K. P. Singh and V. K. Singh, J. Hazard. Mater., 2006, B135, 280.
[41] H. B. Bradl, J. Colloid Interface Sci., 2004, 277, 1 [42] M. Cruz-Guzman, R. Celis, M. C. Hermosin, W. C. Koskinen, E. A. Nater and J. Cornejo, Soil Sci. Soc. Am. J., 2006, 70, 215.
[43] L. Mercier and T. J. Pinnavaia, Environ. Sci. Technol., 1998, 32, 2749.
[44] M. Jaber and J. Miehe-Brendle, in Ordered Porous Solids, ed. V. Valentin, M. Svetlana and T. Michael, Elsevier, Amsterdam, 2009, ch. 2, pp. 31–49
[45] F. Wypych, in Encyclopedia of Surface and Colloid Science, ed. P. Somasundaran and A. Hubbard, Taylor and Francis, New York, 2006, pp. 1256.
[46] P. Stathi, K. Litina, D. Gournis, T. S. Giannopoulos and Y. Deligiannakis, J. Colloid Interface Sci., 2007, 316, 298.
[47] P. Wu, W. Wu, S. Li, N. Xing, N. Zhu, P. Li, J. Wu, C. Yang and Z. Dang, J. Hazard. Mater., 2009, 169, 824
[48] S. Z. Li and P. X. Wu, J. Hazard. Mater., 2010, 173, 62.
[49] Y. Deng, J. B. Dixon and G. N. White, Clays Clay Miner., 2003, 51, 150
[50] N. Husing, in Sol-Gel Methods for Materials Processing, ed. P. Innocenzi, Y. L. Zub and V. G. Kessler, Springer, Berlin, 2008, ch. 6, pp. 91–104
[51] Y. Cohen, V. Nguyen, J. D. Jou, N. Bei and W. Yoshida, in Oxide Surfaces, ed. J. A. Wingrave, CRC Press, New York, 2001, ch. 8, pp. 321–353 Search PubMed.
[52] C. Detellier, Environ. Sci. Technol., 1995, 29, 1318.
[53] M. Jaber, J. Miehe-Brendle, L. Michelin and L. Delmotte, Chem. Mater., 2005, 17, 5275 CrossRef CAS.
[54] I. L. Lagadic, M. K. Mitchell and B. D. Payne, Environ. Sci. Technol., 2001, 35, 984 CrossRef CAS.
[55] V. Rives, Mater. Chem. Phys., 2002, 75, 19 CrossRef CAS.
[56] D. S. Tong, C. H. Zhou, M. Y. Li, J. Beltramini, C. X. Lin and Z. P. Xu, Appl. Clay Sci., 2010, 48, 569 CrossRef CAS PubMed.
[57] J. T. Kloprogge and R. L. Frost, Phys. Chem. Chem. Phys., 1999, 1, 1641 RSC.
[58] Q. Tao, B. J. Reddy, H. He, R. L. Frost, P. Yuan and J. Zhu, Mater. Chem. Phys., 2008, 112, 869 CrossRef CAS PubMed.
[59] H. J. Spratt, S. J. Palmer and R. L. Frost, Thermochim. Acta, 2008, 479, 1.
[60] J. T. Kloprogge, M. Weier, I. Crespo, M. A. Ulibarri, C. Barriga, V. Rives, W. M. Martens and R. L. Frost, J. Solid State Chem., 2004, 177, 1382
[61] S.K. Sharma, Heavy Metals in Water- Presence Removal and Safety, Royal society of chemistry 2015