- Biopolymers, Ultrafiltration membranes, Metal ions, Removal
Copyright (c) 2020 SChQ
This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.
Abstract
This manuscript is an overview of the versatile biopolymer materials alginic acid, carboxymethyl cellulose, and quaternized chitosan which contain different functional groups to remove hazardous inorganic species. These bioadsorbents are completely water-soluble and have a high versatility to achieve a higher sorption capacity and efficiency under different experimental conditions in combination with ultrafiltration membranes through the liquid-phase polymer-based retention (LPR) technique. In general, these bioadsorbents are more friendly with the environment and have a higher biodegradability compared with those more employed synthetic polymers.
References
- S.A. Alruman, A.F. El-Kott, M.A. Kehsk, Am. J. Environ. Sci. 6(3), 88 (2016)
- D. Briggs, Br. Med. Bull, 68, 1 (2003)
- S. Bibi, R.L. Khan, R.Nazir, P. Khan, H.U. Rehman, H.U, S.K. Shakir, S. Naz, M.A. Waheed, R. Jan, World Appl. Sci. J. 34(1), 15 (2016)
- N. Khan, S.T. Hussain, A. Saboor, N. Jamila, K.S. Kim, Int. J. Phys. Sci, 8(33), 1661 (2013)
- M.J. Pawari, S.A.G.A.R. Gawande, Int. J. Eng. Res, 3(4), 773 (2015)
- M.A. Khan, A.M. Ghouri, Researcher World: Journal of Arts, Science and Commerce, 2(2), 276 (2011)
- S.M. Kamble, Int. J. Sci. Res, 4(1), 1 (2014).
- F.D. Owa, Mediterr. J. Soc. Sci., 4(8), 65 (2013).
- Y.C. Ho, K.Y. Show, X.X. Guo, I. Norli, F.A. Abbas, N. Morad, Industrial Waste, Intech, 1 (2012).
- G. Banfalvi, Cellular Effects of Heavy Metals. London New York: Springer, Netherlands, 2011.
- N. Herawati, S. Suzuki, K. Hayashi, I.F. Rivai, H. Koyoma, B. Environ. Contam. Tox, 64(1), 33 (2000).
- U. Förstner, P. Mader, W. Salomons, Heavy Metals: Problems and Solutions. Germany: Springer-Verlag, Berlin,1995.
- Z.L. He, X.E. Yang, P.J. Stoffella, J. Trace Elem Med Bio, 19(2-3), 125 (2005).
- J.H. Duffus, Pure Appl. Chem, 74(5), 793 (2002).
- D. Sarma, S. M. Islam, K. S. Subrahmanyam, M. G. Kanatzidis, J. Mater. Chem. A, 4(43), 16597 (2016).
- WHO, Chromium in drinking-water. Geneva, Switzerland, 2003.
- I. Korus, K. Loska, Desalination. 247, 390 (2009).
- A.J. Pedersen, Biomass Bioenerg, 25(4), 447 (2003).
- B.L. Rivas, C. Espinosa, J. Sánchez, Polym Bull, 76, 539 (2019).
- D. Morales, O. Kusku, B.L. Rivas, M. Arda, N. Kabay, M. Bryjak, J. Chil. Chem. Soc.64, 4432 (2019).
- M. Palencia, B.L. Rivas, E. Pereira, A. Hernández, P. Prádanos. J. Membr. Sci. 336, 128 (2009).
- J. Sánchez, B.L. Rivas, J. Chil. Chem. Soc. 64, 4432 (2019).
- Y. Tapiero, J. Sánchez, B.L. Rivas, J. Chil. Chem. Soc. 64, 4597 (2019).
- Mitchell, P.C.H. Ullman’s Encyclopedia of Industrial Chemistry, 5th Ed.; VCH, Ed.;1986.
- B.L. Rivas, S.A. Pooley, E.D. Pereira, R. Cid, M. Luna, M.A. Jara, K.E. Geckeler, J. Appl. Polym. Sci, 96, 222 (2005).
- A.M. Sastre, F.J. Alguacil, F. J. Chem. Eng. J, 81, 109,(2001).
- K.E. Geckeler, R. Zhou, B.L.Rivas, Angew. Makromol. Chem. 197, 107 (1992).
- B.L. Rivas, S. A. Pooley, M. Luna. Macromol. Rapid Commun. 13, 905 (2000)
- J. Sánchez, B. Butter, B.L. Rivas, L. Basáez, P. Santander. J. Appl. Electrochem. 45, 151 (2015).
- E. Guibal, C. Milot, J. Roussy, Sep. Sci. Technol. 35, 1021 (2000).
- J. Sánchez, B.L. Rivas, E. Nazar, M. Bryjak, N. Kabay, J. Appl. Polym. Sci. 129, 1541 (2013).
- T. Hua, R.J. Haynesa, Y.F. Zhou, A. Boullemant, I. Chandrawana, Water Res.71, 32 (2015).
- B.L. Rivas, I. Moreno-Villoslada, J. Membr. Sci. 178, 165 (2000)
- B.L. Rivas, H.A. Maturana, E.D. Pereira, Angew. Makromol. Chem. 220, 61 (1994).
- B.A.M. Al-Rashdi, D.J. Johnson, N. Hilal, Desalination. 315, 2 (2013).
- J.A. Sánchez, B.L. Rivas, S. A. Pooley, L, Basaez, E. Pereira, I. Pignot-Paintrand, Ch. Bucher, G. Royal, E. Saint-Aman, J.-C. Moutet. Electrochim. Acta, 55, 4876 (2010).
- H. Ozaki, K. Sharma, W. Saktaywin, Desalination.144, 287 (2002).
- K. Takagi, S. Miwa, Y. Yuki, React. Funct. Polym. 66, 1718 (2006).
- B.L. Rivas, E.D. Pereira, I. Moreno-Villoslada, Prog. Polym. Sci. 28, 173 (2003).
- B.L. Rivas, E.D. Pereira, M. Palencia, J. Sánchez, Prog. Polym. Sci. 36294 (2011).
- K. Geckeler, G. Lange, H. Eberhardt, E. Bayer, Pure Appl. Chem. 52, 883 (1980).
- B. Y. Spivakov, K. Geckeler, E. Bayer, Nature. 315 (6017), 313 (1985).
- B. Nagel, H. Dellweg, L.M. Gierasch, Pure Appl. Chem, 64(1), 143 (1992).
- L.D. Fiorentina, D.E. Trigueros, A.N. Módenes, F.R. Espinoza-Quiñones, N.C. Pereira, S.T. Barros, O.A. Santos, Chem. Eng. J. 163(1-2), 68 (2010)
- N.A. Cuizano, B.P. Llanos, A.E. Navarro, Rev. Soc. Quím. Perú, 75(4), 488 (2009)
- N. Das, Hydrometallurgy, 103(1-4), 180 (2010)
- A. Srinivasan, T. Viraraghavan, J. Environ. Manage., 91(10), 1915 (2010)
- J.C. Muñoz Carpio, Tecno Lógicas, ISSN 0123-7799, 18, 34, 2015, 109-123 Universidad Nacional Mayor de San Marcos, 2007.
- C. Lavado Meza, M. del R. SunKou, N.R. Arana, Rev. Soc. Quím. Perú, 78(1), 14 (2012).
- M.K. Joshi, H.R .Pant, A.P. Tiwari, B. Maharjan, N. Liao, H.J. Kim, C.H. Park, C.S. Kim, Carbohydrate Polym, 136, 154 (2016).
- N.V. Lukasheva, D.A. Tolmachev, Langmuir. 32(1), 125 (2016)
- H. Luo, G. Xiong, C. Zhang, D. Li, Y. Zhu, R. Guo, Y. Wan, Mater. Sci. Eng. C, 49, 526 (2015).
- D.A. Tolmachev, N.V. Lukasheva, Polym. Sci. Ser A, 56(4), 545 (2014)
- A. Kovtun, D. Kozlova, K. Ganesan, C. Biewald, N. Seipold, P. Gaengler, W. H. Arnold, M. Epple. RSC Advances, 2(3), 870 (2012).
- A. Salama, R.E. Abou-Zeid, M. El-Sakhawy, A. El-Gendy, Int. J. Biol. Macromol, 74, 155 (2015).
- K. Bleek, A.Taubert, Acta Biomater. 9(5), 6283 (2013).
- V. Sokolova, A. Kovtun, O. Prymak, W. Meyer-Zaika, E.A. Kubareva, E.A. Romanova, T.S. Oretskaya, R. Heumann, M. Epple, J. Mater. Chem, 17(8), 721 (2007)
- T. Welzel, I. Radtke, W. Meyer-Zaika, R. Heumann, M. Epple, J. Mater. Chem, 14, 2213 (2004).
- F. Croisier, C. Jérôme, Eur. Polym. J, 49(4), 780 (2013).
- M. Rinaudo, Prog. Polym. Sci., 31(7), 603 (2006).
- N. Bhardwaj, S.C. Kundu, Biotechnol. Adv, 28(3), 325 (2010).
- T. Dvir, O.Tsur-Gang, S. Cohen, Isr. J. Chem, 45(4), 487 (2005).
- R. Jayakumar, D. Menon, K. Manzoor, S.V. Nair, H. Tamura, Carbohydr. Polym., 82(2), 227 (2010).
- I. Aranaz, R. Harris, A. Heras, Curr. Org. Chem., 14(3), 308 (2010).
- I. Aranaz, M. Mengíbar, R. Harris, I. Paños, B. Miralles, N. Acosta, G. Galed, A. Heras, Curr. Chem. Biol. 3(2), 203 (2009)
- M. Kannan, M. Nesakumari, K. Rajarathinam, A.J.A.R. Singh, Adv. Biol. Res. 4(1), 10 (2010)
- R. Riva, H. Ragelle, A. des Rieux, N. Duhem, C. Jérôme, V. Préat, Chitosan for biomaterials II, Springer, Berlin, Heidelberg, 2011
- X. Guo, Y. Wang, Y. Qin, P. Shen, Q. Peng, Int. J. Biol. Macromol, 162, 618 (2020)
- G.K. Wasupalli, D. Verma. Int. J. Biol. Macromol, 114, 10 (2018)
- S. Islam, M.A.R. Bhuiyan, M.N. Islam, J. Polym. Env. 25, 854 (2007)
- S. Gorgieva, R. Vorgrinĉiĉ, V. Kokol, J. Polym. Environ..27, 318 (2019)
- R. Belalia, S. Grelier, M. Benaissa, V. Coma, J. Agric. Food Chem, 56(5), 1582 (2008)
- Y. Huang, X. Fen, J. Membr. Sci, 586, 53 (2019)
- M. Mulder, Basic Principles of Membrane Technology, Kluwer Academic, 1991.
- V. Snceyink, D. Jenkins, Water Chemistry, John Wiley, 1980.
- T. Radeva, Physical Chemistry of Polyelectrolytes, Marcel Dekker, 2001.
- M. Palencia, B.L. Rivas, E. Pereira, A. Hernández, P. Prádanos, J. Membr. Sci. 336, 128 (2009).
- F. Liu, N.A. Hashim, Y. Liu, M.M. Abed, K. Li, J. Membr. Sci, 375(1-2), 1 (2011)
- K.E. Geckeler, E. Bayer, B.Y. Spivakov, V.M. Shkinev, G.A. Vorob’eva, Anal. Chim. Acta, 189, 285 (1986).
- B.L. Rivas, B.F. Urbano, J. Sánchez, Front. Chem, 6, 320 (2018).
- M. Palencia, J. Chem. 2015 (2015).
- S. Gokila, T. Gomathi, P.N.Sudha, S. Anil, Int. J. Biol. Macromol. 104, 1459 (2017).
- G. Sharma, M. Naushad, A.H. Al-Muhtaseb, A. Kumara, M.R. Khan, S. Kalia, Shweta, M. Bala, A. Sharma, Int. J. Biol. Macromol. 95, 484 (2017).
- I.P. Fernando, K.K. Sanjeewa, S. Kim, J. Lee, Y. Jeon, Int. J. Biol. Macromol,106, 330 (2018).
- C. Çifci, Ş. Polat, J. Macromol. Sci A, 46(7), 682 (2009).
- A. Maureira, B.L. Rivas, Eur. Polym. J. 45(2), 573 (2009).
- D.W. O’Connell, C. Birkinshaw, T.F. O’Dwyer, Bioresour. Technol., 99(15), 6709, (2008).
- L.Y.Wang, M.J. Wang, ACS Sustain. Chem. Eng., 4(5), 2830 (2016).
- M.A. Barakat, E. Schmidt, Desalination, 256(1-3), 90 (2010).
- V. Konovalova, I. Kolesnyk, O. Ivanenko, A. Burban, Environ. Prot. Eng, 21(1), 39 (2018).
- B. Lam, S. Déon, N.M. Crini, G. Crini, P. Fievet, J. Clean. Prod, 171, 927 (2018).
- J. Sánchez, B. Butter, S. Chavez, L.Riffo, L. Basáez, B.L. Rivas, Desalination Water Treat. 57(52), 25161 (2016).
- S. Saha, M. Zubair, M.A. Khosa, S. Song, A. Ullah, J. Polym. Environ. 27, 1389 (2019).
- I. Anastopoulos, A. Bhatnagar, D.N. Bikiaris, G.Z. Kyzas, Int. J. Mol. Sci., 18(1) 114, (2017).
- V. Zargar, M.Asghari, A.Dashti, Chem. Bio. Eng. Rev. 2(3), 204 (2015).
- L. Zhang, Y. Zeng, Z. Cheng, J. Mol. Liq. 214, 175 (2016).
- M. Vakili, S. Deng, G.Cagnetta, W. Wang, P. Meng, D. Liu, G. Yu, Sep. Purif. Technol. 224, 373 (2019).
- M.K. Aroua, F.M. Zuki, N.M. Sulaiman, J. Haz.Mat., 147, 752 (2007).
- J. Llorens, M. Pujolà, J. Sabaté, J. Membr. Sci, 239, 173 (2004)
- L. Toledo, B.L. Rivas, Polym. Bull. 72(6), 1365 (2015)
- S. Deón, J. Deher, B. Lam, N. Crini, G. Crini, P. Fievet, Ind. Eng. Chem. Res. 56(37), 10461 (2017).
- E. Kavitha, A.Sowmya, S. Prabhakar, P. Jain, R. Surya, M.P.Rajesh, Int. J. Biol. Macromol, 132, 278 (2019)
- D.J. Ennigrou, M.B.S. Ali, M. Dhahbi, Desalination, 343, 82 (2014)
- P. Cañizares, A. Pérez, R. Caramillo, R. Mazarro, J. Membr. Sci. 320, 520 (2008)
- R. Molinari, P. Argurio, T. Poerio, Macromol. Symp. 235, 206 (2006)
- P. Cañizares, Á. Pérez, R. Camillo, Desalination. 144, 279, (2002)
- B.L. Rivas, E. Pereira, A. Maureira, Polym. Int. 58(10), 1093 (2009)
- J. Sánchez, L. Toledo, B.L. Rivas, N. Rivera, E. Muñoz, J. Chil.Chem. Soc. 58(4), 1986 (2013).