Chin.J.Chem.Eng. ›› 2016, Vol. 24 ›› Issue (4): 433-445.DOI: 10.1016/j.cjche.2015.11.018
Mohamed Khitous1,2, Zineb Salem1, Djamila Halliche2
Received:
2015-02-05
Revised:
2015-09-10
Online:
2016-05-27
Published:
2016-04-28
Contact:
Mohamed Khitous
Supported by:
The work was financially supported by both the department of Process Engineering and Chemistry of USTHB (Algiers).
Mohamed Khitous1,2, Zineb Salem1, Djamila Halliche2
通讯作者:
Mohamed Khitous
基金资助:
The work was financially supported by both the department of Process Engineering and Chemistry of USTHB (Algiers).
Mohamed Khitous, Zineb Salem, Djamila Halliche. Effect of interlayer anions on chromium removal using Mg-Al layered double hydroxides: Kinetic, equilibrium and thermodynamic studies[J]. Chin.J.Chem.Eng., 2016, 24(4): 433-445.
Mohamed Khitous, Zineb Salem, Djamila Halliche. Effect of interlayer anions on chromium removal using Mg-Al layered double hydroxides: Kinetic, equilibrium and thermodynamic studies[J]. Chinese Journal of Chemical Engineering, 2016, 24(4): 433-445.
Add to citation manager EndNote|Ris|BibTeX
URL: https://cjche.cip.com.cn/EN/10.1016/j.cjche.2015.11.018
[1] G. Tyler, A.M. Pahlsson, G. Bengtsson, E. Baath, L. Tranvik, Heavy metal ecology and terrestrial plants, microorganisms and invertebrates: A review, Water Air Soil Pollut. 47(1989) 189-215.[2] E. Demirbas, M. Kobya, E. Senturk, T. Ozkan, Adsorption kinetics for the removal of chromium (VI) from aqueous solutions on the activated carbons prepared from agricultural wastes, Water SA 30(2004) 533-539.[3] R.A. Goyer, M.A. Mehlman, Advances in modern toxicology: toxicology of trace elements, 2, John Wiley & Sons, New York, 197741-77.[4] B.L. Carson, H.V. Ellis, J.L. McCann, Toxicology and biological monitoring of metals in humans, Lewis Publishers, Chelsea, Michigan, 198652.[5] Environmental Protection Agency (EPA), Cincinnati, Ohio, Environmental pollution control alternatives: Drinking water treatment for small communities, EPA/625/5-90/025, 1990(California).[6] W.J. McLay, F.P. Reinhard, Waste minimization and recovery technologies, Met. Finish. 98(2000) 817.[7] B.A. Shah, C.B. Mistry, A.V. Shah, Detoxification of hexavalent chromium using hydrothermally modified agricultural detritus into mesoporous zeolitic materials, Microporous Mesoporous Mater. 196(2014) 223-234.[8] L.S.D. Lima, L. Techy, S.P. Quináia, Single and simultaneous removal of Cu, Cd and Cr by adsorption onto bamboo activated carbon, J. Mater. Sci. Chem. Eng. 2(2014) 33-45.[9] S.A. Idris, K.M. Alotaibi, T.A. Peshkur, P. Anderson, M. Morris, L.T. Gibson, Adsorption kinetic study: Effect of adsorbent pore size distribution on the rate of Cr (VI) uptake, Microporous Mesoporous Mater. 165(2013) 99-105.[10] X. Jin, M. Jiang, J. Du, Z. Chen, Removal of Cr(VI) from aqueous solution by surfactant-modified kaolinite, J. Ind. Eng. Chem. 20(2014) 3025-3032.[11] T. Kameda, E. Kondo, T. Yoshioka, Preparation of Mg-Al layered double hydroxide doped with Fe2+ and its application to Cr(VI) removal, Sep. Purif. Technol. 122(2014) 12-16.[12] F. Cavani, F. Trifirò, A. Vaccari, Hydrotalcite-type anionic clays: Preparation, properties and applications, Catal. Today 11(1991) 173-301.[13] A.D. Roy, C. Forano, K. El Malki, J.P. Besse, Anionic clays, in: M.L. Occelli, H.E. Robson (Eds.), Trends in pillaring chemistry in synthesis of microporous materials, Expanded clays and other microporous solids, 2, Van Nostrand Reinhold, New York 1992, pp. 108-169.[14] J. Pasel, P. Käßner, B. Montanari, M. Gazzano, A. Vaccari, W. Makowski, T. Lojewski, R. Dziembaj, H. Papp, Transition metal oxides supported on active carbons as low temperature catalysts for the selective catalytic reduction (SCR) of NO with NH3, Appl. Catal. B Environ. 18(1998) 199-213.[15] L. Ren, J. He, D.G. Evans, X. Duan, R. Ma, Some factors affecting the immobilization of penicillin G acylase on calcined layered double hydroxides, J. Mol. Catal. B Enzym. 16(2001) 65-71.[16] Z.P. Xu, H.C. Zeng, Abrupt structural transformation in hydrotalcite-like compounds Mg1-xAlx(OH)2(NO3)x·n H2O as a continuous function of nitrate anions, J. Phys. Chem. B 105(2001) 1743-1749.[17] D.L. Bish, Anion exchange in takovite: Applications to other hydroxideminerals, Bull. Mineral. 103(1980) 170-175.[18] L. Yang, Z. Shahrivari, P.K.T. Liu, Removal of trace levels of arsenic and seleniumfrom aqueous solutions by calcined and uncalcined layered double hydroxides (LDH), Ind. Eng. Chem. Res. 44(2005) 6804-6815.[19] K. Chibwe, W. Jones, Intercalation of organic and inorganic anions into layered double hydroxides, J. Chem. Soc. Chem. Commun. 926(1989) 926-927.[20] M.A. Ulibarri, I. Pavlovic, M.C. Hermosin, J. Cornejo, Hydrotalcite-like compounds as potential sorbents of phenols from water, Appl. Clay Sci. 10(1995) 131-145.[21] R.L. Goswamee, P. Sengupta, K.G. Bhattacharyya, D.K. Dutta, Adsorption of Cr(VI) in layered double hydroxides, Appl. Clay Sci. 13(1998) 21-34.[22] N.K. Lazaridis, T.A. Pandi, K.A. Matis, Chromium (VI) removal from aqueous solutions by Mg-Al-CO3 hydrotalcite: Sorption-desorption kinetic and equilibrium studies, Ind. Eng. Chem. Res. 43(2004) 2209-2215.[23] M. Khitous, Z. Salem, D. Halliche, Removal of phosphate from industrial wastewater using uncalcined MgAl-NO3 layered double hydroxide: Batch study and modeling, Desalin. Water Treat. (2015), http://dx.doi.org/10.1080/19443994.2015.1077745.[24] L. Lv, P. Sun, Z. Gu, H. Du, X. Pang, X. Tao, R. Xu, L. Xu, Removal of chloride ion from aqueous solution by ZnAl-NO3 layered double hydroxides as anion-exchanger, J. Hazard. Mater. 161(2009) 1444-1449.[25] S. Miyata, Anion-exchange properties of hydrotalcite-like compounds, Clay Clay Miner. 31(1983) 305-311.[26] P.K. Dutta, M. Puri, Anion exchange in lithium aluminate hydroxides, J. Phys. Chem. 93(1989) 376-381.[27] D. Carriazo, M. Del Arco, C. Martín, V. Rives, A comparative study between chloride and calcined carbonate hydrotalcites as adsorbents for Cr(VI), Appl. Clay Sci. 37(2007) 231-239.[28] W. Wang, J. Zhou, G. Achari, J. Yu,W. Cai, Cr(VI) removal from aqueous solutions by hydrothermal synthetic layered double hydroxides: Adsorption performance, coexisting anions and regeneration studies, Colloids Surf. A 457(2014) 33-40.[29] F. Zhang, N. Du, H. Li, J. Liu, W. Hou, Synthesis of Mg-Al-Fe-NO3 layered double hydroxides via a mechano-hydrothermal route, Solid State Sci. 32(2014) 41-47.[30] K.H. Goh, T.T. Lim, A. Banas, Z. Dong, Sorption characteristics and mechanisms of oxyanions and oxyhalides having different molecular properties on Mg/Al layered double hydroxide nanoparticles, J. Hazard. Mater. 179(2010) 818-827.[31] T. Hongo, H.Wakasa, A. Yamazaki, Synthesis and adsorption properties of nanosized Mg-Al layered double hydroxideswith Cl-, NO3- or SO42- as interlayer anion, Mater. Sci. Pol. 29(2011) 86-91.[32] A.V. Radha, P.V. Kamath, C. Shivakumara, Mechanism of the anion exchange reactions of the layered double hydroxides (LDHs) of Ca and Mg with Al, Solid State Sci. 7(2005) 1180-1187.[33] Y. Mitsuo, Immobilization of toxic heavy metals using hydrotalcite minerals: Possible applications for decontamination of polluted land and water, J. Ecotechnol. Res. 8(2) (2002) 248-249.[34] L.Y. Tian, W. Ma, M. Han, Adsorption behavior of Li+ onto nano-lithium ion sieve from hybrid magnesium/lithium manganese oxide, Chem. Eng. J. 156(2010) 134-140.[35] APHA, in: A.D. Eaton, L.S. Clesceri, E.W. Rice, A.E. Greenberg, M.A.H. Franson (Eds.), Standardmethods for the examination of water and wastewater, 21st ednAmerican Public Health Association, American Water Works Association, Water Environment Federation, USA, 2005.[36] I. Langmuir, J. Am, The adsorption of gases on plane surfaces of glass, mica and platinum, J. Am. Chem. Soc. 40(9) (1918) 1361-1403.[37] K. Kadirvelu, C. Namasivayam, Agricultural by-products as metal adsorbents: sorption of lead (II) from aqueous solutions onto coir-pith carbon, J. Membr. Sci. 165(2000) 159-167.[38] A. Tassist, H. Lounici, N. Abdi, N. Mameri, Equilibrium, kinetic and thermodynamic studies on aluminum biosorption by a mycelial biomass (Streptomyces rimosus), J. Hazard. Mater. 183(2010) 35-43.[39] A. Sari, M. Tuzen, Equilibrium, thermodynamic and kinetic studies on aluminum biosorption from aqueous solution by brown algae Padina pavonica biomass, J. Hazard. Mater. 171(2009) 973-979.[40] T. Lv, W. Ma, G. Xin, R. Wang, J. Xu, D. Liu, F. Liu, Physicochemical characterization and sorption behavior of Mg-Ca-Al (NO3) hydrotalcite-like compounds toward removal of fluoride from protein solutions, J. Hazard. Mater. 237-238(2012) 121-132.[41] V. Srinivasa, P. Prasanna, K. Vishnu, Chromate uptake characteristics of the pristine layered double hydroxides of Mg with Al, Solid State Sci. 10(2008) 260-266.[42] N. Iyi, K. Fujii, K. Okamoto, T. Sasaki, Factors influencing the hydration of layered double hydroxides (LDHs) and the appearance of an intermediate second staging phase, Appl. Clay Sci. 35(2007) 218.[43] S. Miyata, Physico-chemical properties of synthetic hydrotalcites in relation to composition, Clay Miner. 23(1975) 369.[44] N.D. Hutson, S.A. Speakman, E.A. Payzant, Structural effects on the high temperature adsorption of CO2 on a synthetic hydrotalcite, Chem. Mater. 16(2004) 4135.[45] A. Bakhti,M.S. Ouali, Sorption of chromate ions on a calcined synthetic hydrotalcite, Water Qual. Res. J. Can. 40(2) (2005) 177-183.[46] P. Cai, H. Zheng, D. Chang, H. Ma, J. Hu, Y. Pu, P. Liang, Competitive adsorption characteristics of fluoride and phosphate on calcined MgAl-CO3 layered double hydroxides, J. Hazard. Mater. 213-214(2012) 100-108.[47] Q. Wang, Z. Wu, H.H. Tay, L. Chen, Y. Liu, J. Chang, Z. Zhong, J. Luo, A. Borgna, High temperature adsorption of CO2 on Mg-Al hydrotalcite: Effect of the charge compensating anions and the synthesis pH, Catal. Today 164(2011) 198-203.[48] V. Rives-Arnau, G. Munuera, J.M. Criado, Raman spectrum of the split ν4 mode of CO32-ions in aragonite, Spectrosc. Lett. 12(1979) 733-738.[49] F.M. Labajos, V. Rives, M.A. Ulibarri, Effect of hydrothermal and thermal treatments on the physicochemical properties of Mg-Al hydrotalcite-like materials, J. Mater. Sci. 27(1992) 1546-1552.[50] H. Zaghouane-Boudiaf, M. Boutahala, C. Tiar, L. Arab, F. Garin, Treatment of 2,4,5-trichlorophenol by MgAl-SDBS organo-layered double hydroxides: Kinetic and equilibrium studies, Chem. Eng. J. 173(2011) 36-41.[51] T. López, P. Bosch, M. Asomoza, R. Gómez, E. Ramos, DTA-TGA and FTIR spectroscopies of sol-gel hydrotalcites: Aluminum source effect on physicochemical properties, Mater. Lett. 31(1997) 311.[52] S. Miyata, A. Okada, Synthesis of hydrotalcite like compounds and their structural and physico-chemical properties, Clay Clay Miner. 25(1977) 14-18.[53] M. Islam, R. Patel, Nitrate sorption by thermally activated Mg/Al chloride hydrotalcite-like compound, J. Hazard. Mater. 169(2009) 524.[54] K. Nakamoto, Infrared and raman spectra of inorganic and coordination compounds, 4th edition John Wiley and Sons, New York, USA, 1986.[55] Y. Li, B. Gao, T. Wu, D. Sun, X. Li, B.Wang, F. Lu, Hexavalent chromium removal from aqueous solution by adsorption on aluminum magnesium mixed hydroxide, Water Res. 43(2009) 3067-3075.[56] V.K. Gupta, A.K. Shrivastava, N. Jain, Biosorption of chromiumfromaqueous solution by green algae spirogyra species, Water Res. 35(2001) 4079-4085.[57] A. Benhamou, M. Baudu, Z. Derriche, J.P. Basly, Aqueous heavy metals removal on amine-functionalized Si-MCM-41 and Si-MCM-48, J. Hazard. Mater. 171(2009) 1001-1008.[58] P. Selvam, S.K. Bhatia, C.G. Sonwane, Recent advances in processing and characterization of periodic mesoporousMCM-41 silicatemolecular sieves, Ind. Eng. Chem. Res. 40(2001) 3237-3261.[59] L. Châtelet, J.V. Bottero, J. Yvon, A. Bouchelaghem, Competition between monovalent and divalent anions for calcined and uncalcined hydrotalcite: Anion exchange and adsorption sites, Colloids Surf. A 111(1996) 167.[60] E. Alvarez-Ayuso, H.W. Nugteren, Purification of chromium (VI) finishing wastewaters using calcined and uncalcined MgAl-CO3 hydrotalcite, Water Res. 39(2005) 2535-2542.[61] K.V. Kumar, K. Porkodi, Mass transfer, kinetics and equilibrium studies for the biosorption of methylene blue using Paspalum notatum, J. Hazard. Mater. 146(2007) 214-226.[62] C.H. Giles, T.H. MacEwan, S.N. Nakhwa, D. Smith, Studies in adsorption: Part IX. A system of classification of solution adsorption isotherms and its use in diagnosis of adsorption mechanisms and in measurement of specific areas of solids, J. Chem. Soc. 786(1960) 3973-3993.[63] T. Kameda, J. Oba, T. Yoshioka, Recyclable Mg-Al layered double hydroxides for fluoride removal: Kinetic and equilibrium studies, J. Hazard. Mater. 300(2015) 475-482.[64] G. Mckay, H.S. Blair, J.K. Gardner, Adsorption of dyes on chitin. I. Equilibrium studies, J. Appl. Polym. Sci. 27(1982) 3043-3057.[65] K.H. Goh, T.T. Lim, Z. Dong, Application of layered double hydroxides for removal of oxyanions: A review, Water Res. 42(2008) 1343-1368.[66] X. Liang,W. Hou, J. Xu, Sorption of Pb(II) on Mg-Fe layered double hydroxide, Chin. J. Chem. 27(2009) 1981-1988.[67] D. Enshirah, N.D. Silva, A. Sayari, Adsorption of copper on amine functionalized SBA-15 prepared by co-condensation: Kinetic properties, Chem. Eng. J. 166(2011) 454-459.[68] E. Demirbas, N. Dizge, M.T. Sulak, M. Kobya, Adsorption kinetics and equilibrium of copper from aqueous solutions using hazelnut shell activated carbon, Chem. Eng. J. 148(2009) 480.[69] J.W. Weber, J.C. Morris, Kinetics of adsorption on carbon from solution, J. Sanit. Eng. Div. Am. Soc. Civ. Eng. 89(1963) 31-60.[70] Q.H. Fan, X.L. Tan, J.X. Li, X.K. Wang, W.S. Wu, G. Montavon, Sorption of Eu(III) on attapulgite studied by batch, XPS and EXAFS techniques, Environ. Sci. Technol. 43(2009) 5776-5782. |
[1] | Yingli Li, Zhishuncheng Li, Guangfei Qu, Rui Li, Shuaiyu Liang, Junhong Zhou, Wei Ji, Huiming Tang. Mechanism, behaviour and application of iron nitrate modified carbon nanotube composites for the adsorption of arsenic in aqueous solutions [J]. Chinese Journal of Chemical Engineering, 2023, 60(8): 26-36. |
[2] | Jing Huang, Honghui Cai, Qian Zhao, Yunpeng Zhou, Haibo Liu, Jing Wang. Dual-functional pyrene implemented mesoporous silicon material used for the detection and adsorption of metal ions [J]. Chinese Journal of Chemical Engineering, 2023, 60(8): 108-117. |
[3] | Lingli Chen, Yueting Shi, Sijun Xu, Junle Xiong, Fang Gao, Shengtao Zhang, Hongru Li. Enhanced adsorption of target branched compounds including antibiotic norfloxacin frameworks on mild steel surface for efficient protection: An experimental and molecular modelling study [J]. Chinese Journal of Chemical Engineering, 2023, 60(8): 212-227. |
[4] | Xiaolin Guo, Zhaoyang Zhang, Pengfei Xing, Shuai Wang, Yibing Guo, Yanxin Zhuang. Kinetic mechanism of copper extraction from methylchlorosilane slurry residue using hydrogen peroxide as oxidant [J]. Chinese Journal of Chemical Engineering, 2023, 60(8): 228-234. |
[5] | Sinu Poolachira, Sivasubramanian Velmurugan. Graphene oxide/hydrotalcite modified polyethersulfone nanohybrid membrane for the treatment of lead ion from battery industrial effluent [J]. Chinese Journal of Chemical Engineering, 2023, 60(8): 253-261. |
[6] | Alexander Nti Kani, Evans Dovi, Aaron Albert Aryee, Runping Han, Zhaohui Li, Lingbo Qu. Mechanisms and reusability potentials of zirconium-polyaziridine-engineered tiger nut residue towards anionic pollutants [J]. Chinese Journal of Chemical Engineering, 2023, 60(8): 275-292. |
[7] | Yuan Liu, Hanting Xiong, Jingwen Chen, Shixia Chen, Zhenyu Zhou, Zheling Zeng, Shuguang Deng, Jun Wang. One-step ethylene separation from ternary C2 hydrocarbon mixture with a robust zirconium metal-organic framework [J]. Chinese Journal of Chemical Engineering, 2023, 59(7): 9-15. |
[8] | Hui Jiang, Zijian Zhao, Ning Yu, Yi Qin, Zhengwei Luo, Wenhua Geng, Jianliang Zhu. Synthesis, characterization, and performance comparison of boron using adsorbents based on N-methyl-D-glucosamine [J]. Chinese Journal of Chemical Engineering, 2023, 59(7): 16-31. |
[9] | Xun Tao, Fan Zhou, Xinlei Yu, Songling Guo, Yunfei Gao, Lu Ding, Guangsuo Yu, Zhenghua Dai, Fuchen Wang. Effect of carbon dioxide on oxy-fuel combustion of hydrogen sulfide: An experimental and kinetic modeling [J]. Chinese Journal of Chemical Engineering, 2023, 59(7): 105-117. |
[10] | Sufei Wang, Mengjie Hao, Danyang Xiao, Tianmiao Zhang, Hua Li, Zhongshan Chen. Synthesis of porous carbon nanomaterials and their application in tetracycline removal from aqueous solutions [J]. Chinese Journal of Chemical Engineering, 2023, 59(7): 200-209. |
[11] | Runze Chen, Yuran Chen, Xuemin Liang, Yapeng Kong, Yangyang Fan, Quan Liu, Zhenyu Yang, Feiying Tang, Johnny Muya Chabu, Maru Dessie Walle, Liqiang Wang. Oxidative exfoliation of spent cathode carbon: A two-in-one strategy for its decontamination and high-valued application [J]. Chinese Journal of Chemical Engineering, 2023, 59(7): 262-269. |
[12] | Junyang Liu, Luming Wang, Yuhang Bian, Chunshan Li, Zengxi Li, Jie Li. Liquid-phase esterification of methacrylic acid with methanol catalyzed by cation-exchange resin in a fixed bed reactor: Experimental and kinetic studies [J]. Chinese Journal of Chemical Engineering, 2023, 58(6): 1-10. |
[13] | Wei Wang, Romain Lemaire, Ammar Bensakhria, Denis Luart. Thermogravimetric analysis and kinetic modeling of the co-pyrolysis of a bituminous coal and poplar wood [J]. Chinese Journal of Chemical Engineering, 2023, 58(6): 53-68. |
[14] | Shanghong Ma, Haitao Zhang, Jianbo Qu, Xiuzhong Zhu, Qingfei Hu, Jianyong Wang, Peng Ye, Futao Sai, Shiwei Chen. Preparation of waterborne polyurethane/β-cyclodextrin composite nanosponge by ion condensation method and its application in removing of dyes from wastewater [J]. Chinese Journal of Chemical Engineering, 2023, 58(6): 124-136. |
[15] | Zijie Zhang, Qianyu Zha, Ying Liu, Zhibing Zhang, Jia Liu, Zheng Zhou. Study on the epoxidation of olefins with H2O2 catalyzed by biquaternary ammonium phosphotungstic acid [J]. Chinese Journal of Chemical Engineering, 2023, 58(6): 146-154. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||