[1] M.B. Gumpu, S. Sethuraman, U.M. Krishnan, J.B.B. Rayappan, A review on detection of heavy metal ions in water-An electrochemical approach, Sens. Actuat, B Chem.213 (2015) 515-533 [2] K. Asgari, W.M. Cornelis, Heavy metal accumulation in soils and grains, and health risks associated with use of treated municipal wastewater in subsurface drip irrigation, Environ. Monit. Assess. 187 (7) (2015) 410 [3] G. Zhang, L.B. Liu, E. Shiko, Y. Cheng, R. Zhang, Z.G. Zeng, T.G. Zhao, Y.F. Zhou, H.B. Chen, Y. Liu, X.Y. Hu, Low-price MnO2 loaded sepiolite for Cd2+ capture, Adsorption 25 (6) (2019) 1271-1283 [4] J.A. Cortés, M.A. Zárate-Navarro, A.G. Alvarado, Study and comparison of several methods to remove Ni(II) ions in aqueous solutions using poly(acrylamide-co-itaconic acid) hydrogels, J. Polym. Res. 27 (8) (2020), https://doi.org/10.1007/s10965-020-02225-y [5] M.A. Tahoon, S.M. Siddeeg, N. Salem Alsaiari, W. Mnif, F. Ben Rebah, Effective heavy metals removal from water using nanomaterials:A review, Processes 8 (6) (2020) 645 [6] F. Melak, E. Alemayehu, A. Ambelu, E. Van Ranst, G.D. Laing, Evaluation of natural quartz and zeolitic tuffs for As(V) removal from aqueous solutions:a mechanistic approach, Int. J. Environ. Sci. Technol. 15 (1) (2018) 217-230 [7] M. Contin, L. Miho, E. Pellegrini, F. Gjoka, E. Shkurta, Effects of natural zeolites on ryegrass growth and bioavailability of Cd, Ni, Pb, and Zn in an Albanian contaminated soil, J. Soils Sediments19 (12) (2019) 4052-4062 [8] N.C. Chen, C.J. Hu, W.B. Ruan, T.S. Cui, A preliminary study of ionic absorpability of chetian stellerite, Guangxi province, Ion Exch. Adsorpt. 18 (01) (2002) 80-84. (in Chinese) [9] C.J. Hu, N.C. Chen, Adsorption capacity of stellerite to lead ion, J. Guilin Univ. Technol. 26 (03) (2006) 392-394. (in Chinese) [10] J. Li, J. Qiu, Y.J. Sun, Y.C. Long, Studies on natural STI zeolite:Modification, structure, adsorption and catalysis, Microporous Mesoporous Mater. 37 (3) (2000) 365-378 [11] M.B. Yue, L. Huang, X. Dong, J.H. Xu, J.H. Zhu, Attempts to synthesize zeolitic composites from stellerite, Mater. Manuf. Process.22 (6) (2007) 700-704 [12] Y.Z. Wang, P. Bai, Z.W. Jin, Y. Li, Y.R. Li, W. Shi, X. Zhou, J. Xu, W.F. Yan, R.R. Xu, Stellerite-seeded facile synthesis of zeolite heulandite with exceptional aqueous Cd2+ capture performance, Inorg. Chem. Front. 6 (7) (2019) 1785-1792 [13] L.F. de Magalhães, G.R. da Silva, A.E.C. Peres, M.R.R. Kooh, Zeolite application in wastewater treatment, Adsorpt. Sci.Technol. 2022 (2022) 4544104 [14] S.Q. Zhang, M. Cui, J.H. Chen, Z.J. Ding, X.C. Wang, Y. Mu, C.G. Meng, Modification of synthetic zeolite X by thiourea and its adsorption for Cd (II), Mater. Lett. 236 (2019) 233-235 [15] S.X. Bai, M. Chu, L.M. Zhou, Z.B. Chang, C. Zhang, H. Guo, B.M. Liu, S.T. Wang, Modified oil shale ash and oil shale ash zeolite for the removal of Cd2+ ion from aqueous solutions, Environ. Technol. 40 (11) (2019) 1485-1493 [16] A.M. Hameed, A. Alharbi, E.A. Abdelrahman, E.M. Mabrouk, R.M. Hegazey, F.K. Algethami, Y.O. Al-Ghamdi, H.M. Youssef, Facile hydrothermal fabrication of analcime and zeolite X for efficient removal of Cd(II) ions from aqueous media and polluted water, J. Inorg. Organomet. Polym. Mater. 30 (10) (2020) 4117-4128 [17] S.M. Guo, Removal of Ni2+ from wastewater by 13X molecular sieve, Shanxi Chem. Ind. 31 (02) (2011) 75-77. (in Chinese) [18] Y.X. Zhang, J.X. Dong, F.H. Guo, Z.Y. Shao, J.J. Wu, Zeolite synthesized from coal fly ash produced by a gasification process for Ni2+ removal from water, Minerals 8 (3) (2018) 116 [19] W. Xiao, H.W. Ma, J. Yang, Y.B. Wang, Adsorption of 13X zeolite on Ni2+ in wastewater:An experimental study, Earth Sci.-J. Chian Univ Geosci 28 (01) (2003) 21-25. (in Chinese) [20] E.A. Deliyanni, G.Z. Kyzas, K.S. Triantafyllidis, K.A. Matis, Activated carbons for the removal of heavy metal ions:A systematic review of recent literature focused on lead and arsenic ions, Open Chem. 13 (1) (2015) 699-708 [21] X.Q. Liu, X.X. Zhao, Y. Liu, T.A. Zhang, Review on preparation and adsorption properties of chitosan and chitosan composites, Polym. Bull. 79 (4) (2022) 2633-2665 [22] M.T. Sikder, T. Kikuchi, J. Suzuki, T. Hosokawa, T. Saito, M. Kurasaki, Removal of cadmium and chromium ions using modified α, β, and γ-cyclodextrin polymers, Sep. Sci. Technol. 48 (4) (2013) 587-597 [23] X.J. Meng, X.W. Guo, Y.J. Zhong, Y.C. Pei, N.C. Chen, Q.L. Xie, Synthesis of a high-quality NaP zeolite from epidesmine by a hydrothermal method, Bull. Mater. Sci. 42 (5) (2019) 1-8 [24] S.S. Gao, N.C. Chen, Y.C. Pei, X.L. Wang, X.J. Meng, Hydrothermal reaction conditions for praparation of zeolite P from natural stilbite as raw material, J. Synth. Cryst. 47 (06) (2018) 1096-1101. (in Chinese) [25] S.H. Shen, S.G. Zhang, D.W. Wang, K.M. Fang, Hydrothermal preparation and crystal habit of X-zeolite powder, J. Central. South Univ. Technol. 12 (3) (2005) 315-319 [26] Y.C. Pei, Y.J. Zhong, Q.L. Xie, N.C. Chen, Two-step hydrothermal synthesis and conversion mechanism of zeolite X from stellerite zeolite, RSC Adv. 12 (6) (2022) 3313-3321 [27] S. Sivalingam, S. Sen, Swift sono-hydrothermal synthesis of pure NaX nanocrystals with improved sorption capacity from industrial resources, Appl. Surf. Sci. 463 (2019) 190-196 [28] X.Q. Pu, L. Yao, L. Yang, W.J. Jiang, X. Jiang, Utilization of industrial waste lithium-silicon-powder for the fabrication of novel nap zeolite for aqueous Cu(II) removal, J. Clean Prod. 265 (2020) 121822 [29] I.H. Abd El Maksod, E.A. Elzaharany, S.A. Kosa, E.Z. Hegazy, Simulation program for zeolite A and X with an active carbon composite as an effective adsorbent for organic and inorganic pollutants, Microporous Mesoporous Mater. 224 (2016) 89-94 [30] S. Khandaker, Y. Toyohara, S. Kamida, T. Kuba, Effective removal of cesium from wastewater solutions using an innovative low-cost adsorbent developed from sewage sludge molten slag, J. Environ. Manage.222 (2018) 304-315 [31] G.Y. Yao, J.J. Lei, X.Y. Zhang, Z.M. Sun, S.L. Zheng, S. Komarneni, Mechanism of zeolite X crystallization from diatomite, Mater. Res. Bull. 107 (2018) 132-138 [32] G.Y. Yao, J.J. Lei, X.Y. Zhang, Z.M. Sun, S.L. Zheng, One-step hydrothermal synthesis of zeolite X powder from natural low-grade diatomite, Materials 11 (6) (2018) 906 [33] C.Y. Wang, J.T. Zhou, J.K. He, C.S. Hao, Y.Z. Pan, C.G. Meng, Synthesis of zeolite A and its application as a high-capacity cadmium ion ex-changer, Chin. J. Catal. 33 (11) (2013) 1862-1869 [34] W.W. Bao, H.F. Zou, S.C. Gan, X.C. Xu, G.J. Ji, K.Y. Zheng, Adsorption of heavy metal ions from aqueous solutions by zeolite based on oil shale ash:Kinetic and equilibrium studies, Chem. Res. Chin. Univ. 29 (1) (2013) 126-131 [35] W.W. Bao, L. Liu, H.F. Zou, S.C. Gan, X.C. Xu, G.J. Ji, G.M. Gao, K.Y. Zheng, Removal of Cu2+ from aqueous solutions using Na-A zeolite from oil shale ash, Chin. J. Chem. Eng. 21 (9) (2013) 974-982 [36] G.N. Chen, K.J. Shah, L. Shi, P.-C. Chiang, Removal of Cd(II) and Pb(II) ions from aqueous solutions by synthetic mineral adsorbent:Performance and mechanisms, Appl. Surf. Sci. 409 (2017) 296-305 [37] Y.I. Smolin, Y.F. Shepelev, A.E. Lapshin, E.A. Vasil'eva, Crystal structures of hydrated (20℃) and dehydrated (250℃) forms of zeolite CdX, Crystallogr. Rep. 43 (3) (1998) 383-386 [38] Y. Horikawa, N. Ohnishi, K. Hiraga, Structures and magnetic susceptibility of Ni-ion-introduced zeolite A and X, Mater. Sci. Eng. A 217-218 (1996) 139-141 [39] Y. Yurekli, Determination of adsorption characteristics of synthetic NaX nanoparticles, J. Hazard. Mater. 378 (2019) 120743 [40] M. Chen, S. Nong, Y. Zhao, M.S. Riaz, Y. Xiao, M.S. Molokeev, F. Huang, Renewable P-type zeolite for superior absorption of heavy metals:Isotherms, kinetics, and mechanism, Sci. Total Environ. 726 (2020) 138535 [41] B.K. Jiang, H.B. Qi, Experimental study on property of 13X -zeolite molecular sieve:removing nickel from wastewater, Environ. Sci. Technol. 26 (06) (2003) 23-24+30-65. (in Chinese) |