[1] J.S.D. Jeremias, J.Y. Lin, M.L.P. Dalida, M.C. Lu, Abatement technologies for copper containing industrial wastewater effluentsdA review, J. Environ. Chem. Eng. 11(2)(2023)109336. [2] D. Li, F.G. Xu, Removal of Cu (II) from aqueous solutions using ZIF-8@GO composites, J. Solid State Chem. 302(2021)122406. [3] A.M. Elgarahy, K.Z. Elwakeel, S.H. Mohammad, G.A. Elshoubaky, A critical review of biosorption of dyes, heavy metals and metalloids from wastewater as an efficient and green process, Clean. Eng. Technol. 4(2021)100209. [4] H.W. Tan, Y.L. Pang, S. Lim, W.C. Chong, A state-of-the-art of phytoremediation approach for sustainable management of heavy metals recovery, Environ. Technol. Innov. 30(2023)103043. [5] T. Lekgoba, F. Ntuli, T. Falayi, Application of coal fly ash for treatment of wastewater containing a binary mixture of copper and nickel, J. Water Process Eng. 40(2021)101822. [6] F. He, B.Z. Ma, C.Y. Wang, Y.Q. Chen, X.J. Hu, Adsorption of Pb (II) and Cd (II) hydrates via inexpensive limonitic laterite:Adsorption characteristics and mechanisms, Sep. Purif. Technol. 310(2023)123234. [7] R. Rashid, I. Shafiq, P. Akhter, M.J. Iqbal, M. Hussain, A state-of-the-art review on wastewater treatment techniques:The effectiveness of adsorption method, Environ. Sci. Pollut. Res. 28(8)(2021)9050-9066. [8] S.D. Lin, X.G. Jiang, Y.M. Zhao, J.H. Yan, Zeolite greenly synthesized from fly ash and its resource utilization:A review, Sci. Total Environ. 851(Pt 1)(2022)158182. [9] N.J. Themelis, W.C. Ma, Waste to energy (WTE) in China:From latecomer to front runner, Waste Dispos. Sustain. Energy 3(4)(2021)267-274. [10] A.C. Bourtsalas, Energy recovery from solid wastes in China and a Green-BRI mechanism for advancing sustainable waste management of the global South, Waste Dispos. Sustain. Energy 5(3)(2023)309-321. [11] E. Appiah-Hagan, Y.W. Chen, X. Yu, G.A. Arteca, J. Pizarro, L. Mercier, Q.L. Wei, N. Belzile, Simple and energy-saving modifications of coal fly ash to remove simultaneously six toxic metal cations from mine effluents, J. Environ. Chem. Eng. 6(4)(2018)5498-5509. [12] Z.H. Wang, L.H. Xu, D.S. Wu, S.L. Zheng, Hydrothermal synthesis of mesoporous tobermorite from fly ash with enhanced removal performance towards Pb2+from wastewater, Colloids Surf. A 632(2022)127775. [13] X.R. Huang, H.H. Zhao, X.F. Hu, F.H. Liu, L. Wang, X. Zhao, P.C. Gao, P.H. Ji, Optimization of preparation technology for modified coal fly ash and its adsorption properties for Cd2+, J. Hazard Mater. 392(2020)122461. [14] Q.Z. Wu, L.S. Gao, M.N. Huang, G.A.M. Mersal, M.M. Ibrahim, Z.M. El-Bahy, X.F. Shi, Q.L. Jiang, Aminated lignin by ultrasonic method with enhanced arsenic (V) adsorption from polluted water, Adv. Compos. Hybrid Mater. 5(2)(2022)1044-1053. [15] R. Foroutan, S.J. Peighambardoust, S. Hemmati, A. Ahmadi, E. Falletta, B. Ramavandi, C.L. Bianchi, Zn2+removal from the aqueous environment using a polydopamine/hydroxyapatite/Fe3O4 magnetic composite under ultrasonic waves, RSC Adv. 11(44)(2021)27309-27321. [16] L.Q. Qi, J. Xu, K.Y. Liu, Porous sound-absorbing materials prepared from fly ash, Environ. Sci. Pollut. Res. 26(22)(2019)22264-22272. [17] S.D. Lin, Y. Lu, L. Zheng, L. Long, X.G. Jiang, J.H. Yan, Immobilization potential of Cr through ultrasonic-assisted water washing in MSWI fly ash and evaluation of carbon capture and product reuse in its washing liquid, Process. Saf. Environ. Prot. 174(2023)627-636. [18] F. Zhang, R.J. Ji, Y.H. Liu, Y. Pan, B.P. Cai, Z.J. Li, Z. Liu, S.C. Lu, Y.T. Wang, H. Jin, C. Ma, X.L. Wu, A novel nickel-based honeycomb electrode with microtapered holes and abundant multivacancies for highly efficient overall water splitting, Appl. Catal. B 276(2020)119141. [19] X.L. Peng, Y. Li, S. Liu, T. Jiang, W.J. Chen, D. Li, J.R. Yuan, F.G. Xu, A study of adsorption behaviour of Cu (II) on hydroxyapatite-coated-limestone/chitosan composite, J. Polym. Environ. 29(6)(2021)1727-1741. [20] B.C. Hornbuckle, K. Solanki, K.A. Darling, Prolonged high-temperature exposure:Tailoring nanocrystalline CueTa alloys against grain growth, Mater. Sci. Eng. A 824(2021)141818. [21] J.L. Tang, Y.B. Chen, S.X. Wang, D.S. Kong, L.B. Zhang, Highly efficient metaleorganic frameworks adsorbent for Pd (II) and Au (III) recovery from solutions:Experiment and mechanism, Environ. Res. 210(2022)112870. [22] I. Langmuir, The adsorption of gases on plane surfaces of glass, mica and platinum, J. Am. Chem. Soc. 40(9)(1918)1361-1403. [23] J.M. Salman, V.O. Njoku, B.H. Hameed, Bentazon and carbofuran adsorption onto date seed activated carbon:Kinetics and equilibrium, Chem. Eng. J. 173(2)(2011)361-368. [24] J. Li, S.W. Zhang, C.L. Chen, G.X. Zhao, X. Yang, J.X. Li, X.K. Wang, Removal of Cu (II) and fulvic acid by graphene oxide nanosheets decorated with Fe3O4 nanoparticles, ACS Appl. Mater. Interfaces 4(9)(2012)4991-5000. [25] M.M. Rao, D.K. Ramana, K. Seshaiah, M.C. Wang, S.W. Chien, Removal of some metal ions by activated carbon prepared from Phaseolus aureus hulls, J. Hazard Mater. 166(2-3)(2009)1006-1013. [26] O. Rosskopfova, M. Galambo s, J. Omet akova, M. Caplovi cov a, P. Rajec, Study of sorption processes of copper on synthetic hydroxyapatite, J. Radioanal. Nucl. Chem. 293(2)(2012)641-647. [27] P. Liang, Y.C. Qin, B. Hu, T.Y. Peng, Z.C. Jiang, Nanometer-size titanium dioxide microcolumn on-line preconcentration of trace metals and their determination by inductively coupled plasma atomic emission spectrometry in water, Anal. Chim. Acta 440(2)(2001)207-213. [28] M.H. Zhao, Z. Huang, S.X. Wang, L.B. Zhang, Ultrahigh efficient and selective adsorption of Au (III) from water by novel Chitosan-coated MoS2 biosorbents:Performance and mechanisms, Chem. Eng. J. 401(2020)126006. [29] W. Konicki, M. Aleksandrzak, E. Mijowska, Equilibrium, kinetic and thermodynamic studies on adsorption of cationic dyes from aqueous solutions using graphene oxide, Chem. Eng. Res. Des. 123(2017)35-49. [30] C.Y. Shiau, C.C. Pan, Adsorption of basic dyes from aqueous solution by various adsorbents, Sep. Sci. Technol. 39(8)(2005)1733-1750. [31] Ç. Ay, Z. Sarpaşar, Using zeolite and Fe3O4@zeolite composites in removal of Reactive Red 120 from wastewater:Isotherm, kinetic, thermodynamic and adsorption behaviors, J. Dispers. Sci. Technol. 44(2)(2023)370-381. [32] X.L. Pan, J.L. Liu, D. Zhang, H.Y. Yu, Formation and transition of calcium aluminate and calcium silicate compounds from pre-synthesized mullite in low-calcium system by solid-state reaction, Ceram. Int. 46(10)(2020)16583-16589. [33] A.A. Adewumi, M.A.M. Ariffin, M.O. Yusuf, M. Maslehuddin, M. Ismail, Effect of sodium hydroxide concentration on strength and microstructure of alkaliactivated natural pozzolan and limestone powder mortar, Constr. Build. Mater. 271(2021)121530. [34] A. Nezamzadeh-Ejhieh, S. Hushmandrad, Solar photodecolorization of methylene blue by CuO/X zeolite as a heterogeneous catalyst, Appl. Catal. A 388(1-2)(2010)149-159. [35] M. Sadeghi, S. Yekta, D. Mirzaei, A novel CuO NPs/AgZSM-5 zeolite composite adsorbent:Synthesis, identification and its application for the removal of sulfur mustard agent simulant, J. Alloys Compd. 748(2018)995-1005. [36] H.Q. Jin, Y. Liu, C.Y. Wang, X.H. Lei, M. Guo, F.Q. Cheng, M. Zhang, Two-step modification towards enhancing the adsorption capacity of fly ash for both inorganic Cu (II) and organic methylene blue from aqueous solution, Environ. Sci. Pollut. Res. Int. 25(36)(2018)36449-36461. [37] J. Mazarío, J.A. Cecilia, E. Rodríguez-Castellon, M.E. Domine, Highly dispersed copper oxide on silica:Towards an efficient catalyst for continuous glycerol dehydration to acetol, Appl. Catal. A 652(2023)119029. [38] I.Y.Y. Bu, R. Huang, Fabrication of CuO-decorated reduced graphene oxide nanosheets for supercapacitor applications, Ceram. Int. 43(1)(2017)45-50. [39] J.L. Cai, H. Gong, The influence of Cu/Al ratio on properties of chemical-vapordeposition-grown p-type CueAleO transparent semiconducting films, J. Appl. Phys. 98(3)(2005)033707. [40] X.Z. Meng, Y. Xu, N.N. Zhang, B.C. Ma, Z.F. Ma, H.L. Han, Ferric hydroxide nanocage triggered Fenton-like reaction to improve amperometric immunosensor, Sens. Actuat. B 338(2021)129840. [41] L.M. Song, S.H. Sun, S.J. Zhang, J.F. Wei, Performance and mechanism of hydrogen evolution from room-temperature thermal catalytic water splitting by a-phase Si3N4, Fuel 324(2022)124576. [42] G.A. Yakaboylu, T. Yumak, K. Sabolsky, E.M. Sabolsky, Effect of high temperature preoxidation treatment on the oxidation behavior of MoSi2- and WSi2eAl2O3 composites, J. Alloys Compd. 816(2020)152499. [43] M.G. Patel, P.G. Marakana, A. Dey, B. Saini, H. Chokshi, Coal fly ash derived adsorbent for enhancing waste water treatment, Mater. Today 77(2023)163-167. [44] M. Visa, A.C. Duta, TiO2/fly ash novel substrate for simultaneous removal of heavy metals and surfactants, Chem. Eng. J. 223(2013)860-868. |