J. Mater. Sci. Technol. ›› 2024, Vol. 183: 152-164.DOI: 10.1016/j.jmst.2023.09.055
• Review Article • Previous Articles Next Articles
Chin Ho Kirka, Peikui Wangb, Chiang Yon Douglas Chongc, Qi Zhaoa, Jianguo Suna,*, John Wanga,d,*
Received:
2023-04-27
Revised:
2023-09-26
Accepted:
2023-09-28
Published:
2024-06-01
Online:
2023-11-25
Contact:
* E-mail addresses: sjg07@nus.edu.sg (J. Sun), msewangj@nus.edu.sg (J. Wang).
Chin Ho Kirk, Peikui Wang, Chiang Yon Douglas Chong, Qi Zhao, Jianguo Sun, John Wang. TiO2 photocatalytic ceramic membranes for water and wastewater treatment: Technical readiness and pathway ahead[J]. J. Mater. Sci. Technol., 2024, 183: 152-164.
[1] A.J. Haider, Z.N. Jameel, I.H.M. Al-Hussaini Energy Proc. 157 (2019) 17-29 [2] A.L. Linsebigler, G. Lu, J.T. Yates Chem. Rev. 95 (1995) 735-758 [3] M. Mohadesi, M. Sanavi Fard, A. Shokri Int. J. Environ. Anal. Chem (2022), 10.1080/03067319.2022.2064751 [4] B. Bethi, S.H. Sonawane, B.A. Bhanvase, S.P. Gumfekar Chem. Eng. Process. 109 (2016) 178-189 [5] X. Wang, S. Li, P. Chen, F. Li, X. Hu, T. Hua Mater. Today Chem. 23 (2022), Article 100650 [6] A. Sirivallop, T. Areerob, S. Chiarakorn Catalysts, 10 (2020) 251 [7] B. Pant, G.Prasad Ojha, J. Acharya, M. Park Sep. Purif. Technol. 276 (2021), Article 119400 [8] N. Yerli-Soylu, A. Akturk, Ö. Kabak, M. Erol-Taygun, F. Karbancioglu-Guler, S. Küçükbayrak Eng. Sci. Technol, 35 (2022), Article 101175 [9] T.E. Berger, C. Regmi, A.I. Schäfer, B.S. Richards J. Membr. Sci, 604 (2020), Article 118015 [10] H.T. Nguyen, M.-T. Pham, T.-M.T. Nguyen, H.M. Bui, Y.-F. Wang, S.-J. You Sep. Sci. Technol, 57 (2022) 1471-1500 [11] N. Arconada, Y. Castro, A. Durán Appl. Catal. A-Gen. 385 (2010) 101-107 [12] M. Alzamani, A. Shokuhfar, E. Eghdam, S. Mastali Prog. Nat. Sci. 23 (2013) 77-84 [13] L.P.R. Pala, V. Uday, D. Gogoi, N.R. Peela J. Environ. Chem. Eng. 8 (2020), Article 104267 [14] A.K. Ray, A.A.C.M. Beenackers Catal. Today, 40 (1998) 73-83 [15] S. Leong, A. Razmjou, K. Wang, K. Hapgood, X. Zhang, H. Wang J. Membr. Sci. 472 (2014) 167-184 [16] S. Riaz, S.-J. Park J. Ind. Eng. Chem, 84 (2020) 23-41 [17] W.S. Koe, J.W. Lee, W.C. Chong, Y.L. Pang, L.C. Sim Environ. Sci. Pollut. Res. 27 (2020) 2522-2565 [18] N. Gao, Y. Zhang, L. Wang, X. Wang, J. Liu, F. Liang Ceram. Int. 48 (2022) 23697-23705 [19] Y. Gao, W. Hao, G. Xu, C. Wang, X. Gu, P. Zhao Ceram. Int. 48 (2022) 9426-9433 [20] R. Ahmad, C.S. Lee, J.H. Kim, J. Kim Chem. Eng. Res. Des, 163 (2020) 138-148 [21] H. Zhang, A.U. Mane, X. Yang, Z. Xia, E.F. Barry, J. Luo, Y. Wan, J.W. Elam, S.B. Darling Adv. Funct. Mater. 30 (2020), Article 2002847 [22] Y. Kang, S. Jiao, Y. Zhao, B. Wang, Z. Zhang, W. Yin, Y. Tan, G. Pang Sep. Purif. Technol. 248 (2020), Article 117000 [23] W. Aloulou, H. Aloulou, R.Ben Amar Desalination Water Treat. 246 (2022) 166-173 [24] Z. He, Z. Lyu, Q. Gu, L. Zhang, J. Wang, Colloid Surf A-Physicochem. Eng. Asp. 578 (2019), Article 123513 [25] S. Deepracha, L. Atfane, A. Ayral, M. Ogawa Sep. Purif. Technol. 262 (2021), Article 118307 [26] L.T. Nyamutswa, B. Zhu, S.F. Collins, D. Navaratna, M.C. Duke J. Membr. Sci. 604 (2020), Article 118018 [27] P.H. Presumido, L.F. dos Santos, T. Neuparth, M.M. Santos, M. Feliciano, A. Primo, H. Garcia, M. B-Đolić, V.J.P. Vilar Chem. Eng. J. 430 (2022), Article 132639 [28] L. Zhang, T.C.A. Ng, X. Liu, Q. Gu, Y. Pang, Z. Zhang, Z. Lyu, Z. He, H.Y. Ng, J. Wang Appl. Catal. B-Environ. 264 (2020), Article 118528 [29] J. Zhang, M. Yan, G. Sun, K. Liu Sep. Purif. Technol. 272 (2021), Article 118888 [30] Y. Fan, S. Chen, H. Zhao, Y. Liu Desalination, 405 (2017) 51-58 [31] D. Xu, X. Luo, P. Jin, J. Zhu, X. Zhang, J. Zheng, L. Yang, X. Zhu, H. Liang, B. Van der Bruggen Water Res. 215 (2022), Article 118264 [32] F.E. Bortot Coelho, D. Deemter, V.M. Candelario, V. Boffa, S. Malato, G. Magnacca J. Environ. Chem. Eng. 9 (2021), Article 106671 [33] D. Li, H. Wang, W. Jing, Y. Fan, W. Xing J. Colloid Interface Sci. 433 (2014) 43-48 [34] Y.-X. Li, P. Li, Y.-Z. Wu, Z.-L. Xu, M.-L. Huang Ceram. Int. 47 (2021) 2180-2186 [35] Y. Cai, Y. Wang, X. Chen, M. Qiu, Y. Fan J. Membr. Sci. 476 (2015) 432-441 [36] Y. Lu, T. Chen, X. Chen, M. Qiu, Y. Fan J. Membr. Sci, 514 (2016) 476-486 [37] H. Chen, S. Wu, X. Jia, S. Xiong, Y. Wang AICHE J. 64 (2018) 2670-2678 [38] P. Puhlfürß, A. Voigt, R. Weber, M. Morbé J. Membr. Sci. 174 (2000) 123-133 [39] F. Azadi, A. Karimi-Jashni, M.M. Zerafat, S. Saadat Environ. Technol. Innov. 22 (2021), Article 101423 [40] M. Borlaf, R. Moreno Open Ceram. 8 (2021), Article 100200 [41] C.G. Guizard, A.C. Julbe, A. Ayral J. Mater. Chem. 9 (1999) 55-65 [42] J.D. Mackenzie J. Non-Cryst. Solids, 100 (1988) 162-168 [43] J. Sekulic, J.E. ten Elshof, D.H.A. Blank J. Sol-Gel Sci. Technol. 31 (2004) 201-204 [44] T. Van Gestel, C. Vandecasteele, A. Buekenhoudt, C. Dotremont, J. Luyten, R. Leysen, B. Van der Bruggen, G. Maes J. Membr. Sci. 207 (2002) 73-89 [45] C.G. Xia, F. Wu, Z.J. Meng, F.Q. Li, D.K. Peng, G.Y. Meng J. Membr. Sci. 116 (1996) 9-16 [46] M.A. Cameron, I.P. Gartland, J.A. Smith, S.F. Diaz, S.M. George Langmuir, 16 (2000) 7435-7444 [47] H. Chen, X. Jia, M. Wei, Y. Wang J. Membr. Sci, 528 (2017) 95-102 [48] J. Canning, G. Huyang, M. Ma, A. Beavis, D. Bishop, K. Cook, A. McDonagh, D. Shi, G.-D. Peng, M. Crossley Nanomaterials, 4 (2014) 157-174 [49] C.S. Ong, W.J. Lau, P.S. Goh, B.C. Ng, A.F. Ismail Desalination, 353 (2014) 48-56 [50] N. Saffaj, S. Alami Younssi, A. Albizane, A. Messouadi, M. Bouhria, M. Persin, M. Cretin, A. Larbot Sep. Purif. Technol. 36 (2004) 107-114 [51] A. Bouazizi, M. Breida, B. Achiou, M. Ouammou, J.I. Calvo, A. Aaddane, S.A. Younssi Appl. Clay Sci. 149 (2017) 127-135 [52] R.M. Huertas, M.C. Fraga, J.G. Crespo, V.J. Pereira Sep. Purif. Technol, 180 (2017) 69-81 [53] Z. Jin, Y. Shen, X. Chen, M. Qiu, Y. Fan Appl. Surf. Sci. 610 (2023), Article 155468 [54] L. Muszkat, L. Feigelson, L. Bir, K.A. Muszkat J. Photochem. Photobiol. B-Biol. 60 (2001) 32-36 [55] Z. Boldogkői, Z. Csabai, D. Tombácz, L. Janovák, L. Balassa, Á. Deák, P.S. Tóth, C. Janáky, E. Duda, I. Dékány Front. Bioeng. Biotechnol, 9 (2021), Article 709462 [56] A. Golshenas, Z. Sadeghian, S.N. Ashrafizadeh J. Water Process. Eng. 36 (2020), Article 101186 [57] H. Mao, J. Bu, M. Qiu, D. Ding, X. Chen, H. Verweij, Y. Fan J. Membr. Sci. 581 (2019) 28-37 [58] D. Lu, T. Zhang, L. Gutierrez, J. Ma, J.-P. Croué Environ. Sci. Technol. 50 (2016) 4668-4674 [59] S.S. Marzouk, V. Naddeo, F. Banat, S.W. Hasan Chemosphere, 273 (2021), Article 129684 [60] M. Yeber, E. Paul, C. Soto Desalin. Water Treat, 47 (2012) 295-299 [61] X. Wang, J. Wang, J. Zhang, B. Louangsouphom, J. Song, X. Wang, J. Zhao J. Photochem. Photobiol. A-Chem. 347 (2017) 105-115 [62] A. Tkaczyk, K. Mitrowska, A. Posyniak Sci. Total Environ. 717 (2020), Article 137222 [63] T. Van Gestel, C. Vandecasteele, A. Buekenhoudt, C. Dotremont, J. Luyten, R. Leysen, B. Van der Bruggen, G. Maes J. Membr. Sci. 209 (2002) 379-389 [64] N.C. Fontão, L.N. Ferrari, J.C. Sapatieri, K. Rezwan, M. Wilhelm Membranes, 12 (2022) 175 [65] I.H. Cho, Y.G. Kim, J.K. Yang, N.H. Lee, S.-M. Lee J. Environ. Sci. Health Part A-Toxic/Hazard. Subst. Environ. Eng, 41 (2006) 457-473 [66] W. Yuan, A.L. Zydney J. Membr. Sci. 157 (1999) 1-12 [67] C.H. Kirk, Q. Gu, T.C.A. Ng, S.C. Tan, H.Y. Ng, J. Wang J. Am. Ceram. Soc. 105 (2022) 6554-6569 [68] R. Goei, T.-T. Lim Water Res. 59 (2014) 207-218 [69] Y. Jang, B. Yang, J. Shin, J. An Thin Solid Films, 642 (2017) 151-156 [70] S. Meng, W. Fan, X. Li, Y. Liu, D. Liang, X. Liu Water Res. 143 (2018) 38-46 [71] M.B. Asif, Z. Zhang Chem. Eng. J. 418 (2021), Article 129481 [72] Q. Gu, T.C.A. Ng, W. Poh, C.H. Kirk, Z. Lyu, L. Zhang, J. Wang, H.Y. Ng Water Res. 220 (2022), Article 118661 [73] H.N.C. Dharma, J. Jaafar, N. Widiastuti, H. Matsuyama, S. Rajabsadeh, M.H.D. Othman, M.A. Rahman, N.N.M. Jafri, N.S. Suhaimin, A.M. Nasir, N.H. Alias Membranes, 12 (2022) 345 |
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