Preparation and characterization of carboxylated multiwalled carbon nanotube/polyamide composite nanofiltration membranes with improved performance
Corresponding Author
Hongbin Li
School of Textile Engineering, Henan Engineering Laboratory of New Textile Development, Henan University of Engineering, Zhengzhou, 450007 People's Republic of China
Correspondence to: H. Li (E-mail: [email protected])Search for more papers by this authorWenying Shi
School of Textile Engineering, Henan Engineering Laboratory of New Textile Development, Henan University of Engineering, Zhengzhou, 450007 People's Republic of China
Search for more papers by this authorYuheng Su
School of Textile Engineering, Henan Engineering Laboratory of New Textile Development, Henan University of Engineering, Zhengzhou, 450007 People's Republic of China
Search for more papers by this authorHaixia Zhang
School of Textile Engineering, Henan Engineering Laboratory of New Textile Development, Henan University of Engineering, Zhengzhou, 450007 People's Republic of China
Search for more papers by this authorXiaohong Qin
School of Textile Engineering, Henan Engineering Laboratory of New Textile Development, Henan University of Engineering, Zhengzhou, 450007 People's Republic of China
School of Textile Science, Donghua University, Shanghai, 201620 People's Republic of China
Search for more papers by this authorCorresponding Author
Hongbin Li
School of Textile Engineering, Henan Engineering Laboratory of New Textile Development, Henan University of Engineering, Zhengzhou, 450007 People's Republic of China
Correspondence to: H. Li (E-mail: [email protected])Search for more papers by this authorWenying Shi
School of Textile Engineering, Henan Engineering Laboratory of New Textile Development, Henan University of Engineering, Zhengzhou, 450007 People's Republic of China
Search for more papers by this authorYuheng Su
School of Textile Engineering, Henan Engineering Laboratory of New Textile Development, Henan University of Engineering, Zhengzhou, 450007 People's Republic of China
Search for more papers by this authorHaixia Zhang
School of Textile Engineering, Henan Engineering Laboratory of New Textile Development, Henan University of Engineering, Zhengzhou, 450007 People's Republic of China
Search for more papers by this authorXiaohong Qin
School of Textile Engineering, Henan Engineering Laboratory of New Textile Development, Henan University of Engineering, Zhengzhou, 450007 People's Republic of China
School of Textile Science, Donghua University, Shanghai, 201620 People's Republic of China
Search for more papers by this authorABSTRACT
Polyamide thin-film composite nanofiltration (NF) membranes were prepared via the interfacial polymerization (IP) process of piperazine and 1,3,5-trimesoyl chloride on the polysulfone/nonwoven fabric ultrafiltration membrane surface. Carboxylated multiwalled carbon nanotubes (cMWNTs) were incorporated into the aqueous phase during the IP process to improve the membrane performance. The composition and morphology of the membrane surface were examined by means of attenuated total reflectance–Fourier transform infrared spectroscopy, scanning electron microscopy–energy dispersive spectrometry, and atomic force microscopy. The effects of the cMWNTs content on the membrane hydrophilicity, separation performance, and antifouling properties were characterized through water contact angle and crossflow filtration measurements. The experimental results show that membrane surface hydrophilicity, water permeability, salt rejection (R), and antifouling properties all improved. In particular, when the cMWNTs content was 50 ppm, the magnesium sulfate R of the composite NF membrane reached a maximum value of 98.5%; meanwhile, the membrane obtained an obviously enhanced water flux (62.1 L m−2 h−1 at 0.7 MPa), which was two times larger than that of the original NF membrane. The modified NF membranes showed enhanced antifouling properties; this was mainly attributed to changes in the microstructures and surface features of the polyamide layer after the addition of the cMWNTs. © 2017 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2017, 134, 45268.
REFERENCES
- 1 Chen, P. L.; Ma, X.; Zhong, Z. X.; Zhang, F.; Xing, W. H.; Fan, Y. Q. Desalination 2017, 404, 102.
- 2 Zha, S. W.; Gusnawan, P.; Zhang, G. Y.; Liu, N.; Lee, R.; Yu, J. J. J. Ind. Eng. Chem. 2016, 44, 118.
- 3 Conidi, C.; Cassano, A.; Caiazzo, F.; Drioli, E. J. Food Eng. 2017, 195, 1.
- 4 Peeva, L.; Burgal, J. D. S.; Valtcheva, I.; Livingston, A. G. Chem. Eng. Sci. 2014, 116, 183.
- 5 Cicci, A.; Stoller, M.; Bravi, M. Water Res. 2013, 47, 4710.
- 6 Bruggen, B. V. D.; Mänttäri, M.; Nyström, M. Sep. Purif. Technol. 2008, 63, 251.
- 7 Roha, I. J.; Greenberg, A. R.; Khare, V. P. Desalination 2006, 191, 279.
- 8 Li, Y. F.; Su, Y. L.; Dong, Y. N.; Zhao, X. T.; Jiang, Z. Y.; Zhang, R. N.; Zhao, J. J. Desalination 2014, 333, 59.
- 9 Tang, Y. J.; Xu, Z. L.; Xue, S. M.; Wei, Y. M.; Yang, H. J. Membr. Sci. 2016, 498, 374.
- 10 Li, W.; Bian, C. Y.; Fu, C. X.; Zhou, A. Y.; Shi, C.; Zhang, J. L. J. Membr. Sci. 2016, 504, 185.
- 11 Ma, T. Y.; Su, Y. L.; Li, Y. F.; Zhang, R. N.; Liu, Y. N.; He, M. R.; Li, Y.; Dong, N. X.; Wu, H.; Jiang, Z. Y. J. Membr. Sci. 2016, 503, 101.
- 12 Zhou, B. W.; Zhang, H. Z.; Xu, Z. L.; Tang, Y. J. Desalination 2016, 394, 176.
- 13 Ahmed, S. F.; Khalid, M.; Rashmi, W.; Chan, A.; Shahbaz, K. Renew. Sust. Energy Rev. 2017, 67, 450.
- 14 Li, Q.; Wang, Y. A.; Song, J.; Guan, Y. P.; Yu, H.; Pan, X. H.; Wu, F. Y.; Zhang, M. Appl. Surf. Sci. 2015, 324, 757.
- 15 Zhang, H.; Mao, H.; Wang, J.; Ding, R.; Du, Z. J. Membr. Sci. 2014, 470, 70.
- 16 Mohammad, A. W.; Teow, Y. H.; Ang, W. L.; Chung, Y. T.; Oatley-Radcliffe, D. L.; Hilal, N. Desalination 2015, 356, 226.
- 17 Ding, R.; Zhang, H. Q.; Li, Y. F.; Wang, J. T.; Shi, B. B.; Mao, H.; Dang, J. C.; Liu, J. D. Chem. Eng. Sci. 2015, 138, 227.
- 18 Yin, J.; Zhu, G. C.; Deng, B. L. J. Membr. Sci. 2013, 437, 237.
- 19 Ghaemi, N.; Madaeni, S. S.; Daraei, P.; Rajabi, H.; Shojaeimehr, T.; Rahimpour, F.; Shirvani, B. J. Hazard. Mater. 2015, 298, 111.
- 20 Khalid, A.; Al-Juhani, A. A.; Al-Hamouz, O. C.; Laoui, T.; Khan, Z.; Atieh, M. A. Desalination 2015, 367, 134.
- 21 Qiu, S.; Wu, L. G.; Pan, X. J.; Zhang, L.; Chen, H. L.; Gao, C. J. J. Membr. Sci. 2009, 342, 22.
- 22 Vatanpour, V.; Esmaeili, M.; Davood, M. H.; Farahani, A. J. Membr. Sci. 2014, 466, 70.
- 23 Daraei, P.; Madaeni, S. S.; Ghaemi, N.; Monfared, H. A.; Khadivi, M. A. Sep. Purif. Technol. 2013, 104, 32.
- 24 Wu, H. Q.; Tang, B. B.; Wu, P. Y. J. Membr. Sci. 2013, 428, 425.
- 25 Shen, J. N.; Yu, C. C.; Ruan, H. M.; Gao, C. J.; Bruggen, B. V. J. Membr. Sci. 2013, 442, 18.
- 26 Sahoo, N. G.; Ranab, S.; Cho, J. W.; Li, L.; Chan, S. H. Prog. Polym. Sci. 2010, 35, 837.
- 27 Salehi, E.; Madaeni, S. S.; Rajabi, L.; Vatanpour, V.; Derakhshan, A. A.; Zinadini, S.; Ghorabi, S.; Ahmadi Monfared, H. Sep. Purif. Technol. 2012, 89, 309.
- 28 Chiang, Y. C.; Chang, Y.; Chuang, C. J.; Ruaan, R. C. J. Membr. Sci. 2012, 389, 76.
- 29 Shao, L.; Cheng, X. O.; Liu, Y.; Quan, S.; Ma, J.; Zhao, S. Z.; Wang, K. Y. J. Membr. Sci. 2013, 430, 96.
- 30 Meng, J. Q.; Yuan, T.; Kurth, C. J.; Shi, Q.; Zhang, Y. F. J. Membr. Sci. 2012, 401, 109.
- 31 Fersi, C.; Gzara, L.; Dhahbi, M. Desalination 2009, 244, 321.
- 32 Gui, Z. L.; Qian, J. W.; Zhao, Q.; Ji, Y. L.; Liu, Y. X.; Liu, T.; An, Q. F. Colloids Surf. A 2011, 380, 270.
- 33 Yan, F.; Chen, H.; Lü, Y.; Lü, Z. H.; Yu, S. C.; Liu, M. H.; Gao, C. J. J. Membr. Sci. 2016, 513, 108.
- 34 Ni, L.; Meng, J. Q.; Li, X. G.; Zhang, Y. F. J. Membr. Sci. 2014, 451, 205.
- 35 Fathizadeh, M.; Aroujalian, A.; Raisi, A. J. Membr. Sci. 2011, 375, 88.
- 36 Safarpour, M.; Khataee, A.; Vatanpour, V. J. Membr. Sci. 2015, 489, 34.
- 37 Li, Q.; Xu, Z. L.; Liu, M. Adv. Polym. Technol. 2009, 22, 520.
- 38 Tanakaa, N.; Nishikioria, H.; Kubotaa, S.; Endob, M.; Fuji, T. Carbon 2009, 47, 2752.
- 39 Chen, L. F.; Yu, W.; Xie, H. Q. Powder Technol. 2012, 231, 18.
- 40 Niasari, M. S.; Badiei, A.; Saberyan, K. Chem. Eng. J. 2011, 173, 651.
- 41 Fan, X. C.; Dong, Y. N.; Su, Y. L.; Zhao, X. T.; Li, Y. F.; Liu, J. Z.; Jiang, Z. Y. J. Membr. Sci. 2014, 452, 90.
- 42 Liu, Y.; He, B. Q.; Li, J. X.; Sanderson, R. D.; Li, L.; Zhang, S. B. J. Membr. Sci. 2011, 373, 98.
- 43 Jin, J. B.; Liu, D. Q.; Zhang, D. D.; Yin, Y. H.; Zhao, X. Y.; Zhang, Y. F. Desalination 2015, 355, 141.
- 44 Wang, Q.; Zhang, G. S.; Li, Z. S.; Deng, S.; Chen, H.; Wang, P. Desalination 2014, 352, 38.
- 45 Pourjafar, S.; Rahimpour, A.; Jahanshahi, M. J. Ind. Eng. Chem. 2012, 18, 1398.
- 46 Bai, X.; Zhang, Y. T.; Wang, H.; Zhang, H. Q.; Liu, J. D. Desalination 2013, 313, 57.
- 47 Jin, L. M.; Yu, S. L.; Shi, W. X.; Yi, X. S.; Sun, N.; Ge, Y. L.; Ma, C. Polymer 2012, 53, 5295.
- 48 Li, Q.; Li, Z. K.; Yu, H.; Pan, X. H.; Wang, X. L.; Wang, Y. H.; Song, J. Desalination 2013, 327, 24.
- 49 Roy, S.; Ntim, S. A.; Mitra, S.; Sirkar, K. J. Membr. Sci. 2011, 375, 81.
- 50 Safarpour, M.; Vatanpour, V.; Khataee, A.; Esmaeili, M. Sep. Purif. Technol. 2015, 154, 96.
- 51 Wu, M. B.; Lv, Y.; Yang, H. C.; Liu, L. F.; Zhang, X.; Xu, Z. K. J. Membr. Sci. 2016, 515, 238.
- 52 Shi, Q.; Meng, J. Q.; Xu, R. S.; Du, X. L.; Zhang, Y. F. J. Membr. Sci. 2013, 444, 50.
- 53 Chung, Y. T.; Mahmoudi, E.; Mohammad, A. W.; Benamor, A.; Johnson, D.; Hilal, N. Desalination 2017, 402, 123.
- 54 Mokhtari, S.; Rahimpour, A.; Shamsabadi, A. A.; Habibzadeh, S.; Soroush, M. Appl. Surf. Sci. 2017, 393, 93.