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http://dx.doi.org/10.12989/mwt.2017.8.2.113

Evaluation of the efficiency of cleaning method in direct contact membrane distillation of digested livestock wastewater  

Kim, Sewoon (Department of Environment and Energy, Sejong University)
Park, Ki Young (Department of Civil and Environmental System Engineering, Konkuk University)
Cho, Jinwoo (Department of Environment and Energy, Sejong University)
Publication Information
Membrane and Water Treatment / v.8, no.2, 2017 , pp. 113-123 More about this Journal
Abstract
This study investigated effects of physical and chemical cleaning methods on the initial flux recovery of fouled membrane in membrane distillation process. A laboratory scale direct contact membrane distillation (DCMD) experiment was performed to treat digested livestock wastewater with 3.89 mg/L suspended solids, 874.7 mg/L COD, 543.7 mg/L nitrogen, 15.6 mg/L total phosphorus, and pH of 8.6. A hydrophobic PVDF membrane with an average pore size of $0.22{\mu}m$ and a porosity of 75 % was installed inside a direct contact type membrane distillation module. The temperature difference between feed and permeate side was maintained at $40^{\circ}C$ with the feed and permeate stream velocity of 0.18 m/s. The results showed that the permeate flux decreased from $22.1L{\cdot}m^{-2}{\cdot}hr^{-1}$ to $19.0L{\cdot}m^{-2}{\cdot}hr^{-1}$ after 75 hours of distillation. The fouled membrane was cleaned first by physical flushing and consecutively by chemicals with NaOCl and citric acid. After the physical cleaning the flux was recovered to 92 % as compared with the initial clean water flux of the virgin membrane. Then 94 % of the flux was recovered after cleaning by 2,000 ppm NaOCl for 90 minutes and finally 97 % of flux recovered after 3 % citric acid for 90 minutes. SEM-EDS and FT-IR analysis results presented that the foulants on the membrane surface were removed effectively after each cleaning step. The contact angle measurement showed that the hydrophobicity of the membrane surface was also restored gradually after each cleaning step to reach nearly the same hydrophobicity level as the virgin membrane.
Keywords
membrane distillation; wastewater treatment; membrane cleaning; flux recovery rate;
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1 Warsinger, D.M., Swaminathan, J., Guillen-Burrieza, E. and Arafat, H.A. (2015), "Scaling and fouling in membrane distillation for desalination application: A review", Desalination, 356, 294-313   DOI
2 Woo, Y.C., Lee, J.J., Tijing, L.D., Shon, H.K., Yao, M. and Kim, HS. (2015), "Characteristics of membrane fouling by consecutive chemical cleaning in pressurized ultrafiltration as pre-treatment of seawater desalination", Desalination, 369, 51-61.   DOI
3 Wu, Y., Kong, Y., Liu, J., Zhang, J. and Xu, J. (1991), "An experimental study on membrane distillationcrystallization for treating waste water in taurine production", Desalination, 80(2), 235-242.   DOI
4 Yun, Y., Ma, R., Zhang, W., Fane, A.G. and Li, J. (2006), "Direct contact membrane distillation mechanism for high concentration NaCl solutions", Desalination, 188, 251-262.   DOI
5 Zarebska, A., Nieto, D.R., Christensen, K.V. and Norddahl, B. (2014), "Ammonia recovery from agricultural wastes by membrane distillation: Fouling characterization and mechanism", Water Res., 56, 1-10.   DOI
6 Zoungrana, A., Zengin, I.H., Elcik, H., Yesilirmak, D., Karadag, D. and Cakmakci, M. (2016), "Arsenic removal from drinking water by direct contact membrane distillation", Membr. Water Treat., 7(3), 241-255.   DOI
7 Al-Amoudi, A. and Lovitt, R.W. (2007), "Fouling strategies and the cleaning system of NF membranes and factors affecting cleaning efficiency", J. Membr. Sci., 303, 4-28.   DOI
8 Alkhudhiri, A., Darwish, N. and Hial, N. (2012), "Membrane distillation: a comprehensive review", Desalination, 287, 2-18.   DOI
9 Alves, V. and Coelhoso, I. (2006), "Orange juice concentration by osmotic evaporation and membrane distillation: a comparative study", J. Food Eng., 74(1), 125-133.   DOI
10 Bader, M. (2005), "A hybrid liquid-phase precipitation (LPP) process in conjunction with membrane distillation (MD) for the treatment of the INEEL sodium-bearing liquid waste", J. Hazard. Mater., 121(1), 89-108.   DOI
11 Warsinger, D.M., Swaminathan, J., Guillen-Burrieza, E. and Arafat, H.A. (2015), "Scaling and fouling in membrane distillation for desalination applications: A review", Desalination, 356, 294-311.   DOI
12 Chang, H., Hung, C.Y., Chang, C.L., Cheng, T.W. and Ho C.D. (2015), "Optimization of three small-scale solar membrane distillation desalination systems" Membr. Water Treat., 6(6), 451-476.   DOI
13 Chen, X., Yang, X., Wang, R. and Fane, A.G. (2013), "Performance enhancement and scaling control with gas bubbling in direct contact membrane distillation", Desalination, 308, 47-55.   DOI
14 Curcio, E. and Drioli, E. (2005), "Membrane distillation and related operations-a review", Separ. Purif. Rev., 34(1), 35-86.   DOI
15 Ding, Z., Liu, L., Liu, Z. and Ma, R. (2010), "Fouling resistance in concentrating TCM extract by direct contact membrane distillation", J. Membr. Sci., 362(1), 317-325.   DOI
16 Ding, Z., Liu, L., Liu, Z. and Ma, R. (2011), "The use of intermittent gas bubbling to control membrane fouling in concentrating TCM extract by membrane distillation", J. Membr. Sci., 372, 172-181.   DOI
17 Gryta, M. (2008), "Fouling in direct contact membrane distillation process", J. Membr. Sci., 325, 383-394.   DOI
18 Gryta, M. (2010), "Application of membrane distillation process for tap water purification", Membr. Water Treat., 1(1), 1-12.   DOI
19 Gryta, M. (2012), "Polyphosphate used for membrane scaling inhibition during water desalination by membrane distillation", Desalination, 285, 170-176.   DOI
20 Camacho, L.M., Dumee, L., Zhang, J., Li, J.D., Duke, M., Gomez, J. and Gray, S. (2013), "Advances in membrane distillation for water desalination and purification applications", Water, 5(1), 94-196.   DOI
21 Kim, S., Lee, D.W. and Cho, J. (2016), "Application of direct contact membrane distillation process to treat anaerobic digestate", J. Membr. Sci., 511, 20-28.   DOI
22 Gunko, S., Verbych, S., Bryk, M. and Hilal, N. (2006), "Concentration of apple juice using direct contact membrane distillation", Desalination, 190(1), 117-124.   DOI
23 He, F., Sirkar, K.K. and Gilron, J. (2009), "Effect of antiscalants to mitigate membrane scaling by direct contact membrane distillation", J. Membr. Sci., 345, 53-58.   DOI
24 Hoek, E.M.V., Allred, J., Knoell, T. and Jeong, B.H. (2008), "Modeling the effects of fouling on full-scale reverse osmosis processes", J. Membr. Sci., 314(1-2), 33-49.   DOI
25 Jackson, M., Watson, P.H., Halliday, W.C. and Mantsch, H.H., (1995), "Beware of connective tissue proteins: assignment and implications of collagen absorptions in in- frared spectra of human tissues", Biochimica et Biophysica Acta, 1270, 1-6   DOI
26 Kim, A.S. (2013), "A two-interface transport model with pore-size distribution for predicting the performance of direct contact membrane distillation (DCMD)", J. Membr. Sci., 428, 410-424.   DOI
27 Lagana, F., Barbien, G. and Drioli, E. (2000), "Direct contact membrane distillation: modelling and concentration experiments", J. Membr. Sci., 166, 1-11.   DOI
28 Lawson, K.W. and Lloyd, D.R. (1997), "Membrane distillation", J. Membr. Sci., 124, 1-25.   DOI
29 Lee, J.G., Kim, Y.D., Kim, W.S., Francis, L., Amy, G. and Ghaffour, N. (2015), "Performance modeling of direct contact membrane distillation (DCMD) seawater desalination process using a commercial composite membrane", J. Membr. Sci., 478, 85-95.   DOI
30 Lim, A.L. and Bai, R. (2003), "Membrane fouling and cleaning in microfiltration of activated sludge wastewater", J. Membr. Sci., 216, 279-290.   DOI
31 Shirazi, M.M.A., Kargari, A. and Shirazi, M.J.A. (2012), "Direct contact membrane distillation for seawater desalination", Desalin. Water Treat., 49(1-3), 368-375.   DOI
32 Lin, S., Yip, N.Y. and Elimelech, M. (2014), "Direct contact membrane distillation with heat recovery: Thermodynamic insights from module scale modeling", J. Membr. Sci., 453, 498-515.   DOI
33 Nejati, S., Boo, C., Osuji, C.O. and Elimelech, M. (2015), "Engineering flat sheet microporous PVDF films for membrane distillation", J. Membr. Sci., 492, 355-363.   DOI
34 Pangarkar, B.L., Sane, M.G., Parjane, S.B. and Guddad, M. (2014), "Status of membrane distillation for water and wastewater treatment-A review", Desalin. Water Treat., 52(28-30), 5199-5218.   DOI
35 Rahimpour, A., Madaeni, S.S., Zereshki, S. and Mansourpanah, Y. (2009), "Preparation and characterization of modified nano-porous PVDF membrane with high anti-fouling property using UV photo-grafting", Appl. Surf. Sci., 255, 7455-7461.   DOI
36 Sakai, K., Muroi, T., Ozawa, K., Takesawa, S., Tamura, M. and Nakane, T. (1986), "Extraction of solutefree water from blood by membrane distillation", ASAIO J., 32(1), 397-400.   DOI
37 Tijing, L.D., Woo, Y.C., Choi, J.S., Lee, S., Kim, S.H. and Shon, H.K. (2015), "Fouling and its control in membrane distillation-A review", J. Membr. Sci., 475, 215-244.   DOI
38 Wang, J., Qu, D. Tie, M., Ren, H., Peng, X. and Luan, Z. (2008), "Effect of coagulation pretreatment on membrane distillation process for desalination of recirculation cooling water", Separ. Purif. Tech., 64, 108-115.   DOI
39 Wang, P. and Chung, T.S. (2015), "Recent advances in membrane distillation processes: Membrane development, configuration design and application exploring", J. Membr. Sci., 474, 39-56.   DOI