Water Reclamation from Primary Municipal Wastewater Treatment Plant Effluent by Membrane Distillation

Authors

  • Quynh-Mai Nguyen Ho Chi Minh City University of Technology and Education, Vietnam

Corressponding author's email:

mainq@hcmute.edu.vn

DOI:

https://doi.org/10.54644/jte.77.2023.1389

Keywords:

Membrane distillation (MD), Water reclamation, Primary MWWTP effluent, Pretreatment, Membrane cleaning

Abstract

In this work, Direct Contact Membrane Distillation (DCMD) was applied for the treatment of municipal wastewater collected from the primary clarifier of a municipal wastewater treatment plant (MWWTP). The water flux at 60℃ and 20℃ for the feed and permeate side, respectively was 51 kg/m2h in treating the primary effluent. Meanwhile, the electrical conductivity of distillate was in the good range at 1.5 – 1.8 S/cm. Most of the representative parameters for water reuse (SS, nitrate, nitrite, phosphate, total coliform, and turbidity) in the primary effluent were completely removed in MD module operation with PTFE (polytetrafluoroethylene)/ PP (polypropylene) bi-composite membrane. However, limited rejection rate was observed only in ammonia removal due to the volatility of ammonia. Pretreatment of the primary MWWTP effluent by NaOCl showed only 15% decline in water flux for 28 hours of continuous operation. Periodic membrane cleaning with 3% HCl applied for non-pretreated feed recovered initial permeate flux up to 80 - 95% and yielded highly purified distillate in long-term operation of MD system.

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Author Biography

Quynh-Mai Nguyen, Ho Chi Minh City University of Technology and Education, Vietnam

Quynh-Mai Nguyen received the B.E. degree in Environmental Engineering from Ho Chi Minh City University of Technology, Vietnam, in 2006; the M.S. degree in Environmental Technology from Ho Chi Minh City University of Technology, Vietnam, in 2009; the Ph.D. degree in Energy and Environment Engineering from University of Science and Technology (UST), Republic of Korea, in 2015.

From 2015 to 2017, she was a Post-Doc scholar at Korea Institute of Science and Technology (KIST), Republic of Korea. From 2019 to 2020, she was a Research Professor in Dankook University, Republic of Korea. She is currently a Lecturer at the Faculty in Chemical and Food Technology, Ho Chi Minh City University of Technology and Education, Ho Chi Minh City, Vietnam.

Her research focuses on membrane technologies applied for water and wastewater treatment, environmental materials from agro-food by-products and hydrogen energy. Email: mainq@hcmute.edu.vn.

References

A. Alkhudhiri, N. Darwish, and N. Hilal, "Membrane distillation: A comprehensive review," Desalination, vol. 287, pp. 2-18, 2012.

M. Khayet, "Membranes and theoretical modeling of membrane distillation: A review," Advances in Colloid and Interface Science, vol. 164, no. 1, pp. 56-88, 2011.

M. S. El-Bourawi, Z. Ding, R. Ma, and M. Khayet, "A framework for better understanding membrane distillation separation process," Journal of Membrane Science, vol. 285, no. 1, pp. 4-29, 2006.

M. Hassan, E. Summers, H. Arafat, and J. V, "Effects of membrane properties on water production cost in small scale membrane distillation systems," Desalination, vol. 306, pp. 60–71, 2012.

M. Khayet, C. Cojocaru, and M. C. García-Payo, "Experimental design and optimization of asymmetric flat-sheet membranes prepared for direct contact membrane distillation," Journal of Membrane Science, vol. 351, pp. 234-245, 2010.

E. Curcio and E. Drioli, "Membrane Distillation and Related Operations-A Review," Separation & Purification Reviews, vol. 34, no. 1, pp. 35-86, 2005.

A. Alkhudhiri, N. Darwish, and N. Hilal, "Produced water treatment: Application of Air Gap Membrane Distillation," Desalination, vol. 309, pp. 46-51, 2013.

R. Asadi et al., "Solar desalination of Gas Refinery wastewater using membrane distillation process," Desalination, vol. 291, pp. 56–64, 2012.

M. Krivorot, A. Kushmaro, Y. Oren, and J. Gilron, "Factors affecting biofilm formation and biofouling in membrane distillation of seawater," Fuel and Energy Abstracts, vol. 376, pp. 15-24, 2011.

T. H. Khaing, J. Li, Y. Li, N. Wai, and F. Wong, "Feasibility study on petrochemical wastewater treatment and reuse using a novel submerged membrane distillation bioreactor," Separation and Purification Technology - SEP PURIF TECHNOL, vol. 74, pp. 138-143, 2010.

F. Vaillant et al., "Concentration of passion fruit juice on an industrial pilot scale using osmotic evaporation," Journal of Food Engineering, vol. 47, no. 3, pp. 195-202, 2001.

M. Khayet, "Solar desalination by membrane distillation: Dispersion in energy consumption analysis and water production costs (a review)," Desalination, vol. 308, pp. 89-101, 2013.

M. R. Qtaishat and F. Banat, "Desalination by solar powered membrane distillation systems," Desalination, vol. 308, pp. 186-197, 2013.

H. Susanto, "Towards practical implementations of membrane distillation," Chemical Engineering and Processing: Process Intensification, vol. 50, pp. 139-150, 2011.

J. Blanco Galvez, L. García-Rodríguez, and I. Martín-Mateos, "Seawater desalination by an innovative solar-powered membrane distillation system: The MEDESOL project," Desalination, vol. 246, pp. 567-576, 2009.

S. Srisurichan, R. Jiraratananon, and A. G. Fane, "Humic acid fouling in the membrane distillation process," Desalination, vol. 174, pp. 63-72, 2005.

M. Gryta, "The assessment of microorganism growth in the membrane distillation system," Desalination, vol. 142, no. 1, pp. 79-88, 2002.

M. Gryta, M. Tomaszewska, J. Grzechulska, and A. W. Morawski, "Membrane distillation of NaCl solution containing natural organic matter," Journal of Membrane Science, vol. 181, no. 2, pp. 279-287, 2001.

Korean Ministry of Environment, "Korean standard methods for the examination of water and wastewater," 2002, doi: 10.54644/jte.77.2023.1389

N. Q. Mai and S. Lee, "Fouling analysis and control in a DCMD process for SWRO brine," Desalination, vol. 367, pp. 21-27, 2015.

N. Q. Mai, S. Jeong, and S. Lee, "Characteristics of membrane foulants at different degrees of SWRO brine concentration by membrane distillation," Desalination, vol. 409, pp. 7-20, 2017.

Z. Ding, L. Liu, Z. Li, R. Ma, and Z. Yang, "Experimental Study of Ammonia Removal from Water by Membrane Distillation (MD): The Comparison of Three Configurations," Journal of Membrane Science - J MEMBRANE SCI, vol. 286, pp. 93-103, 2006.

Z. Xie, T. Duong, M. Hoang, C. Nguyen, and B. Bolto, "Ammonia removal by sweep gas membrane distillation," Water Research, vol. 43, no. 6, pp. 1693-1699, 2009.

Z. Zhou, X. He, M. Zhou, and F. Meng, "Chemically induced alterations in the characteristics of fouling-causing bio-macromolecules – Implications for the chemical cleaning of fouled membranes," Water Research, vol. 108, pp. 115-123, 2017.

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Published

28-06-2023

How to Cite

[1]
Q.-M. Nguyen, “Water Reclamation from Primary Municipal Wastewater Treatment Plant Effluent by Membrane Distillation”, JTE, vol. 18, no. 3, pp. 21–28, Jun. 2023.

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Research Article

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