240
A. Z. Yaser and N. N. Safie
Ma, W., et al. (2018). Biotoxicity assessment and toxicity mechanism on coal gasification wastewater
(CGW): A comparative analysis of effluent from different treatment processes. Science of the Total
Environment, 637–638, 1–8.
Mahapatra, D., Hoysall, C., & Ramachandra, T. V. (2013). Euglena sp. as a suitable source of lipids
for potential use as biofuel and sustainable wastewater treatment. Journal of Applied Phycology,
25.
Mahendran, B., Lin, H., Liao, B., & Liss, S. N. (2011). Surface properties of biofouled membranes
from a submerged anaerobic membrane bioreactor after cleaning. Journal of Environmental Engineering, 137(6), 504–513.
Makropoulos, C. K., & Butler, D. (2010). Distributed water infrastructure for sustainable communities. Water Resource Management, 24(11), 2795–2816.
March, J., Gual, M., & Orozco, F. (2004). Experiences on greywater re-use for toilet flushing in a
hotel (Mallorca Island, Spain). Desalination, 164(3), 241–247.
Margot, J., Rossi, L., Barry, D. A., & Holliger, C. (2015). A review of the fate of micropollutants
in wastewater treatment plants. Wiley Interdisciplinary Reviews: Water, 2(5), 457–487.
Martinez-Sosa, D., Helmreich, B., Netter, T., Paris, S., Bischof, F., & Horn, H. (2011). Pilotscale anaerobic submerged membrane bioreactor (AnSMBR) treating municipal wastewater: The
fouling phenomenon and long-term operation. Water Science and Technology, 64(9), 1804–1811.
Massoud, M. A., Tarhini, A., & Nasr, J. A. (2009). Decentralized approaches to wastewater treatment
and management: Applicability in developing countries. Journal of Environmental Management,
90(1), 652–659.
Matsumoto, M. R., Galeziewski, T. M., Tchobanoglous, G., & Ross, D. S. (1982). Filtration of
primary effluent. Journal of Water Pollution Control Federation, 54(12), 1581–1591.
McCutcheon, S. C., & Jørgensen, S. E. (2008). Phytoremediation. Encyclopedia of Ecology,
568–582.
McLaughlin, M. J., Hamon, R. E., McLaren, R. G., Speir, T. W., & Rogers, S. L. (2000). Review: A
bioavailability-based rationale for controlling metal and metalloid contamination of agricultural
land in Australia and New Zealand. Australian Journal of Soil Research, 38(6), 1037–1086.
Meng, F., Chae, S. R., Drews, A., Kraume, M., Shin, H. S., & Yang, F. (2009). Recent advances
in membrane bioreactors (MBRs): Membrane fouling and membrane material. Water Research,
43(6), 1489–1512.
Metcalf & Eddy. (2003). Wastewater engineering : Treatment and reuse (4th ed.). Boston: McGrawHill.
Mo, W., & Zhang, Q. (2012). Can municipal wastewater treatment systems be carbon neutral?
Journal of Environmental Management, 112, 360–367.
Molinuevo-Salces, B., Mahdy, A., Ballesteros, M., & González-Fernández, C. (2016). From piggery
wastewater nutrients to biogas: Microalgae biomass revalorization through anaerobic digestion.
Renewable Energy 96.
Nie, Y., Chen, R., Tian, X., & Li, Y. Y. (2017). Impact of water characteristics on the bioenergy
recovery from sewage treatment by anaerobic membrane bioreactor via a comprehensive study
on the response of microbial community and methanogenic activity. Energy, 139, 459–467.
Nie, C., Pei, H., Jiang, L., Cheng, J., & Han, F. (2018). Growth of large-cell and easily-sedimentation
microalgae Golenkinia SDEC-16 for biofuel production and campus sewage treatment. Renewable Energy, 122, 517–525.
Noyes, R. (1994). Unit operations in environmental engineering. New York: Noyes Publications.
Odegaard, H., Rusten, B., & Westrum, T. (1994). A new moving bed biofilm reactor—applications
and results. Water Science and Technology, 29(10–11), 157–165.
Papadopoulos, I. (1995). Wastewater management for agriculture protection in the Near East Region.
Technical Bulletin, FAO, Regional Office for the Near East, Cairo, Egypt.
Philippot, L., Raaijmakers, J. M., Lemanceau, P., & van der Putten, W. H. (2013). Going back to
the roots: The microbial ecology of the rhizosphere. Nature Reviews Microbiology, 11, 789.
Posadas, E. et al. (2017). Microalgae cultivation in wastewater. Microalgae-Based Biofuels and
Bioproducts, 67–91.
A. Z. Yaser and N. N. Safie
Ma, W., et al. (2018). Biotoxicity assessment and toxicity mechanism on coal gasification wastewater
(CGW): A comparative analysis of effluent from different treatment processes. Science of the Total
Environment, 637–638, 1–8.
Mahapatra, D., Hoysall, C., & Ramachandra, T. V. (2013). Euglena sp. as a suitable source of lipids
for potential use as biofuel and sustainable wastewater treatment. Journal of Applied Phycology,
25.
Mahendran, B., Lin, H., Liao, B., & Liss, S. N. (2011). Surface properties of biofouled membranes
from a submerged anaerobic membrane bioreactor after cleaning. Journal of Environmental Engineering, 137(6), 504–513.
Makropoulos, C. K., & Butler, D. (2010). Distributed water infrastructure for sustainable communities. Water Resource Management, 24(11), 2795–2816.
March, J., Gual, M., & Orozco, F. (2004). Experiences on greywater re-use for toilet flushing in a
hotel (Mallorca Island, Spain). Desalination, 164(3), 241–247.
Margot, J., Rossi, L., Barry, D. A., & Holliger, C. (2015). A review of the fate of micropollutants
in wastewater treatment plants. Wiley Interdisciplinary Reviews: Water, 2(5), 457–487.
Martinez-Sosa, D., Helmreich, B., Netter, T., Paris, S., Bischof, F., & Horn, H. (2011). Pilotscale anaerobic submerged membrane bioreactor (AnSMBR) treating municipal wastewater: The
fouling phenomenon and long-term operation. Water Science and Technology, 64(9), 1804–1811.
Massoud, M. A., Tarhini, A., & Nasr, J. A. (2009). Decentralized approaches to wastewater treatment
and management: Applicability in developing countries. Journal of Environmental Management,
90(1), 652–659.
Matsumoto, M. R., Galeziewski, T. M., Tchobanoglous, G., & Ross, D. S. (1982). Filtration of
primary effluent. Journal of Water Pollution Control Federation, 54(12), 1581–1591.
McCutcheon, S. C., & Jørgensen, S. E. (2008). Phytoremediation. Encyclopedia of Ecology,
568–582.
McLaughlin, M. J., Hamon, R. E., McLaren, R. G., Speir, T. W., & Rogers, S. L. (2000). Review: A
bioavailability-based rationale for controlling metal and metalloid contamination of agricultural
land in Australia and New Zealand. Australian Journal of Soil Research, 38(6), 1037–1086.
Meng, F., Chae, S. R., Drews, A., Kraume, M., Shin, H. S., & Yang, F. (2009). Recent advances
in membrane bioreactors (MBRs): Membrane fouling and membrane material. Water Research,
43(6), 1489–1512.
Metcalf & Eddy. (2003). Wastewater engineering : Treatment and reuse (4th ed.). Boston: McGrawHill.
Mo, W., & Zhang, Q. (2012). Can municipal wastewater treatment systems be carbon neutral?
Journal of Environmental Management, 112, 360–367.
Molinuevo-Salces, B., Mahdy, A., Ballesteros, M., & González-Fernández, C. (2016). From piggery
wastewater nutrients to biogas: Microalgae biomass revalorization through anaerobic digestion.
Renewable Energy 96.
Nie, Y., Chen, R., Tian, X., & Li, Y. Y. (2017). Impact of water characteristics on the bioenergy
recovery from sewage treatment by anaerobic membrane bioreactor via a comprehensive study
on the response of microbial community and methanogenic activity. Energy, 139, 459–467.
Nie, C., Pei, H., Jiang, L., Cheng, J., & Han, F. (2018). Growth of large-cell and easily-sedimentation
microalgae Golenkinia SDEC-16 for biofuel production and campus sewage treatment. Renewable Energy, 122, 517–525.
Noyes, R. (1994). Unit operations in environmental engineering. New York: Noyes Publications.
Odegaard, H., Rusten, B., & Westrum, T. (1994). A new moving bed biofilm reactor—applications
and results. Water Science and Technology, 29(10–11), 157–165.
Papadopoulos, I. (1995). Wastewater management for agriculture protection in the Near East Region.
Technical Bulletin, FAO, Regional Office for the Near East, Cairo, Egypt.
Philippot, L., Raaijmakers, J. M., Lemanceau, P., & van der Putten, W. H. (2013). Going back to
the roots: The microbial ecology of the rhizosphere. Nature Reviews Microbiology, 11, 789.
Posadas, E. et al. (2017). Microalgae cultivation in wastewater. Microalgae-Based Biofuels and
Bioproducts, 67–91.
