References
- E. Smith, K. Bani-Melhem, Greywater characterization and
treatment for reuse in an arid environment, Water Sci. Technol.,
66 (2012) 72–78.
- M. Lamine, D. Samaali, A. Ghrabi, Greywater treatment in a
submerged membrane bioreactor with gravitational filtration,
Desal. Wat. Treat., 46 (2012) 182–187.
- M. Halalsheh, S. Dalahmeh, M. Sayed, W. Suleiman, M. Shareef,
M. Mansour, M. Safi, Grey water characteristics and treatment
options for rural areas in Jordan, Bioresour. Technol., 99 (2008)
6635–6641.
- K. Bani-Melhem, M. Al-Shannag, D. Alrousan, S. Al-Kofahi,
Z. Al-Qodah, M.R. Al-Kilani, Impact of soluble COD on grey
water treatment by electrocoagulation technique, Desal. Wat.
Treat., 89 (2017) 101–110.
- O. Al-Jayyousi, Greywater reuse: towards sustainable water
management, Desalination, 156 (2003) 18l–l92.
- World Health Organization – Regional Office for the Eastern
Mediterranean, Overview of Greywater Management: Health
Considerations, Amman, 2006, Retrieved July 27, 2017 on the
web: http://apps.who.int/iris/bitstream/10665/116516/1/dsa1203.pdf.
- B. Jefferson, A. Palmer, P. Jeffrey, R. Stuetz, S. Judd, Grey water
characterization and its impact on the selection and operation
of technologies for urban reuse, Water Sci. Technol., 50 (2004)
157–164.
- M. Arika, H. Kobayashi, H. Kihara, Pilot plant test of an
activated sludge ultrafiltration combined process for domestic
wastewater reclamation, Desalination, 23 (1977) 77–86.
- J.B. Hall, C.E. Batten, J.R. Wilkins, Domestic Wash Water
Reclamation for Reuse as Commode Water Supply Using a
Filtration – Reverse Osmosis Technique, Technical Note D-7600,
NASA, USA, 1974.
- W. Hypes, C.E. Batten, J.R. Wilkins, Processing of Combined
Domestic Bath and Laundry Waste Waters for Reuse as
Commode Flushing Water, Technical Note D-7937, NASA,
USA, 1975.
- M.S. Zipf, I.G. Pinheiro, M.G. Conegero, Simplified greywater
treatment systems: slow filters of sand and slate waste followed
by granular activated carbon, J. Environ. Manage., 176 (2016)
119–127.
- R.M.S.R. Mohamed, M.N. Adnan, M.A. Mohamed, A.H.M.
Kassim, Conventional water filter (sand and gravel) for ablution
water treatment, reuse potential, and its water savings, J.
Sustainable Dev., 9 (2016) 35–43.
- S. Tsoumachidou, T. Velegraki, A. Antoniadis, I. Poulios,
Greywater as a sustainable water source: a photocatalytic
treatment technology under artificial and solar illumination,
J. Environ. Manage., 195 (2017) 232–241.
- J.G. March, M. Gual, F. Orozco, Experiences on grey water
re-use for toilet flushing in a hotel (Mallorca Island, Spain),
Desalination, 164 (2004) 241–247.
- T. Itayama, M. Kiji, A. Suetsugu, N. Tanaka, T. Saito, N. Iwami,
M. Mizuochi, Y. Inamori, On site experiments of the slanted soil
treatment systems for domestic gray water, Water Sci. Technol.,
53 (2004) 193–201.
- C.-J. Lin, S.-L. Lo, C.-Y. Kuo, C.-H. Wu, Pilot-scale
electrocoagulation with bipolar aluminium electrodes for
on-site domestic greywater reuse, J. Environ. Eng., 131 (2005)
491–495.
- M. Pidou, L. Avery, T. Stephenson, P. Jeffrey, S.A. Parsons,
S. Liu, F.A. Memon, B. Jefferson, Chemical solutions for
greywater recycling, Chemosphere, 71 (2008) 147–155.
- K.A. Vakil, M.K. Sharma, A. Bhatia, A.A. Kazmi, S. Sarkar,
Characterization of grey water in an Indian middle-class
household and investigation of physicochemical treatment
using electrocoagulation, Sep. Purif. Technol., 130 (2014) 160–166.
- E. Nolde, Greywater reuse systems for toilet flushing in multistorey
buildings-over ten years experience in Berlin, Urban
Water, 1 (2000) 275–284.
- R. Liu, X. Huang, L. Chen, X. Wen, Y. Qian, Operational
performance of a submerged membrane bioreactor for
reclamation of bath wastewater, Process Biochem., 40 (2005)
125–130.
- J. Guo, S. Xia, R. Wang, J. Zhao, Study on membrane fouling
of submerged membrane bioreactor in treating bathing
wastewater, J. Environ. Sci., 20 (2008) 1158–1167.
- S. Surendran, A.D. Wheatley, Greywater reclamation for
non-potable reuse. J. CIWEM, 12 (1998) 406–413.
- H.-S. Shin, S.-M. Lee, I.-S. Seo, G.-O. Kim, K.-H. Lim, J.-S. Song,
Pilot-scale SBR and MF operation for the removal of organic
and nitrogen compounds from greywater, Water Sci. Technol.,
38 (1998) 79–88.
- N. Liberman, S. Shandalov, C. Forgacs, G. Oron, A. Brenner,
Use of MBR to sustain active biomass for treatment of low
organic load grey water, Clean Technol. Environ. Policy, 18
(2016) 1219–1224.
- B. Lesjean, R. Gnirss, Grey water treatment with a membrane
bio-reactor operated at low SRT and low HRT, Desalination, 199
(2006) 432–434.
- K. Bani-Melhem, E. Smith, Grey water treatment by a continuous
process of an electrocoagulation unit and a submerged
membrane bioreactor system, Chem. Eng. J., 198 (2012) 201–210.
- S. Suneethi, K. Joseph, Membrane bioreactor – an emerging
technology for treatment of industrial wastewaters, Desal. Wat.
Treat., 12 (2009) 133–142.
- Ministry of Water and Irrigation, National Water Strategy of
Jordan (2016–2025), Amman, Jordan, 2016, Available at: http://www.mwi.gov.jo/sites/en-us/default.aspx.
- FAO, Coping with Water Scarcity-Challenge of the Twenty First
Century, World Water Day, 2007, Available at: http://www.fao.org/3/a-aq444e.pdf.
- Ministry of Water and Irrigation, Water Demand Management
Policy, Amman, Jordan, 2016, Available at: http://www.mwi.gov.jo/sites/en-us/default.aspx.
- Ministry of Water and Irrigation, Surface Water Utilization
Policy, Amman, Jordan, 2016, Available at: http://www.mwi.gov.jo/sites/en-us/default.aspx.
- Ministry of Water and Irrigation, Water Substitution and Reuse
Policy, Amman, Jordan, 2016, Available at: http://www.mwi.gov.jo/sites/en-us/default.aspx.
- Ministry of Water and Irrigation, Jordan Water Sector, Facts
and Figures, Amman, Jordan, 2015, Available at: http://www.mwi.gov.jo/sites/en-us/Hot%20Issues/Jordan%20Water%20 Sector%20Facts%20and%20%20Figures%202015.pdf.
- Water Authority of Jordan, Long-Term Average Annual Rainfall
of Jordan, open file, Amman, Jordan, 2005, Available at: http://www.waj.gov.jo/sites/en-us/default.aspx.
- Z. Al-Ghazawi, J. Amayreh, L. Rousan, A. Hijazi, Waste Water
Reuse for Agriculture Pilot Project at the Jordan University of
Science and Technology, I. Al-Baz, R. Otterpohl, C. Wendland,
Eds., Efficient Management of Wastewater, Springer, Berlin,
Heidelberg, 2008, pp. 283–297.
- Climate Data, Retrieved in July 2017 at the web: https://en.climate-data.org/location/51353/.
- K. Bani-Melhem, Z. Al-Qodah, M. Al-Shannag, A. Qasaimeh,
M.R. Qtaishat, M. Alkasrawi, On the performance of real grey
water treatment using a submerged membrane bioreactor
system, J. Membr. Sci., 476 (2015) 40–49.
- S.A. Prathapar, A. Jamrah, M. Ahmed, S. Al Adawi, S. Al Sidairi,
A. Al Harassi, Overcoming constraints in treated greywater
reuse in Oman, Desalination, 186 (2005) 177–186.
- F. Li, K. Wichmann, R. Otterpohl, Review of the technological
approaches for grey water treatment and reuses, Sci. Total
Environ., 407 (2009) 3439–3449.
- Ministry of Water and Irrigation, Jordanian Standard
Specification No. 893/2006 for Reclaimed Domestic Wastewater,
Amman, Jordan, 2006.
- European Parliament & Council, Directive 2006/7/EC – The
Management of Bathing Water Quality and Repealing Directive
76/160/EEC, 2006.
- Deutsches Institut Fur Normung E.V., Irrigation – Hygienic
Concerns of Irrigation Water, DIN 19650 Standard (German
National Standard), Germany, 1999.