References
- E.A. Couto, M.L. Calijuri, P.P. Assemany, A.F. Santiago,
L.S. Lopes, Greywater treatment in airports using anaerobic
filter followed by UV disinfection: an efficient and low cost
alternative, J. Cleaner Prod., 106 (2015) 372–379.
- D.M. Ghaitidak, K.D. Yadav, Characteristics and treatment
of greywater – a review, Environ. Sci. Pollut. Res., 20 (2013)
2795–2809.
- S. Barişçi, O. Turkay, Domestic greywater treatment by
electrocoagulation using hybrid electrode combinations, J.
Water Process Eng., 10 (2016) 56–66.
- K. Kujawa, G. Zeeman, Anaerobic treatment in decentralized
and source-separation-based sanitation concepts, Rev. Environ.
Sci. Biotechnol., 5 (2006) 115–139.
- M. Pidou, F. Memon, T. Stephenson, B. Jefferson, P. Jeffrey, Grey
water recycling: treatment options and applications, Proc. Inst.
Civil Eng. Eng. Sustain., 160 (2007) 119–131.
- K.A. Vakil, M.K. Sharma, A. Bhatia, A.A. Kazmi, S. Sarkar,
Characterization of greywater in an Indian middle-class
household and investigation of physicochemical treatment
using electrocoagulation, Sep. Purif. Technol., 130 (2014)
160–166.
- 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.
- S. Šostar-Turk, I. Petrinić, M. Simonič, Laundry wastewater
treatment using coagulation and membrane filtration, Resour.
Conserv. Recycl., 44 (2005) 185–196.
- E. Friedler, R. Kovalio, N.I. Galil, On-site greywater treatment
and reuse in multi-storey buildings, Water Sci. Technol., 51
(2005) 187–194.
- X.Y. Teh, P.E. Poh, D. Gouwanda, M.N. Chong, Decentralized
light greywater treatment using aerobic digestion and hydrogen
peroxide disinfection for nonpotable reuse, J. Cleaner Prod., 99
(2015) 305–311.
- T. Naylor, M. Moglia, A.L. Grant, A.K. Sharma, Self-reported
judgements of management and governance issues in
stormwater and greywater systems, J. Cleaner Prod., 29–30
(2012) 144–150.
- R.P. Borkar, M.L. Gulhane, A.J. Kotangale, Moving bed biofilm
reactor–a new perspective in wastewater treatment, IOSR J.
Environ. Sci. Toxicol. Food Technol., 6 (2013) 15–21.
- S. Rattanachan, Dan Kwian clays for slip casting, ScienceAsia,
33 (2007) 239–243.
- A. Barwal, R. Chaudhary, To study the performance of
biocarriers in moving bed biofilm reactor (MBBR) technology
and kinetics of biofilm for retrofitting the existing aerobic
treatment systems: a review, Rev. Environ. Sci. Biotechnol., 13
(2014) 285–299.
- A.A. Mazioti, A.S. Stasinakis, Y. Pantazi, H.R. Andersen,
Biodegradation of benzotriazoles and hydroxy-benzothiazole
in wastewater by activated sludge and moving bed biofilm
reactor systems, Bioresour. Technol., 192 (2015) 627–635.
- H.T. Ibrahim, H. Qiang, W.S. Al-Rekabi, Simultaneous organics
and nutrients removal from domestic wastewater in a combined
cylindrical anoxic/aerobic moving bed biofilm reactor, Res. J.
Appl. Sci. Eng. Technol., 7 (2014) 1887–1895.
- E.M. Gilbert, S. Agrawal, S.M. Karst, H. Horn, P.H. Nielsen,
S. Lackner, Low temperature partial nitritation/anammox in a
moving bed biofilm reactor treating low strength wastewater,
Environ. Sci. Technol., 48 (2014) 8784–8792.
- E. Loupasaki, E. Diamadopoulos, Attached growth systems for
wastewater treatment in small and rural communities: a review,
J. Chem. Technol. Biotechnol., 88 (2013) 190–204.
- K. Shahot, A. Idris, R. Omar, H.M. Yusoff, Review on biofilm
processes for wastewater treatment, Life Sci. J., 11 (2014) 1–13.
- APHA, Standard Methods for the Examination of Water and
Wastewater, 22nd ed., American Public Health Association/
American Water Works Association/Water Environment
Federation, Washington, D.C., USA, 2010.
- M.J. Travis, N. Weisbrod, A. Gross, Accumulation of oil and
grease in soils irrigated with greywater and their potential role
in soil water repellency, Sci. Total Environ., 394 (2008) 68–74.
- Y. Boyjoo, V.K. Pareek, M. Ang, A review of greywater
characteristics and treatment processes, Water Sci. Technol., 67
(2013) 1403–1424.
- A. Saidi, K. Masmoudi, E. Nolde, B. El Amrani, F. Amraoui,
Organic matter degradation in a greywater recycling system
using a multistage moving bed biofilm reactor (MBBR), Water
Sci. Technol., 77 (2017) 3328–3339.
- M.C. Chrispim, M.A. Nolasco, Greywater treatment using a
moving bed biofilm reactor at a university campus in Brazil, J.
Cleaner Prod., 142 (2017) 290–296.
- ECP 501, Egyptian Code of Practice for the Reuse of Treated
Wastewater for Agricultural Purposes, The Ministry of
Housing Utilities and Urban Communities, Egypt, 2005, (in
Arabic).
- E. Smith, K. Bani-Melhem, Grey water characterization and
treatment for reuse in an arid environment, Water Sci. Technol.,
66 (2012) 72–78.
- H.I. Abdel-Shafy, A.M. Al-Sulaiman, M.S.M. Mansour,
Greywater treatment via hybrid integrated systems for
unrestricted reuse in Egypt, J. Water Process Eng., 1 (2014)
101–107.
- L. Hernández Leal, G. Zeeman, H. Temmink, C. Buisman,
Characterisation and biological treatment of greywater, Water
Sci. Technol., 56 (2007) 193–200.
- E. Nolde, Greywater recycling systems in Germany-results,
experiences and guidelines, Water Sci. Technol., 51 (2005)
203–210.
- E. Eriksson, H.R. Andersen, T.S. Madsen, A. Ledin, Greywater
pollution variability and loadings, Ecol. Eng., 35 (2009) 661–669.
- K. Ajit, A review on grey water treatment and reuse, Int. Res. J.
Eng. Technol., 3 (2016) 2665–2668.
- L.M. Casanova, C.P. Gerba, M. Karpiscak, Chemical and
microbial characterization of household graywater, J. Environ.
Sci. Health Part A Toxic/Hazard. Subst. Environ. Eng., 36 (2001)
395–401.
- N.M. Mohamed, S.S. Ali, Economic study for greywater reuse
to achieve the sustainability in Egypt, Aust. J. Basic Appl. Sci., 6
(2012) 655–665.
- H.T. El-Zanfaly, Wastewater reuse in agriculture: a way to
develop the economies of arid regions of the developing
countries, J. Environ. Prot. Sustain. Develop., 1 (2015) 144–158.
- P. Stoodley, K. Sauer, D.G. Davies, J.W. Costerton, Biofilms as
complex differentiated communities, Annu. Rev. Microbiol., 56
(2002) 187–209.
- S.S. Branda, S. Vik, L. Friedman, R. Kolter, Biofilms: the matrix
revisited, Trends Microbiol., 13 (2005) 20–26.
- R. Kolter, E.P. Greenberg, Microbial sciences: the superficial life
of microbes, Nature, 441 (2006) 300–302.
- H.C. Flemming, T.R. Neu, D.J. Wozniak, The EPS matrix: the
“house of biofilm cells”, J. Bacteriol., 189 (2007) 7945–7947.
- I.W. Sutherland, The biofilm matrix – an immobilized but
dynamic microbial environment, Trends Microbiol., 9 (2001)
222–227.
- D. Celmer, J.A. Oleszkiewicz, N. Cicek, Impact of shear force
on the biofilm structure and performance of a membrane
biofilm reactor for tertiary hydrogen-driven denitrification of
municipal wastewater, Water Res., 42 (2008) 3057–3065.
- A.H. El-Sheikh, A.P. Newman, H. Al-Daffaee, S. Phull, N.
Cresswell, S. York, Deposition of anatase on the surface of
activated carbon, Surf. Coat. Technol., 187 (2004) 284–292.
- A. Naeem, P. Westerhoff, S. Mustafa, Vanadium removal by
metal (hydr)oxide adsorbents, Water Res., 41 (2007) 1596–1602.
- C.B. Beck, Physicochemical Processes for Water Quality Control,
Walter J. Weber, Jr. (with eight contributors), Interscience, New
York, 1972.
- O. Gulnaz, A. Kaya, F. Matyar, B. Arikan, Sorption of basic dyes
from aqueous solution by activated sludge, J. Hazard. Mater.,
108 (2004) 183–188.
- D. Gu, X. Zhu, T. Vongsay, M. Huang, L. Song, Y. He,
Phosphorus and nitrogen removal using novel porous bricks
incorporated with wastes and minerals, Pol. J. Environ. Stud.,
22 (2013) 1349–1356.
- N. Supamathanon, A. Ausavasukhi, Unglazed waste
pottery scraps as a heterogeneous catalyst for Fenton-like
decolorization of methyl orange, Suranaree J. Sci. Technol., 23
(2016) 207–217.
- I. Sondi, B. Salopek-Sondi, Silver nanoparticles as antimicrobial
agent: a case study on E. coli as a model for Gram-negative
bacteria, J. Colloid Interface Sci., 275 (2004) 177–182.
- C. Lee, J.Y. Kim, W.I. Lee, K.L. Nelson, J. Yoon, D.L. Sedlak,
Bactericidal effect of zero-valent iron nanoparticles on
Escherichia coli, Environ. Sci. Technol., 42 (2008) 4927–4933.
- K.M. Current, N.M. Dissanayake, S.O. Obare, Effect of iron
oxide nanoparticles and amoxicillin on bacterial growth
in the presence of dissolved organic carbon, Biomedicines,
5 (2017) 55.
- P.D. Nemade, A.M. Kadam, H.S. Shankar, Removal of iron,
arsenic and coliform bacteria from water by novel constructed
soil filter system, Ecol. Eng., 35 (2009) 1152–1157.
- C.Y. Chen, S.D. Chen, Biofilm characteristics in biological
denitrification biofilm reactors, Water Sci. Technol., 41 (2000)
147–154.
- P.A. Wilderer, B.S. McSwain, The SBR and its biofilm application
potentials, Water Sci. Technol., 50 (2004) 1–10.
- M. Verma, S.K. Brar, J.F. Blais, R.D. Tyagi, R.Y. Surampalli,
Aerobic biofiltration processes – advances in wastewater
treatment, Pract. Period. Hazard. Toxic Radioact. Waste
Manage., 10 (2006) 264–276.
- V. Lazarova, J. Manem, Innovative Biofilm Treatment
Technologies for Water and Wastewater Treatment, J.D. Bryers,
Ed., Biofilms II: Process Analysis and Applications, Wiley-Liss,
New York, 2000.
- S.N.H. Abu Bakar, H. Abu Hasan, A. Mohammad, S.R.S.
Abdullah, T.Y. Haan, R. Ngteni, K.M.M. Yusof, A review
of moving-bed biofilm reactor technology for palm oil mill
effluent treatment, J. Cleaner Prod., 171 (2018) 1532–1545.
- M. Plattes, E. Henry, P.M. Schosseler, A. Weidenhaupt,
Modelling and dynamic simulation of a moving bed bioreactor
for the treatment of municipal wastewater, Biochem. Eng. J., 32
(2006) 61–68.
- S. Chen, D. Sun, J.S. Chung, Treatment of pesticide wastewater
by moving bed biofilm reactor combined with Fentoncoagulation
pretreatment, J. Hazard. Mater., 144 (2007) 577–584.
- G. Mannina, G. Viviani, Hybrid moving bed biofilm reactors: an
effective solution for upgrading a large wastewater treatment
plant, Water Sci. Technol., 60 (2009) 1103–1116.
- M. Rodgers, X.M. Zhan, Moving-medium biofilm reactors, Rev.
Environ. Sci. Biotechnol., 2 (2003) 213–224.
- T.R. Garrett, M. Bhakoo, Z. Zhang, Bacterial adhesion and
biofilms on surfaces, Prog. Nat. Sci., 18 (2008) 1049–1056.
- H. Abu Hasan, S.A. Siti Rozaimah, K. Siti Kartom, K.T.
Norhisham, A review on the design criteria of biological aerated
filter for COD, ammonia and manganese removal in drinking
water treatment, J. Inst. Eng. Malaysia, 70 (2009) 025–033.
- M.S. Takriff, N.L. Jaafar, S.R.S. Abdullah, A review of biofilm
treatment systems in treating downstream palm oil mill effluent
(POME), J. Appl. Sci., 14 (2014) 1334–1338.
- X. Zhang, X. Chen, C. Zhang, H. Wen, W. Guo, H.H. Ngo, Effect
of filling fraction on the performance of sponge-based moving
bed biofilm reactor, Bioresour. Technol., 219 (2016) 762–767.
- W. Guo, H. Ngo, F. Dharmawan, C.G. Palmer, Roles of
polyurethane foam in aerobic moving and fixed bed bioreactors,
Bioresour. Technol., 101 (2010) 1435–1439.
- L. Chu, J. Wang, Nitrogen removal using biodegradable
polymers as carbon source and biofilm carriers in a moving bed
biofilm reactor, Chem. Eng. J., 170 (2011) 220–225.
- S. Adabju, Specific Moving Bed Biofilm Reactor for Organic
Removal from Synthetic Municipal Wastewater, Ph.D. Thesis,
University of Technology Sydney, New South Wales, Sydney,
Australia, 2013.
- S. Jabornig, E. Favero, Single household greywater treatment
with a moving bed biofilm membrane reactor (MBBMR), J.
Membr. Sci., 446 (2013) 277–285.
- G. Ramona, M. Green, R. Semiat, C. Dosoretz, Low strength
graywater characterization and treatment by direct membrane
filtration, Desalination, 170 (2004) 241–250.
- S.J. Edwards, B.V. Kjellerup, Applications of biofilms in
bioremediation and biotransformation of persistent organic
pollutants, pharmaceuticals/personal care products, and heavy
metals, Appl. Microbiol. Biotechnol., 97 (2013) 9909–9921.
- J.C. Leyva-Díaz, K. Calderón, F.A. Rodríguez, J. González-López, E. Hontoria, J.M. Poyatos, Comparative kinetic study
between moving bed biofilm reactor-membrane bioreactor and
membrane bioreactor systems and their influence on organic
matter and nutrients removal, Biochem. Eng. J., 77 (2013) 28–40.
- M. Colic, E. Acha, A. Lechter, Advanced pretreatment enables
MBBR treatment of high strength candy manufacturing
wastewater, Proc. Water Environ. Fed., 2009 (2009) 4142–4152.
- M. Ksibi, Chemical oxidation with hydrogen peroxide for
domestic wastewater treatment, Chem. Eng. J., 119 (2006)
161–165.
- L.A. Ghunmi, G. Zeeman, J. Van Lier, M. Fayyed, Quantitative
and qualitative characteristics of grey water for reuse
requirements and treatment alternatives: the case of Jordan,
Water Sci. Technol., 58 (2008) 1385–1396.
- A. Alasri, C. Roques, G. Michel, C. Cabassud, P. Aptel,
Bactericidal properties of peracetic acid and hydrogen peroxide,
alone and in combination, and chlorine and formaldehyde
against bacterial water strains, Can. J. Microbiol., 38 (1992)
635–642.
- L.H. Leal, H. Temmink, G. Zeeman, C.J.N. Buisman, Comparison
of three systems for biological greywater treatment, Water, 2
(2010) 155–169.
- E. Nolde, Greywater reuse systems for toilet flushing in multistorey
buildings-over ten years experience in Berlin, Urban
Water, 1 (2000) 275–284.
- B. Lesjean, R. Gnirss, Grey water treatment with a membrane
bioreactor operated at low SRT and low HRT, Desalination, 199
(2006) 432–434.
- C. Merz, R. Scheumann, B.E. Hamouri, M. Kraume, Membrane
bioreactor technology for the treatment of greywater from a
sports and leisure club, Desalination, 215 (2007) 37–43.
- T.A. Elmitwalli, M. Shalabi, C. Wendland, R. Otterpohl, Grey
water treatment in UASB reactor at ambient temperature, Water
Sci. Technol., 55 (2007) 173–180.
- 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.