References
- E. Dotsika, D. Poutoukis, W. Kloppmann, B. Raco, D. Psomiadis,
Distribution and Origin of Boron in Fresh and Thermal
Waters in Different Areas of Greece. 2011. Dordrecht: Springer
Netherlands.
- C. Liu, C. Kroeze, A.Y. Hoekstra, W. Gerbens-Leenes, Past and
future trends in grey water footprints of anthropogenic nitrogen
and phosphorus inputs to major world rivers, Ecol. Indic.,
18 (2012) 42–49.
- M.S. Fountoulakis, N. Markakis, I. Petousi, T. Manios, Single
house on-site grey water treatment using a submerged membrane
bioreactor for toilet flushing, Sci. Total Environ., 551
(2016) 706–711.
- D.M. Revitt, E. Eriksson, E. Donner, The implications of household
greywater treatment and reuse for municipal wastewater
flows and micropollutant loads, Water Res., 45 (2011) 1549–1560.
- S.S. Dalahmeh, M. Assayed, W.T. Suleiman, Themes of stakeholder
participation in greywater management in rural communities
in Jordan, Desalination, 243 (2009) 159–169.
- A.M. Ryan, C.L. Spash, T.G. Measham, Socio-economic and
psychological predictors of domestic greywater and rainwater
collection: Evidence from Australia, J. Hydrol., 379 (2009)
164–171.
- Z. Ronen, A. Guerrero, A. Gross, Greywater disinfection with
the environmentally friendly hydrogen peroxide plus (HPP),
Chemosphere, 78 (2010) 61–65.
- N. Rodda, L. Salukazana, S.A.F. Jackson, M.T. Smith, Use of
domestic greywater for small-scale irrigation of food crops:
Effects on plants and soil, Phys. Chem. Earth, 36 (2011) 1051–
1062.
- R.K. Misra, J.H. Patel, V.R. Baxi, Reuse potential of laundry
greywater for irrigation based on growth, water and nutrient
use of tomato, J. Hydrol., 386 (2010) 95–102.
- U. Pinto, B.L. Maheshwari, H.S. Grewal, Effects of greywater
irrigation on plant growth, water use and soil properties,
Resour. Conserv. Recy., 54 (2010) 429–435.
- O.R. Al-Jayyousi, Greywater reuse: towards sustainable water
management, Desalination, 156 (2003) 181–192.
- D.o.E. (DOE), National Water Quality Standards For Malaysia.
2006: Malaysia.
- A.P.H. Association, A.W.W. Association, W.P.C. Federation,
W.E. Federation, Standard methods for the examination of
water and wastewater. Vol. 2. 1915: American Public Health
Association.
- APHA, Standard Methods for the Examination of Water and
Wastewater. 2005, American Public Health Association: Washington,
DC.
- E. Atasoy, S. Murat, A. Baban, M. Tiris, Membrane Bioreactor
(MBR) treatment of segregated household wastewater for
reuse, CLEAN – Soil, Air, Water, 35 (2007) 465–472.
- S.M. Hocaoglu, I. Güçlü, U.C. Emine, B. Ahmet, O. Derin,
COD fractionation and biodegradation kinetics of segregated
domestic wastewater: black and grey water fractions, J. Chem.
Technol. Biotechnol., 85 (2010) 1241–1249.
- B. Jefferson, A. Palmer, P. Jeffrey, R. Stuetz, S. Judd, Grey water
characterisation and its impact on the selection and operation
of technologies for urban reuse, Water Sci. Technol., 50 (2004)
157–64.
- Metcalf, I. Eddy, Wastewater engineering : treatment and
reuse. 3rd ed. 2003, New York: McGraw-Hill.
- P.A. Gilbert, A.L.D. Jong, The Use of Phosphate in Detergents
and Possible Replacements for Phosphate, in Ciba Foundation
Symposium 57 - Phosphorus in the Enviroment: Its Chemistry
and Biochemistry, R. Porter and D.W. Fitzsimons, eds., 2008.
- K.H. Cho, D. Han, Y. Park, S.W. Lee, S.M. Cha, J.H. Kang,
J.H. Kim, Evaluation of the relationship between two different
methods for enumeration fecal indicator bacteria: colony-
forming unit and most probable number, J. Environ. Sci.
(China), 22 (2010) 846–850.
- A.D. Gronewold, R.L. Wolpert, Modeling the relationship
between most probable number (MPN) and colony-forming
unit (CFU) estimates of fecal coliform concentration, Water
Res., 42 (2008) 3327–3334.
- I. Talinli, G.K. Anderson, Interference of hydrogen peroxide on
the standard cod test, Water Res., 26 (1992) 107–110.
- A.M.E.V.d. Silva, R.J.N.B.d. Silva, M.F.G.F.C. Camões, Optimization
of the determination of chemical oxygen demand in
wastewaters, Anal. Chim. Acta, 699 (2011) 161–169.
- N.A. Noukeu, I. Gouado, R.J. Priso, D. Ndongo, V.D. Taffouo,
S.D. Dibong, G.E. Ekodeck, Characterization of effluent from
food processing industries and stillage treatment trial with
Eichhornia crassipes (Mart.) and Panicum maximum (Jacq.),
Water Resour. Ind., 16 (2016) 1–18.
- M. Priya, N. Gurung, K. Mukherjee, S. Bose, 23 - Microalgae in
Removal of Heavy Metal and Organic Pollutants from Soil, in
Microbial Biodegradation and Bioremediation, S. Das, Editor.
2014, Elsevier: Oxford. 519–537.
- H.F. Hemond, E.J. Fechner, Chapter 2 - Surface Waters, in
Chemical Fate and Transport in the Environment (Third Edition),
H.F. Hemond and E.J. Fechner, Editors. 2015, Academic
Press: Boston. 75–218.
- C. Sundberg, I.H. Franke-Whittle, S. Kauppi, D. Yu, M. Romantschuk,
H. Insam, H. Jönsson, Characterisation of source-separated
household waste intended for composting, Bioresour.
Technol., 102 (2011) 2859–2867.
- H. Shi, Industrial wastewater-types, amounts and effects, in
Point Sources of Pollution: Local Effects and their Control.
2009.
- A. Hannouche, G. Chebbo, G. Ruban, B. Tassin, B.J. Lemaire, C.
Joannis, Relationship between turbidity and total suspended
solids concentration within a combined sewer system, Water
Sci. Technol., 64 (2011) 2445–2452.
- C.W. Anderson, Turbidity 6.7, in USGS National Field Manual
for the Collection of Water-Quality Data. 2005, U.S. Geological
Survey.
- L. Hui Xiang Daphne, H. Djati Utomo, L. Zhi Hao Kenneth,
Correlation between Turbidity and Total Suspended Solids in
Singapore Rivers. Vol. 1. 2011. 313–322.