References
- G.A. Edwin, P. Gopalsamy, N. Muthu, Characterization of
domestic gray water from point source to determine the
potential for urban residential reuse: a short review, Appl.
Water Sci., 4 (2014) 39–49.
- A.A. Wurochekke, R.M.S. Mohamed, A.A. Al-Gheethi,
H. Atiku, H.M. Amir, H.M. Matias-Peralta, Household
greywater treatment methods using natural materials and
their hybrid system, J. Water Health, 14 (2016) 914–928.
- N.M. Jais, R.M.S.R. Mohamed, A.A. Al-Gheethi, M.K. Amir
Hashim, The dual roles of phycoremediation of wet market
wastewater for nutrients and heavy metals removal and
microalgae biomass production, Clean Technol. Environ.
Policy, 19 (2017) 37–52.
- A. Ruiz-Marin, L.G. Mendoza-Espinosa, T. Stephenson, Growth
and nutrient removal in free and immobilized green algae in
batch and semi-continuous cultures treating real wastewater,
Bioresour. Technol., 101 (2010) 58–64.
- K.G. Pavithra, P. Senthil Kumar, P. Sundar Rajan, A. Saravanan,
M. Naushad, Sources and impacts of pharmaceutical
components in wastewater and its treatment process: a review,
Korean J. Chem. Eng., 34 (2017) 2787–2805.
- S. Muthusaravanan, N. Sivarajasekar, J.S. Vivek, S. Vasudha
Priyadharshini, T. Paramasivan, N. Dhakal, M. Naushad,
Research Updates on Heavy Metal Phytoremediation:
Enhancements,
Efficient Post-Harvesting Strategies and
Economic Opportunities, M. Naushad, E. Lichtfouse, Eds.,
Green Materials
for Wastewater Treatment, Springer, Cham,
2020, pp. 191–222.
- S.B. Parjane, M.G. Sane, Performance of grey water treatment
plant by economical way for Indian rural development,
Int. J. ChemTech Res., 3 (2011) 1808–1815.
- B.L. Pangarkar, S.B. Parjane, M.G. Sane, Design and economical
performance of gray water treatment plant in rural region,
World Acad. Sci. Eng. Technol., 4 (2010) 782–786.
- N. Abdel-Raouf, A.A. Al-Homaidan, I.B.M. Ibraheem,
Microalgae and wastewater treatment, Saudi J. Biol. Sci.,
19 (2012) 257–275.
- V. Abirama, R.M.S.R. Mohamed, A. Al-Gheethi, M. Abdul
Malek, A.H.M. Kassim, Meat processing wastewater phycoremediation
by Botryococcus sp.: a biokinetic study and a technoeconomic
analysis, Sep. Sci. Technol., (2020) 1–15.
- H.C. Bischoff, Some Soil Algae from Enchanted Rock and
Related Algal Species, Phycological Studies IV, University of
Texas Publication No. 6318 6318, 1963, pp. 1–95.
- APHA, Standard Methods for the Examination of Water and
Wastewater, 21st ed., American Public Health Association/
American Water Works Association/Water Environment
Federation, Washington D.C., 2005.
- APHA, AWWA, WPCF, WEF, Standard Methods for the
Examination of Water and Wastewater, Vol. 2, American Public
Health Association, American Water Works Association, Water
Pollution Control Federation, Water Environment Federation,
1915.
- S. Aslan, I.K. Kapdan, Batch kinetics of nitrogen and
phosphorus removal from synthetic wastewater by algae, Ecol.
Eng., 28 (2006) 64–70.
- S.W.T. Jeffrey, G.F. Humphrey, New spectrophotometric
equations for determining chlorophylls a, b, c1 and c2 in higher
plants, algae and natural phytoplankton, Biochem. Physiol.
Pflanzen, 167 (1975) 191–194.
- P.J.D. Janssen, M.D. Lambreva, N. Plumeré, C. Bartolucci,
A. Antonacci, K. Buonasera, R.N. Frese, V. Scognamiglio,
G. Rea, Photosynthesis at the forefront of a sustainable life,
Front. Chem., 2 (2014), doi: 10.3389/fchem.2014.00036.
- L.T. Valderrama, C.M. Del Campo, C.M. Rodriguez,
L.E. de-Bashan, Y. Bashan, Treatment of recalcitrant wastewater
from ethanol and citric acid production using the microalga
Chlorella vulgaris and the macrophyte Lemna minuscula, Water
Res., 36 (2002) 4185–4192.
- C. Li, H. Yang, X. Xia, Y. Li, L. Chen, M. Zhang, L. Zhang,
W. Wang, High efficient treatment of citric acid effluent by
Chlorella vulgaris and potential biomass utilization, Bioresour.
Technol., 127 (2013) 248–255.
- K. Lee, C.-G. Lee, Effect of light/dark cycles on wastewater
treatments by microalgae, Biotechnol. Bioprocess Eng., 6 (2001)
194–199.
- P.S. Lau, N.F.Y. Tam, Y.S. Wong, Operational optimization of
batchwise nutrient removal from wastewater by carrageenan
immobilized Chlorella vulgaris, Water Sci. Technol., 38 (1998)
185–192.
- Y.-S. Wong, N.F.Y. Tam, Wastewater Treatment with Algae,
1st ed., Springer Verlag, Berlin, Heidelberg, New York, NY, 1998.
- M.E. Martínez, J.M. Jiménez, F. El Yousfi, Influence of
phosphorus concentration and temperature on growth and
phosphorus uptake by the microalga Scenedesmus obliquus,
Bioresour. Technol., 67 (1999) 233–240.
- Ø. Fiksen, M.J. Follows, D.L. Aksnes, Trait‐based models of
nutrient uptake in microbes extend the Michaelis-Menten
framework, Limnol. Oceanogr., 58 (2013) 193–202.
- H. Hasegawa, M. Ichii, Variation in Michaelis–Menten kinetic
parameters for nitrate uptake by the young seedlings in rice
(Oryza sativa L.), Jpn. J. Breed., 44 (1994) 383–386.