References
- G. Tchobanoglous, F.L. Burton. Wastewater engineering, Management,
7 (1991) 1–4.
- M. Hanifzadeh, M.H. Sarrafzadeh, Z. Nabati, O. Tavakoli, H.
Feyzizarnagh. The technical, economic and energy assessment
of an alternative strategy for mass production of biomass
and lipid from microalgae. J. Environ. Chem. Eng.,
(2018).
- L. Karimi, L. Abkar, M. Aghajani, A. Ghassemi, Technical
feasibility comparison of off-grid PV-EDR and PV-RO desalination
systems via their energy consumption. Separ. Purif.
Technol., 151 (2015) 82–94.
- L.F. Greenlee, D.F. Lawler, B.D. Freeman, B. Marrot, P. Moulin,
Reverse osmosis desalination: Water sources, Technology, and
today’s challenges. Water Res., 43(9) (2009) 2317–2348.
- M. Mojtaba Abolhassani, C.S. Griggs, L.A. Gurtowski, J.A.
Mattei-Sosa, M. Nevins, V.F. Medina, T.A. Morgan, L.F. Greenlee,
Scalable chitosan-graphene oxide membranes: The effect
of GO size on properties and cross-flow filtration performance,
ACS Omega, 2(12) (2017) 8751–8759.
- N. Mahmoudi, L. Reed, A. Moix, N. Alshammari, J. Hestekin,
S.L. Servoss, PEG-mimetic peptoid reduces protein fouling of
polysulfone hollow fibers, Colloids Surf., B., 149 (2017) 23−29.
- Y. Ding, S. Maruf, M. Aghajani, A.R. Greenberg, Surface patterning
of polymeric membranes and its effect on antifouling
characteristics. Separ. Sci. Technol., 52(2) (2017) 240–257.
- K. Majdzadeh-Ardakani, S. Zekriardehani, M.R. Coleman,
S.A. Jabarin, A novel approach to improve the barrier properties
of PET/clay nanocomposites. Int. J. Polym. Sci., (2017).
- S. Zekriardehani, S.A. Jabarin, D.R. Gidley, M.R. Coleman,
Effect of chain dynamics, crystallinity, and free volume on the
barrier properties of poly (ethylene terephthalate) biaxially
oriented films. Macromolecules, 50(7) (2017) 2845–2855.
- G. Vaseghi, A. Ghassemi, J. Loya, Characterization of reverse
osmosis and nanofiltration membranes: Effects of operating
conditions and specific ion rejection, Desal. Water Treat.,
57(50) (2016) 23461–23472.
- Choi, Suingil, et al., “The effect of co-existing ions and surface
characteristics of nanomembranes on the removal of nitrate
and fluoride, Desalination, 133 (2001) 53–64.
- A. Gorenflo, D. Velazquez-Padron, F.H. Frimmel, Nanofiltration
of a German groundwater of high hardness and NOM
content: Performance and costs, Desalination, 151 (2003) 253–
265.
- M.T. Myint, A. Ghassemi, Electrodialysis reversal desalination:
Monographs for the design parameters. Desal. Water
Treat., 48 (2012) 106–119.
- M.T. Myint, “Saving energy consumption and CO2 emission
from sustainable efficient operating zones in inland electrodialysis
reversal desalination. Water Resour. Ind., 5 (2014) 36–48.
- M.T. Myint, Electrodialysis reversal desalination: Optimal
voltage application rate, linear velocity, and mean ion residence
time for maximal ion removal rate, Desal. Water Treat.,
53(2) (2015) 294–299.
- K.V. Reddy, N. Ghaffour, Overview of the cost of desalinated
water and costing methodologies, Desalination, 205 (2007)
340–353.
- G. Vaseghi, Characterization of RO and NF Membranes in
Brackish Water Desalination: Effects of Operating Conditions
and Specific Ion Rejections, New Mexico State University, Las
Cruces, NM, 2013.
- C. Fritzmann, J. Löwenberg, T. Wintgens, T. Melin, State-of-the-art of reverse osmosis desalination, Desalination, 216
(2007) 1–76.
- M. Elimelech, A.P. William, The future of seawater desalination:
Energy, technology, and the environment, Science,
333(6043) (2011) 712–717.
- C. Liu, K. Rainwater, L. Song, Energy analysis and efficiency
assessment of reverse osmosis desalination process, Desalination,
276(1) (2011) 352–358.
- R. Semiat, Energy issues in desalination processes. Environ.
Sci. Technol., 42(22) (2008) 8193–8201.
- G. Vaseghi, I. Celik, D. Apul, S. Burian, “Economic, environmental,
and social criteria evaluation of rainwater harvesting
system options for an office and lab building on the university
of Utah campus”, Frontiers in Water Savings in Buildings, Bentham,
Science Publishers, 2017, pp. 117–155.
- M. Hanifzadeh, Z. Nabati, P. Longka, P. Malakul, D. Apul, D.S.
Kim, Life cycle assessment of superheated steam drying technology
as a novel cow manure management method, J. Environ.
Manage., 199 (2017) 83.
- D.S. Kim, M. Hanifzadeh, A. Kumar, Trend of biodiesel feedstock
and its impact on biodiesel emission characteristics.
Environ. Progress & Sustainable Energy.
- B. Pendyala, A. Vadlamani, S. Viamajala, S. Varanasi, M. Hanifzadeh,
University of Toledo, High yield algal biomass production
without concentrated CO2 supply under open pond
conditions. U.S. Patent Application 15/498,621, 2017.