References
- F. Kargi, Enhanced biological treatment of saline wastewater by
using halophilic bacteria, Biotechnol. Lett., 24 (2002) 1569–1572.
- O. Lefebvre, R. Moletta, Treatment of organic pollution in
industrial saline wastewater: a literature review, Water Res.,
40 (2006) 3671–3682.
- D. Aussenac, S. Domenech, M. Enjalbert, Mathematical model
of a mechanical vapor compression evaporator. Application to
seawater desalting. Part I - The model settlement, Desalination,
41 (1982) 137–169.
- D. Han, C. Yue, W. He, L. Liang, W. Pu, Energy-saving analysis
for a solution evaporation system with high boiling point
elevation based on self-heat recuperation theory, Desalination,
355 (2015) 197–203.
- M. Ahmadi, E. Baniasadi, H. Ahmadikia, Process modeling and
performance analysis of a productive water recovery system,
Appl. Therm. Eng., 112 (2017) 100–110.
- D. Han, W.F. He, C. Yue, W.H. Pu, Study on desalination of
zero-emission system based on mechanical vapor compression,
Appl. Energy, 185 (2017) 1490–1496.
- A.M. Helal, S.A. Al-Malek, Design of a solar-assisted mechanical
vapor compression (MVC) desalination unit for remote areas in
the UAE, Desalination, 197 (2006) 273–300.
- D. Zejli, A. Ouammi, R. Sacile, H. Dagdougui, A. Elmidaoui,
An optimization model for a mechanical vapor compression
desalination plant driven by a wind/PV hybrid system, Appl.
Energy, 88 (2011) 4042–4054.
- K. Alexander, B. Donohue, T. Feese, G. Vanderlinden, M. Kral,
Failure analysis of an MVR (mechanical vapor recompressor)
impeller, Eng. Fail. Anal., 17 (2010) 1345–1358.
- B.F. Lachner, G.F. Nellis, D.T. Reindl, The commercial feasibility
of the use of water vapor as a refrigerant, Int. J. Refrig., 30 (2007)
699–708.
- W. Rice, D.S.C. Chau, Freeze desalination using hydraulic
refrigerant compressors, Desalination, 109 (1997) 157–164.
- V.V. Slesarenko, Desalination plant with absorption heat pump
for power station, Desalination, 126 (1999) 281–285.
- V.V. Slesarenko, Heat pumps as a source of heat energy for
desalination of seawater, Desalination, 139 (2001) 405–410.
- J. Chen, S. Huang, A discussion of “heat pumps as a source
of heat energy for desalination of seawater”, Desalination,
169 (2004) 161–165.
- A.A.A. Attia, New proposed system for freeze water desalination
using auto reversed R-22 vapor compression heat
pump, Desalination, 254 (2010) 179–184.
- A.A.A. Attia, Heat pump seawater distillation system using passive
vacuum generation system, Desalination, 397 (2016) 151–156.
- M.H. Sharqawy, J.H. Lienhard, S.M. Zubair, On exergy calculations
of seawater with applications in desalination systems,
Int. J. Therm. Sci., 50 (2011) 187–196.
- K.S. Spiegler, Y.M. El-Sayed, The energetics of desalination
processes, Desalination, 134 (2001) 109–128.
- G. Zuo, R. Wang, R. Field, A.G. Fane, Energy efficiency
evaluation and economic analyses of direct contact membrane
distillation system using Aspen Plus, Desalination, 283 (2011)
237–244.
- N. Kahraman, Y.A. Cengel, Exergy analysis of a MSF distillation
plant, Energy Convers. Manage., 46 (2005) 2625–2636.
- A. Piacentino, F. Cardona, Advanced energetics of a multiple
effects evaporation (MEE) desalination plant: Part I: 2nd
principle analysis by a zooming representation at single-effect
level, Desalination, 264 (2010) 84–91.
- A. Piacentino, E. Cardona, Advanced energetics of a multipleeffects-
evaporation (MEE) desalination plant. Part II: potential
of the cost formation process and prospects for energy saving
by process integration, Desalination, 259 (2010) 44–52.
- C.-Z. Jin, Q.-L. Chou, D.-S. Jiao, P.-C. Shu, Vapor compression
flash seawater desalination system and its exergy analysis,
Desalination, 353 (2014) 75–83.
- L. Liang, D. Han, R. Ma, T. Peng, Treatment of highconcentration
wastewater using double-effect mechanical
vapor recompression, Desalination, 314 (2013) 139–146.
- K. Srinivasan, Choice of vapor-compression heat pump working
fluids, Int. J. Energy Res., 15 (1991) 41–47.
- L. Fitzsimons, B. Corcoran, P. Young, G. Foley, Exergy analysis
of water purification and desalination: a study of exergy model
approaches, Desalination, 359 (2015) 212–224.
- N. Sato, Chemical Energy, and Exergy: An Introduction to
Chemical Thermodynamics for Engineers, Elsevier, Amsterdam,
2004.
- L.Z. Wei, Design and Experimental Research on Heat Pump
Seawater Desalination Plant, Chongqing University, 2016.
(In Chinese).