References
- F. Münk, Ecological and Economic Analysis of Seawater
Desalination Plants, University of Karlsruhe, Karlsruhe,
Germany, 2008, p. 119.
- M.W. Shahzad, M. Burhan, L. Ang, K.C. Ng, Energy-water-environment
nexus underpinning future desalination
sustainability, Desalination, 413 (2017) 52–64.
- D.C. Alarcón-Padilla, L. García-Rodríguez, J. Blanco-Gálvez,
Experimental assessment of connection of an absorption
heat pump to a multi-effect distillation unit, Desalination,
250 (2010) 500–505.
- K. Krömer, S. Will, K. Loisel, S. Nied, J. Detering, A. Kempter,
H. Glade, Scale formation and mitigation of mixed salts
in horizontal tube falling film evaporators for seawater
desalination, Heat Transfer Eng., 36 (2015) 750–762.
- I. Shahonya, F. Nangolo, M. Erinosho, E. Angula, Scaling
and Fouling of Reverse Osmosis (RO) Membrane: Technical
Review, M. Awang, S.S. Emamian, Eds., Advances in Material
Science and Engineering, Lecture Notes in Mechanical
Engineering, Springer, Singapore, 2021. doi: 10.1007/978-981-16-3641-7_7
- W.S. Guo, H.-H. Ngo, J.X. Li, A mini-review on membrane
fouling, Bioresour. Technol., 122 (2012) 27–34.
- J. Gilron, D. Hasson, Calcium sulfate fouling of reverse
osmosis membranes: flux decline mechanism, Chem.
Eng. Sci., 42 (1987) 2351–2360.
- S.X. Jiang, Y.N. Li, B.P. Ladewig, A review of reverse osmosis
membrane fouling and control strategies, Sci. Total Environ.,
595 (2017) 567–583.
- A. Matin, F. Rahman, H.Z. Shafi, S.M. Zubair, Scaling of reverse
osmosis membranes used in water desalination: phenomena,
impact, and control; future directions, Desalination,
455 (2019) 135–157.
- M.-Q. Cui, X.-Y. Dong, J.-X. Wang, Y.-X. Hu, X.-H. Xu,
L.-H. Cheng, Calcium carbonate scaling and seeding
induced precipitation in FO treating textile reverse osmosis
concentrate, J. Water Process Eng., 50 (2022) 103256,
doi: 10.1016/j.jwpe.2022.103256.
- M.Y. Ashfaq, M.A. Al-Ghouti, Effect of polymaleic acid
and microwave radiations on reverse osmosis membrane’s
performance and properties: a response surface methodology
approach, Desalination, 550 (2023) 116372, doi: 10.1016/j.desal.2023.116372.
- X.H. Li, D. Hasson, H. Shemer, Flow conditions affecting
the induction period of CaSO4 scaling on RO membranes,
Desalination, 431 (2018) 119–125.
- M. Tawalbeh, L. Qalyoubi, A. Al-Othman, M. Qasim, M. Shirazi,
Insights on the development of enhanced antifouling reverse
osmosis membranes: industrial applications and challenges,
Desalination, 553 (2023) 116460, doi: 10.1016/j.desal.2023.116460.
- A. Antony, J.H. Low, S. Gray, A.E. Childress, P. Le-Clech,
G. Leslie, Scale formation and control in high pressure
membrane water treatment systems: a review, J. Membr. Sci.,
383 (2011) 1–16.
- A. Alkhatib, M.A. Ayari, A.H. Hawari, Fouling mitigation
strategies for different foulants in membrane distillation,
Chem. Eng. Process. Process Intensif., 167 (2021) 108517,
doi: 10.1016/j.cep.2021.108517.
- O. Pfefferkorn, W.H. Weber, T.H. Sikora, Calcium sulfate seed
slurry process for scale prevention, Water Sew Work, 9 (1973)
128–132.
- O. Pfefferkorn, The economics of the seed slurry process for
scale control, Desalination, 19 (1976) 75–82.
- W.W. Stickney, T.M. Fosberg, Putting evaporators to worktreating
chemical wastes by evaporation, Chem. Eng. Prog.,
72 (1976) 41–46.
- R. Bond, S. Veerapaneni, J. Edwards-Brandt, G. Miner,
Reducing costs of inland desalination ZLD treatment, J. Am.
Water Works Assn., 97 (2005) 56–59.
- R. Rautenbach, J. Widua, Application of Seeding to Horizontal-
Tube Film Evaporators as Scale Prevention Method, Proc.
World Congr. Desalin Water Sci. Abu Dhabi, 1995, pp. 559–576.
- H. Glade, Transport und Reaktion von Kohlendioxid in
Entspannungsverdampfern zur Meerwasserentsalzung.
University of Bremen, VDI Fortschritt-Berichte, Series 3,
No. 699, VDI Verlag, Düsseldorf, 2001.
- F.J. Millero, The carbonate system in marine
environments, Chem. Process. Mar. Environ., (2000) 9–41,
doi: 10.1007/978-3-662-04207-6_2.
- J.W. Mullin, Crystallization, Elsevier, Butterworth-Heinemann,
MA, 2001.
- C.Y. Tai, P.-C. Chen, S.-M. Shih, Size‐dependent growth and
contact nucleation of calcite crystals, AlChE J., 39 (1993)
1472–1482.
- C.Y. Tai, Crystallization kinetics revealed from experimental
data analyzed by the two-step growth model, J. Chem. Eng.
Jpn., 30 (1997) 373–381.
- F.J. Millero, Chemical Oceanography, CRC Press, Boca Raton,
2005.
- M.A. Aghdam, M.Y. Park, I.J. Lopez-Prieto, A. Achilli,
S.A. Snyder, J. Farrell, Pretreatment for water reuse using
fluidized bed crystallization, J. Water Process Eng., 35 (2020)
101226, doi: 10.1016/j.jwpe.2020.101226.
- E. Abdulkarem, I. Ahmed, M.R.M. Abu-Zahra, S.W. Hasan,
Electrokinetic pretreatment of seawater to decrease the Ca2+,
Mg2+, SO42− and bacteria contents in membrane desalination
applications, Desalination, 403 (2017) 107–116.
- Y.Z. Wang, Y.J. Qin, B. Wang, J.B. Jin, B. Wang, D.S. Cui,
Selective removal of calcium ions from seawater or
desalination brine using a modified sodium carbonate method,
Desal. Water Treat., 174 (2020) 123–135.
- R. Molinari, A.H. Avci, P. Argurio, E. Curcio, S. Meca, M. Plà-
Castellana, J.L. Cortina, Selective precipitation of calcium ion
from seawater desalination reverse osmosis brine, J. Cleaner
Prod., 328 (2021) 129645, doi: 10.1016/j.jclepro.2021.129645.