Reduction of Energy Consumption of Brackish Water Reverse Osmosis Desalination System Via Model Based Optimisation

Authors

  • Mudhar A. Al-Obaidi Technical Institute / Baquba, Middle Technical University, Baghdad, Iraq https://orcid.org/0000-0002-1713-4860
  • Alanood A. Alsarayreh Faculty of Engineering, Mutah University, P.O. Box 7, Karak 61710 – Jordan
  • I. M. Mujtaba Faculty of Engineering and Informatics, University of Bradford, Bradford BD7 1DP, UK

DOI:

https://doi.org/10.51173/jt.v5i1.1166

Keywords:

Brackish water desalination, Reverse Osmosis, Optimisation-based model, Specific energy consumption, Specific Energy Consumption (SEC)

Abstract

Reverse Osmosis (RO) process is being engaged to yield fresh water from brackish water sources. However, the RO process is characterized by its high specific energy consumption (SEC) owing to high-pressure pumps. The current study focuses on reducing the SEC of the brackish water RO desalination plant using model-based optimization practice. The inlet conditions of RO process such as the feed pressure, flow rate (individual membrane module and total plant) and temperature, have a substantial influence on the performance indicators namely, water productivity, product concentration and SEC. Therefore, the optimisation of this study has been directed to determine optimal inlet conditions within feasible limits to minimise SEC. Arab Potash Company (APC) brackish water RO desalination plant has been considered as the case study. The optimal inlet conditions have resulted in a significant energy saving of 27.97% depending on the set of decision variables being considered at a fixed brackish water feed concentration.

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Author Biographies

Mudhar A. Al-Obaidi, Technical Institute / Baquba, Middle Technical University, Baghdad, Iraq

Chemical Engineering

Alanood A. Alsarayreh, Faculty of Engineering, Mutah University, P.O. Box 7, Karak 61710 – Jordan

Chemical Engineering Department

I. M. Mujtaba, Faculty of Engineering and Informatics, University of Bradford, Bradford BD7 1DP, UK

Department of Chemical of Engineering

References

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Q.J. Wei, R.K. McGovern “Saving energy with an optimized two-stage reverse osmosis system” Environmental Science: Water Research & Technology, vol. 3, No.4, pp.659-670, 2017, https://doi.org/10.1039/C7EW00069C.

C.P. Koutsou, E. Kritikos, A.J. Karabelas, M. Kostoglou. “Analysis of temperature effects on the specific energy consumption in reverse osmosis desalination processes” Desalination, vol. 476, p.114213, 2020, https://doi.org/10.1016/j.desal.2019.114213.

A.A. Alsarayreh, M.A. Al-Obaidi, A.M. Al-Hroub, R. Patel, I.M. Mujtaba "Evaluation and minimisation of energy consumption in a medium-scale reverse osmosis brackish water desalination plant” Journal of Cleaner Production, vol. 248, pp.119220, 2020a, https://doi.org/10.1016/j.jclepro.2019.119220.

A.A. Alsarayreh, M.A. Al-Obaidi, A.M. Al-Hroub, R. Patel, I.M. Mujtaba “Optimisation of Energy Consumption in a Medium-scale Reverse Osmosis Brackish Water Desalination Plant” In Computer Aided Chemical Engineering (Vol. 48, pp. 373-378). Elsevier, 2020, https://doi.org/10.1016/B978-0-12-823377-1.50063-X.

Y.J. Lim, Y. Ma, J.W. Chew, R. Wang “Assessing the potential of highly permeable reverse osmosis membranes for desalination: Specific energy and footprint analysis” Desalination, vol. 533, pp.115771, 2022. https://doi.org/10.1016/j.desal.2022.115771.

M.A. Al-Obaidi, A.A. Alsarayreh, A.M. Al-Hroub, S. Alsadaie, I.M. Mujtaba “Performance analysis of a medium-sized industrial reverse osmosis brackish water desalination plant” Desalination, vol. 443, pp. 272-284, 2018, https://doi.org/10.1016/j.desal.2018.06.010.

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Schematic diagram of the brackish water RO plant of APC system _ Jordan (Adapted from Al-Obaidi et al. [9])

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Published

2023-03-31

How to Cite

Mudhar A. Al-Obaidi, Alanood A. Alsarayreh, & I. M. Mujtaba. (2023). Reduction of Energy Consumption of Brackish Water Reverse Osmosis Desalination System Via Model Based Optimisation. Journal of Techniques, 5(1), 1–7. https://doi.org/10.51173/jt.v5i1.1166

Issue

Section

Engineering

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