Nidal Hilal Explained

Occupation:Professor (Chemical Engineer)
Alma Mater:University of Wales, Swansea University, University of Nottingham
Known For:DesalinationMembrane SeparationAFM in Process Engineering
Discipline:Desalination,Membrane Technology, Water Treatment

Nidal Hilal DSc PhD EurIng CEng FIChemE FLSW FRSC is is an academic, engineering scientist and scientific adviser. He is a Global Network Professor at New York University and the Founding Director and Principal Investigator of NYUAD Water Research Center.[1] [2] He held professorships at the University of Nottingham and Swansea University in the United Kingdom. He is an Emeritus Professor of Engineering[3] at Swansea University and the Founding Director of the Centre for Water Advanced Technologies and Environmental Research (CWATER).[4]

Education

Hilal obtained a Bachelor's degree in Chemical Engineering in 1981 followed by three years industrial experience in the oil industry. He obtained a Master of Science degree in Advanced Chemical Engineering in 1985 followed by a PhD in Chemical Engineering in 1988 from Swansea University. He also holds a Postgraduate Certificate in Higher Education from the University of Nottingham in the United Kingdom.

Career

Hilal worked as a lecturer in Chemical Engineering at the University of Nottingham from 2001 to 2003, when he was promoted to a Reader in Chemical and Process Engineering. He was promoted to a Chair Professor in Chemical and Process Engineering (Personal Chair) in December 2004 at the School of Chemical, Environmental and Mining Engineering until August 2010. He moved to Swansea University as the Chair Professor in Water Process Engineering and established the Centre for Water Advanced Technologies and Environmental Research (CWATER). He was also the Head of Chemical and Environmental Engineering at Swansea University.

Honours and awards

Hilal received many honours and awards including: Elected Fellow of the Royal Society of Chemistry (FRSC), elected Fellow of the Institution of Chemical Engineers (FIChemE), elected Fellow of the Learned Society of Wales (FLSW), Chartered Engineer (CEng) in the UK, registered European Engineer (Eur Ing), awarded the 2020 Menelaus Medal [5] by the Learned Society of Wales for excellence in engineering and technology, awarded a Doctor of Science, Senior Doctorate, from the University of Wales, awarded the Kuwait Prize for applied science "Water Resources Development",[6] named in the Highly Cited Researchers 2022 list by Clarivate,[7] [8] listed amongst the most Notable Alumni of Swansea University,[9] listed amongst the most Notable Alumni of University of Wales,[10] ranked amongst the top scientists in the world,[11] [12] ranked by google scholar amongst the top 10 desalination leaders around the world,[13] ranked amongst the top 200 in the world ranking for Engineering and Technology,[14] the most cited author (life time) in Desalination,[15] the most cited author in Journal of Water Process Engineering,[16] and his extensive knowledge and insights have drawn the interest of international press, especially to inform the public about sustainability, access to clean water, and desalination [17] [18] [19] [20] [21] [22] [23] [24] [25]

Research

Hilal has supervised 46 students through their PhDs and more than 70 postdoctoral research fellows, authored over 600 publications including several patents and books.[26] [27] [28] His research interests lie broadly in the identification of innovative and cost-effective solutions within the fields of nano-water, membrane technology, and water treatment including desalination, colloid engineering and the nano-engineering applications of AFM. His internationally recognized research has led to the use of AFM in the development of new membranes with optimized properties for difficult separations. His research has produced several breakthrough innovations, including: The smallest AFM colloid probe reported in the literature,[29] the first AFM coated colloid probe technique,[30] the first AFM cell probe technique,[31] the first direct measurements of the interaction of single live cells with membrane surfaces,[32] the first direct measurement of the force of adhesion of a single particles with membrane surfaces,[33] the first to show pores on nanofiltration membranes,[34] the first use of the atomic force microscope in meso-scale cavitation studies, development of novel and tailored membranes,[35] the development of composite imprinted membranes,[36] the development of self-cleaning membrane for sustainable desalination,[37] and tapping into salty water for agriculture [38] [39] [40]

Books

Hilal published several books including:

Advisory and editorial boards

Hilal sits on the editorial boards of a number of international journals, is an advisory board member of several multinational organizations and has served on/consulted for industry, government departments, research councils and universities on an international basis.

Notes and References

  1. Web site: Professor Nidal Hilal - New York University.
  2. Web site: NYUAD Water Research Center.
  3. Web site: Professor Nidal Hilal - Swansea University.
  4. Web site: CWATER - Swansea University.
  5. Web site: Menelaus Medal 2020.
  6. Web site: Kuwait Prize.
  7. Web site: Highly Cited Researchers 2022 list - Clarivate.
  8. Web site: Swansea University - Press Release.
  9. Web site: Most Notable Alumni of Swansea University. 11 August 2021 .
  10. Web site: Most Notable Alumni of University of Wales. 11 August 2021 .
  11. Web site: Nidal Hilal - Scientificindex 2023.
  12. Web site: Clarivate.
  13. Web site: Google Scholar - Desalination.
  14. Web site: World Ranking in Engineering and Technology.
  15. Web site: Most cited author (life time) in Desalination.
  16. Web site: Most cited author in Water Process Engineering.
  17. Web site: The Telegrapgh. 20 June 2014 .
  18. Web site: The National News 1. 22 March 2022 .
  19. Web site: Water On Line.
  20. Web site: Economy Middle East.
  21. Web site: The National News 2. 30 July 2022 .
  22. News: Utilities Middle East. 9 July 2012 .
  23. Web site: WIRED Middle East.
  24. Web site: Fast Company Middle East.
  25. Web site: Gulf Business Magazine. 22 March 2024 .
  26. Web site: Nidal Hilal-Google Scholar.
  27. Web site: Nidal Hilal-Scopus.
  28. Web site: Nidal Hilal - ORCID.
  29. Hilal . Nidal . Bowen . W.Richard . Atomic force microscope study of the rejection of colloids by membrane pores . Desalination . 150 . 3 . 2002 . 10.1016/S0011-9164(02)00985-2 . 289–295. 2002Desal.150..289H .
  30. Coated colloid probe. 1998 . 10.1006/jcis.1997.5247 . 9466876 . Bowen . W. R. . Hilal . N. . Lovitt . R. W. . Wright . C. J. . Journal of Colloid and Interface Science . 197 . 2 . 348–352 .
  31. Bowen . W.Richard . Hilal . Nidal . Lovitt . Robert W. . Wright . Chris J. . Direct measurement of the force of adhesion of a single biological cell using an atomic force microscope . Colloids and Surfaces A: Physicochemical and Engineering Aspects . 136 . 1–2 . 1998 . 10.1016/S0927-7757(97)00243-4 . 231–234.
  32. Richard Bowen . W . Hilal . Nidal . Lovitt . Robert W . Wright . Chris.J . Characterisation of membrane surfaces: direct measurement of biological adhesion using an atomic force microscope . Journal of Membrane Science . 154 . 2 . 1999 . 10.1016/S0376-7388(98)00287-7 . 205–212.
  33. Bowen . W.Richard . Hilal . Nidal . Lovitt . Robert W. . Wright . Chris J. . A new technique for membrane characterisation: direct measurement of the force of adhesion of a single particle using an atomic force microscope . Journal of Membrane Science . 139 . 2 . 1998 . 10.1016/S0376-7388(97)00255-X . 269–274.
  34. Bowen . W.Richard . Mohammad . A.Wahab . Hilal . Nidal . Characterisation of nanofiltration membranes for predictive purposes — use of salts, uncharged solutes and atomic force microscopy . Journal of Membrane Science . Elsevier BV . 126 . 1 . 1997 . 0376-7388 . 10.1016/s0376-7388(96)00276-1 . 91–105.
  35. Meso-scale cavitation. Proceedings of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences . 8 November 2003 . 459 . 2039 . 2885–2908 . 10.1098/rspa.2003.1128 . Barrow . M. S. . Bowen . W. R. . Hilal . N. . Al-Hussany . A. . Williams . P. R. . Williams . R. L. . Wright . C. J. .
  36. Kochkodan . Victor . Hilal . Nidal . Melnik . Volodimir . Kochkodan . Olga . Remizovska . Anna . The express monitoring of organic pollutants in water with composite imprinted membranes . Journal of Membrane Science . 377 . 1–2 . 2011 . 10.1016/j.memsci.2011.04.033 . 151–158.
  37. Hashaikeh . Raed . Lalia . Boor Singh . Kochkodan . Victor . Hilal . Nidal . A novel in situ membrane cleaning method using periodic electrolysis . Journal of Membrane Science . 471 . 2014 . 10.1016/j.memsci.2014.08.017 . 149–154.
  38. Web site: WaterWorld magazine. 26 April 2017 .
  39. Web site: Pollutionsolutions-online.
  40. Web site: Tapping into salty water to grow healthy food.
  41. Book: Electrically Conductive Membrane Materials and Systems. 2023 . 10.1201/9781003144991 . Hilal . Nidal . Hashaikeh . Raed . Ahmed . Farah . 978-1-003-14499-1 .
  42. Web site: Nanofiltration for Sustainability: Reuse, Recycle and Resource Recovery.
  43. Web site: Osmosis Engineering.
  44. Web site: Nanofiber Membranes.
  45. Web site: Membrane Based Salinity Gradient Processes.
  46. Web site: Membrane Characterization.
  47. Web site: Membrane Fabrication.
  48. Web site: Boron Separation Processes.
  49. Web site: Membrane Modification.
  50. Web site: Atomic Force Microscopy in Process Engineering.
  51. Web site: Nutrients and Wastewater.