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Dr Salman Masoudi Soltani
Reader in Chemical Engineering

Quad North 047

  • Chemical Engineering

Summary

I am a Reader (Associate/Professor) in Chemical Engineering. In May 2017, I joined Brunel University London as a founding member of the new Chemical Engineering Department, on the team in charge of the design and development of the Programme. I am a Chartered Engineer (CEng/MIChemE) with both industrial and academic research backgrounds in chemical and process engineering. I am also a Fellow of Higher Education Academy (FHEA), UK, and the Director of Research with the Department of Chemical Engineering. 

My research area is mainly centred on Separation Processes (Experimental & Process Design/Modelling) with a key focus on adsorption processes. I have led a number of major research projects on and around carbon capture and hydrogen production, funded via Engineering and Physical Sciences Research Council (EPSRC), UK Carbon Capture and Storage Research Centre (UKCCSRC), and the Department for Energy Security & Net Zero (DESNZ), along with a number of industrial consultancy projects, the details of which have been included under the "Research" tab of this profile. In 2022, my research was featured in the prestigious. I am also serving as the technical advisor with .

Before joining Brunel University London, I worked as a Postdoctoral Research Associate with the Department of Chemical Engineering () at Imperial College London, UK (07/2015 – 05/2017), contributing to several EPSRC as well as EU- and projects (; ; ) in the realms of biomass combustion and the modelling and optimisation of CO2 capture & utilisation processes - in 's research group and in collaboration with and . In March 2017, I received the prestigious endorsement as the Exceptional Talent in Chemical Engineering by the Royal Academy of Engineering, UK. Prior to this, I worked as a Postdoctoral Knowledge Transfer Partnership Research Associate with  () at the University of Nottingham, UK (08/2013 – 07/2015), during which, I was fully based at  production site in Bristol (UK), where I worked as a Project/Process Engineer on a major joint engineering research and process design project, involving the research, front end engineering design (FEED), detailed design, and development of a bespoke industrial-scale gas separation process.

I was awarded the University of Nottingham Scholarship to study for a PhD in Chemical Engineering (01/03/2011 - 22/02/2014). I conducted my research with the Department of Chemical & Environmental Engineering at the University of Nottingham, Malaysia Campus where I studied the effects of pyrolysis conditions on the structure of porous carbonaceous adsorbents synthesised from recycled waste, and the effect of subsequent surface modification on heavy metal removal from aqueous media. 

Responsibility

Director of Research (June 2024 - Present)

Postgraduate Research Director (September 2021 - June 2024)

Undergraduate Programme Director (January 2019 - September 2021)

Member on the team responsible for the development, design and launch of the new Chemical Engineering Program/Department at Brunel University London.

Newest selected publications

Gorbounov, M., Hecquet-Perrot, L., Ignatova, S., Hewitson, P. and Masoudi Soltani, S. (2025) ''. Next Materials, 6 (January 2025). pp. 1 - 13. ISSN: 2949-8228

Journal article

Gorbounov, M., Halloran, P. and Masoudi Soltani, S. (2024) ''. Journal of CO2 Utilization, 86. pp. 1 - 19. ISSN: 2212-9820

Journal article

Petrovic, B., Gorbounov, M. and Masoudi Soltani, S. (2024) ''. Carbon capture science and technology, 12. pp. 1 - 14. ISSN: 2772-6568

Journal article

Gorbounov, M., Diaz-Vasseur, E., Danaci, D. and Masoudi Soltani, S. (2024) ''. Carbon Capture Science and Technology, 10 (March 2024). pp. 1 - 10. ISSN: 2772-6568

Journal article

Davies, WG., Babamohammadi, S., Yan, Y., Clough, PT. and Masoudi Soltani, S. (2024) ''. Carbon Capture Science and Technology, 12. pp. 1 - 15. ISSN: 2772-6568

Journal article
More publications(54)

Brunel University London
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Uxbridge
Middlesex UB8 3PH

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