Mounting evidence shows that only a decarbonized global economy can offer us a viable future and a way to mitigate and reverse the damage of climate change. Read more
Particle processing is widely used in chemical and pharmaceutical manufacturing industries. In this context, particle attributes influence processability and are key to the optimisation of product quality. Read more
This 4-year PhD project at the University of Strathclyde is funded by UK Research Waste Management Research Support Office (RWM RSO) and aims to provide an experimental characterization on the hydromechanical behaviour of compacted bentonite when wetted with high salinity water. Read more
Multiple technologies essential in the transition to net zero and renewables are underpinned by energy materials capable of transporting ions or electrons. Read more
Reference number. SCEBE-20-002-AGOSF. Aim & Scope. Climate change and population growth are threatening the quality and resilience of the Earth’s ecosystems. Read more
The work proposed in this project aims to understand the impact of water chemistry on the electrode/electrolyte interface, and thereby catalyst and device performance for the production of green hydrogen from sea water sources. Read more
The conversion of carbon dioxide to useful products is essential not only on Earth for reaching net zero targets, but also for space exploration and future planet colonisation. Read more
Polymer composites are used in a wide variety of applications including electronic devices, aerospace and automotive components, wind turbines and plastic packaging. Read more
It is known that the addition of a small concentration of polymer chains in a turbulent boundary layer reduces significant turbulent drag in this boundary layer. Read more
Achieving carbon neutrality targets by 2050 is widely recognized as the global most important and challenging mission. The pathways to achieve zero emissions are complex, within which, carbon capture utilization and storage (CCUS) is playing a critical role. Read more
The Hydrogen Economy will help to shift society away from fossil fuels and contribute to decarbonisation. Polymer electrolyte membrane water electrolysis (PEMWE) can convert renewable energy into green hydrogen, whilst polymer electrolyte membrane fuel cells (PEMFCs) convert hydrogen into electrical power. Read more
In the manufacture of high-value chemical products, such as pharmaceuticals, separation and purification from complex, multicomponent mixtures are crucial steps. Read more
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