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The University of Manchester Chemical Engineering PhD Projects, Programs & Scholarships

We have 29 The University of Manchester Chemical Engineering PhD Projects, Programs & Scholarships

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We have 29 The University of Manchester Chemical Engineering PhD Projects, Programs & Scholarships

PhD in Non-thermal Plasma Methods for Sustainable Catalysis

  Research Group: Sustainable Industrial Engineering
Catalysis is a key technology for multiple industries and will play a critical role to achieve net zero ambitions. In 2020 bp set a goal of being a net zero company by 2050 or sooner and helping the world get to net zero. Read more

High Selectivity Membranes For Electrochemical Energy Devices

The global energy demand for a new reliable energy system with no greenhouse gas emissions leads to electrochemical processes to play a pivotal role in the global power generation, because the efficient interconversion of electrical and chemical energies as well as the ability of storage that energy. Read more

Data-driven, systems engineering methodologies for achieving sustainable manufacturing towards a circular economy

  Research Group: Process Development and Integration
This exciting project constitutes a collaboration with the health and hygiene Industry and entails a holistic engineering systems approach towards achieving sustainability targets specific to the industry, but which can be useful in a broader industrial context under the Industry 4.0 objectives. Read more

Graphene-enhanced bioplastics for sustainable packaging applications

  Research Group: Biochemical and Bioprocess Engineering
About the Project. This multidisciplinary project with industrial relevance and support, aims to develop novel technologies, for the development of biodegradable plastics – Polyhydroxyalkanoates (PHAs) with enhanced properties through the use of graphene in various forms.  . Read more

PhD in Life Cycle Assessment for Sustainable Catalysis

Catalysis is a key technology for multiple industries and will play a critical role to achieve net zero ambitions. In 2020 bp set a goal of being a net zero company by 2050 or sooner and helping the world get to net zero. Read more

Wear and biological safety of dental titanium implants

Implant dentistry with a globally market of CHF 4.5 billion in 20181 has shown a steady increase over the last few years. Titanium implant is the most widely accepted and successfully used type of dental implant. Read more

Dynamics and Rheology of Colloidal Liquid Crystals

  Research Group: Multiscale Modelling
Colloidal suspensions are two-phase systems of droplets or particles dispersed in a continuous medium that find wide use in the formulation industry as paints, pharmaceutics, cosmetics and food products. Read more

Strategies for the production of furans from biobased substrates

  Research Group: Catalysis and Porous Materials
The biorefinery concept has been gaining momentum in the last years as many countries have adopted policies and national strategies to steer towards a biobased economy. Read more

Catalytic materials for biomass valorisation - from single sites to nanoparticles

  Research Group: Catalysis and Porous Materials
A catalyst is a substance that increases the rate of a chemical reaction without being consumed, offering greater energy efficiency relative to non-catalytic pathways. Read more

Hierarchical porous architectures for catalytic cascade reactions

  Research Group: Catalysis and Porous Materials
A catalyst is a substance that increases the rate of a chemical reaction without being consumed, offering greater energy efficiency relative to non-catalytic pathways. Read more

Increased Productivity in Manufacturing Through Machine Learning based Predictive Maintenance

Smart manufacturing is one of the novel concepts arising from the era of the 4th Industry Revolution. At present, the downtime of equipment and processes is costing UK manufacturers more than £180 billion per year. Read more

Molecular simulation of adsorbents for air separation

Efficient production of oxygen from air is key in many technologies. In this project we aim to explore the potential of novel adsorbents for air separation where different regeneration approaches are considered. Read more

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