Back to search results

PhD Studentship: Removing the hydration bottleneck from integrated alkaline CO2 capture and electrochemical conversion

The University of Manchester - Chemistry

Qualification Type: PhD
Location: Manchester
Funding for: UK Students, EU Students, International Students
Funding amount: £24,847 per annum will be provided. Travel costs of £4000 are available.
Hours: Full Time
Placed On: 17th April 2024
Closes: 10th May 2024

This 4 year funded PhD is sponsored by bp-ICAM and starts on 1st October 2024. Tuition fees will be paid and a tax free stipend (depending on circumstances) of at least £24,847 per annum will be provided. Travel costs of £4000 are available. This project is open to home students but bp-ICAM will also consider applications from strong overseas candidates.

Humanity’s demand for fuels and chemicals is rapidly increasing, driven by a growing population and global demands for an improved quality of life. This demand must be rationalised against our need to drastically reduce our carbon emissions, reaching net zero by 2050 to mitigate the effects on climate change. While electrification can replace fossil fuels in some circumstances, many transport applications (e.g. aviation) require a chemical fuel due to its high energy density. While carbon capture and utilisation separately are developing at pace, their integration still poses challenges with a significant gap to bridge between the state-of-the-art in each field to achieve the economically viable production of value-added fuels from captured CO2.

This project aims to improve the performance of CO2 reduction from captured CO2 through a holistic approach, combining multiple experimental and computational techniques. This will develop approaches that catalyse the kinetically slow CO2 hydration reaction alongside CO2 reduction to produce energy dense fuel molecules and intermediates that can integrate with existing petrochemical processes to produce sustainable fuels and base oils.

Activities will include

1) Design and rapid prototyping of new electrolyser architectures and electrodes
2) Integration of catalysts for CO2 hydration into electrolysers.
3) Understanding of local environments within electrolysers through the combination of multiple
experimental and computational techniques

The successful candidate will participate in both fundamental and applied catalysis research. This will include experimental electrochemistry, catalyst and electrode materials development, and rapid prototyping (3D printing). There will also be the opportunity to learn and use multiphysics modelling techniques alongside the core experimental focus of this project.

Applicants should have, or expect to achieve, at least a 2.1 honours degree or a Master’s in Chemistry, Chemical Engineering or other related discipline.

We strongly recommend that you contact the supervisor, Dr Cobb (Samuel.cobb@manchester.ac.uk) for this project before you apply. We also encourage all applicants to read the group philosophy and EDI documentation included on the group website (cobblab.co.uk)

We value your feedback on the quality of our adverts. If you have a comment to make about the overall quality of this advert, or its categorisation then please send us your feedback
Advert information

Type / Role:

Subject Area(s):

Location(s):

PhD tools
 

PhD Alert Created

Job Alert Created

Your PhD alert has been successfully created for this search.

Your job alert has been successfully created for this search.

Ok Ok

PhD Alert Created

Job Alert Created

Your PhD alert has been successfully created for this search.

Your job alert has been successfully created for this search.

Manage your job alerts Manage your job alerts

Account Verification Missing

In order to create multiple job alerts, you must first verify your email address to complete your account creation

Request verification email Request verification email

jobs.ac.uk Account Required

In order to create multiple alerts, you must create a jobs.ac.uk jobseeker account

Create Account Create Account

Alert Creation Failed

Unfortunately, your account is currently blocked. Please login to unblock your account.

Email Address Blocked

We received a delivery failure message when attempting to send you an email and therefore your email address has been blocked. You will not receive job alerts until your email address is unblocked. To do so, please choose from one of the two options below.

Max Alerts Reached

A maximum of 5 Job Alerts can be created against your account. Please remove an existing alert in order to create this new Job Alert

Manage your job alerts Manage your job alerts

Creation Failed

Unfortunately, your alert was not created at this time. Please try again.

Ok Ok

Create PhD Alert

Create Job Alert

When you create this PhD alert we will email you a selection of PhDs matching your criteria.When you create this job alert we will email you a selection of jobs matching your criteria. Our Terms and Conditions and Privacy Policy apply to this service. Any personal data you provide in setting up this alert is processed in accordance with our Privacy Notice

Create PhD Alert

Create Job Alert

When you create this PhD alert we will email you a selection of PhDs matching your criteria.When you create this job alert we will email you a selection of jobs matching your criteria. Our Terms and Conditions and Privacy Policy apply to this service. Any personal data you provide in setting up this alert is processed in accordance with our Privacy Notice

 
 
 
More PhDs from The University of Manchester

Show all PhDs for this organisation …

More PhDs like this
Join in and follow us

Browser Upgrade Recommended

jobs.ac.uk has been optimised for the latest browsers.

For the best user experience, we recommend viewing jobs.ac.uk on one of the following:

Google Chrome Firefox Microsoft Edge