Advanced Chemical Engineering (Hydrogen and Low Carbon Technologies) MSc 12 months Postgraduate Programme By Brunel University of London |TopUniversities
Subject Ranking

# 401-430QS Subject Rankings

Programme Duration

12 monthsProgramme duration

Tuitionfee

24,795 GBPTuition Fee/year

Application Deadline

17 Jul, 2026Application Deadline

Programme overview

Main Subject

Engineering - Chemical

Degree

MSc

Study Level

Masters

Study Mode

On Campus

Taught within Brunel’s young and vibrant chemical engineering department, this new master’s programme is the first of its kind in the UK. The course’s pioneering approach is rooted in its collaboration with four other departments within the university - mechanical and aerospace engineering, civil engineering, environmental science and social and political sciences - giving you a holistic view of low carbon technology and the issues that surround it.
You will be taught by a team of world-leading academics with extensive experience and diverse backgrounds in low carbon technologies, who deliver research-informed teaching across topics such as hydrogen production, carbon capture, utilisation and storage (CCUS), biorefineries and fuel cells. You will benefit from the programme’s blended approach to teaching, which includes interactive modes, traditional lectures and tutorial-style learning, along with an active learning approach through extensive discussion.
A clear benefit of the programme’s interdisciplinary approach is that while you acquire the ground-breaking science expertise you’ll also have the opportunity to select employability-boosting modules, focusing for example on project management, environmental legislation and climate politics. The compulsory modules will give you industry-relevant problem solving and transferable skills through holistic assessments, including assignments, written exams, oral presentations, and report writing.
Brunel is recognised for its sector-leading chemical engineering facilities on campus, from where you will undertake practical project work comprising both computational modelling and laboratory experiments. This will not only enhance your employability on graduation, but also offer you a unique and exciting perspective on a range of modern technologies, and their potential to achieve sustainable resource management with minimal environmental impact.

Programme overview

Main Subject

Engineering - Chemical

Degree

MSc

Study Level

Masters

Study Mode

On Campus

Taught within Brunel’s young and vibrant chemical engineering department, this new master’s programme is the first of its kind in the UK. The course’s pioneering approach is rooted in its collaboration with four other departments within the university - mechanical and aerospace engineering, civil engineering, environmental science and social and political sciences - giving you a holistic view of low carbon technology and the issues that surround it.
You will be taught by a team of world-leading academics with extensive experience and diverse backgrounds in low carbon technologies, who deliver research-informed teaching across topics such as hydrogen production, carbon capture, utilisation and storage (CCUS), biorefineries and fuel cells. You will benefit from the programme’s blended approach to teaching, which includes interactive modes, traditional lectures and tutorial-style learning, along with an active learning approach through extensive discussion.
A clear benefit of the programme’s interdisciplinary approach is that while you acquire the ground-breaking science expertise you’ll also have the opportunity to select employability-boosting modules, focusing for example on project management, environmental legislation and climate politics. The compulsory modules will give you industry-relevant problem solving and transferable skills through holistic assessments, including assignments, written exams, oral presentations, and report writing.
Brunel is recognised for its sector-leading chemical engineering facilities on campus, from where you will undertake practical project work comprising both computational modelling and laboratory experiments. This will not only enhance your employability on graduation, but also offer you a unique and exciting perspective on a range of modern technologies, and their potential to achieve sustainable resource management with minimal environmental impact.

Admission Requirements

77+
6+
59+

17 Jul 2026
1 Year
Sep

  • Candidates are required to submit references or letter(s) of recommendation for acceptance
  • Candidates are required to submit an essay(s) for acceptance

Domestic
14,435 GBP
International
24,795 GBP

Scholarships

Selecting the right scholarship can be a daunting process. With countless options available, students often find themselves overwhelmed and confused. The decision can be especially stressful for those facing financial constraints or pursuing specific academic or career goals.

To help students navigate this challenging process, we recommend the following articles:

More programmes from the university

Postgrad Programmes 73