Chemical Engineering MEng Hons

4 Years On Campus Accelerated-bachelors Program

Lancaster University

Program Overview

The MEng Chemical Engineering with Industrial Study at Lancaster University is a comprehensive five-year program designed to provide students with a robust foundation in chemical engineering principles, coupled with practical industry experience. This course is ideal for students aiming to pursue a career in chemical engineering, offering a balance of theoretical knowledge and hands-on application through an industrial placement year.

Curriculum Structure:

Year 1: Students are introduced to fundamental chemical engineering concepts, including material and energy balances, thermodynamics, and fluid mechanics. Core modules such as "Introduction to Chemical Engineering," "Mathematics for Engineers," and "Chemistry for Engineers" lay the groundwork for more advanced studies.

Year 2: The focus shifts to process engineering and design, with modules like "Process Control," "Heat and Mass Transfer," and "Chemical Reaction Engineering." Students also begin to develop their problem-solving and analytical skills, preparing for the industrial placement year.

Year 3 (Industrial Placement Year): Students undertake a year-long industrial placement, applying their academic knowledge in a real-world setting. This experience enhances their practical skills and provides valuable insights into the chemical engineering industry.

Year 4: Upon returning from the industrial placement, students delve into advanced topics such as "Process Design and Economics," "Advanced Process Control," and "Sustainable Chemical Engineering." The emphasis is on integrating industrial experience with academic learning to tackle complex engineering challenges.

Year 5: The final year focuses on independent research and project work, with modules like "Individual Research Project" and "Advanced Topics in Chemical Engineering." Students are expected to demonstrate their ability to conduct research and contribute to the field of chemical engineering.

Focus Areas: Process Design, Sustainable Engineering, Industrial Applications, Advanced Thermodynamics, Chemical Reaction Engineering

Learning Outcomes: Graduates will have a deep understanding of chemical engineering principles, the ability to apply theoretical knowledge to practical problems, and experience in industrial settings.

Professional Alignment: The program is accredited by the Institution of Chemical Engineers (IChemE), ensuring that graduates meet the educational requirements for professional recognition and chartered status.

Reputation: Lancaster University is consistently ranked among the top universities in the UK, known for its strong emphasis on employability and industry connections.

Experiential Learning (Research, Projects, Internships etc.)

At Lancaster University, the MEng Chemical Engineering with Industrial Study is designed to give you real-world experience alongside academic learning. You’ll gain hands-on skills in modern laboratories, work on industry projects, and take part in a year-long industrial placement—so you’re not just learning theory, you’re applying it in professional settings. This approach ensures you graduate with the confidence and experience employers are looking for.

Here’s how you’ll get practical, career-ready experience:

  • Industrial Placement Year: Spend a full year working with a leading company, applying what you’ve learned and understanding how chemical engineering works in real-world settings.

  • Industrial Projects: Collaborate on projects with external companies, tackling real engineering challenges and building professional problem-solving skills.

  • State-of-the-Art Laboratories: Work in modern labs, including the Chemical Engineering Teaching Lab, using industrial equipment and learning practical techniques in small group settings.

  • Collaborative Group Projects: Join team-based projects that mirror real engineering scenarios, helping you develop teamwork and project management skills.

  • Industry Engagement: Benefit from direct collaboration with industry partners, gaining insight into current practices and trends in chemical engineering.

These experiences ensure that by the time you graduate, you’re not just theoretically prepared—you have the practical skills, professional insight, and confidence to thrive in the chemical engineering sector.

Progression & Future Opportunities

Graduates of the MEng Chemical Engineering with Industrial Study at Lancaster University are well-equipped to embark on successful careers in various sectors. The program's blend of academic rigor and practical experience ensures that students are prepared for roles such as Process Engineer, Chemical Production Manager, Environmental Consultant, and Research and Development Specialist.

Key Highlights:

  • Employment Support: Lancaster University's Careers Service offers tailored support, including CV workshops, interview preparation, and networking opportunities with industry professionals.

  • Employment Statistics: According to the HESA Graduate Outcomes Survey 2024, graduates from Lancaster's engineering degrees have a median starting salary of £32,000, reflecting the program's strong industry relevance.

  • Industry Partnerships: The university has established collaborations with leading companies such as EDF, Jaguar Land Rover, and Network Rail, providing students with opportunities for placements and industrial projects.

  • Accreditation: The MEng degree is accredited by the Institution of Chemical Engineers (IChemE), meeting the educational requirements for Chartered Engineer status, enhancing graduates' professional standing.

  • Graduation Outcomes: The program's comprehensive curriculum and experiential learning components ensure that graduates are not only academically proficient but also possess the practical skills and industry experience sought by employers.

Further Academic Progression:

After completing the MEng program, graduates have the option to pursue further studies, such as a PhD in Chemical Engineering, specializing in areas like sustainable energy, materials science, or process optimization. Additionally, the program's strong foundation in research and development prepares graduates for roles in academia or advanced industry positions, contributing to ongoing innovation in the field.

Program Key Stats

£30,770 (Annual cost)
£ 29
Oct Intake : 14th Jan


Eligibility Criteria

AAA
3.0
36
75

NA
NA
6.5
87

Additional Information & Requirements

Career Options

  • Analytical chemist
  • Energy manager
  • Manufacturing engineer
  • Materials engineer
  • Mining engineer
  • Production manager
  • Quality manager

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