TQual AB UK Ltd

TQual Level 6 Diploma in Chemical Engineering 360 Credits – Three Years

The TQual Level 6 Diploma in Chemical Engineering is an advanced qualification designed for individuals seeking to deepen their understanding of chemical engineering principles and practices. This three-year course equips learners with the essential skills and knowledge required to excel in the chemical engineering field. It is ideal for those aiming to pursue careers in industries such as pharmaceuticals, petrochemicals, environmental engineering, and manufacturing.

Throughout the course, students will explore key topics, including process design, material and energy balances, fluid mechanics, thermodynamics, and chemical reaction engineering. These subjects are crucial for understanding how chemical processes are designed, optimized, and managed to ensure efficiency and safety in industrial environments. The curriculum is structured to provide a comprehensive foundation in both theoretical concepts and practical applications, enabling students to tackle real-world challenges effectively.

The TQual Level 6 Diploma in Chemical Engineering also focuses on developing essential analytical, problem-solving, and technical skills. Students will engage in laboratory experiments, case studies, and project work, providing hands-on experience critical for success in the industry. By the end of the program, learners will have the tools to design, analyze, and improve chemical processes, making them valuable assets to any engineering team.

This diploma is perfect for those wishing to enhance their career prospects in chemical engineering or pursue further academic study. The three-year duration ensures a thorough understanding of the subject, equipping students to meet the demands of the industry. Upon completion, graduates will have a deep knowledge of chemical engineering principles and the confidence to apply them in various professional settings.

Whether you’re looking to enter the workforce as a chemical engineer or advance in your current role, the TQual Level 6 Diploma in Chemical Engineering offers excellent opportunities for career growth. This course is designed to meet the needs of both individuals with prior engineering experience and those starting their professional journey in the field. By completing this diploma, you’ll be well-prepared to take on complex engineering projects and make meaningful contributions to the chemical engineering industry.

Course overview

Level 6 Diploma in Chemical Engineering 360 Credits – Three Years

To enroll in the TQual Level 6 Diploma in Chemical Engineering (360 Credits – 3 Years), candidates must meet the following entry requirements:

Educational Qualifications: Applicants must hold a Level 5 qualification, such as a diploma, certificate, or an equivalent, in a related field. A background in subjects such as chemistry, physics, mathematics, or engineering is highly recommended, as the course builds upon foundational chemical engineering concepts.

Age Requirement: Candidates must be at least 18 years old to enroll in the program, ensuring they have the maturity needed to manage both the academic and practical aspects of the course.

English Proficiency: Proficiency in English is essential, as students will need to navigate technical terminology, complete written assignments, and communicate effectively within the chemical engineering field.

Technical Skills: Basic computer skills are required, as the program includes assignments, simulations, and the use of engineering software for process design and analysis.

Relevant Experience (Optional): While not mandatory, prior exposure to chemical engineering concepts, laboratory practices, or industrial processes can be advantageous, enhancing understanding and overall performance in the program.

Year 1: Foundation of Chemical Engineering

  1. Introduction to Chemical Engineering
  2. Basic Thermodynamics
  3. Mathematics for Chemical Engineers
  4. Fluid Mechanics
  5. Material and Energy Balances
  6. Introduction to Process Control
  7. Chemistry for Chemical Engineers
  8. Introduction to Reaction Engineering
  9. Engineering Drawing and CAD
  10. Professional Skills Development
  11. Heat and Mass Transfer Fundamentals
  12. Chemical Engineering Principles

Year 2: Advanced Chemical Engineering Concepts

  1. Advanced Thermodynamics
  2. Heat Transfer
  3. Mass Transfer Operations
  4. Chemical Process Design
  5. Industrial Chemistry
  6. Process Systems Engineering
  7. Fluid Dynamics and Flow Systems
  8. Reaction Engineering
  9. Environmental Engineering
  10. Process Control and Automation
  11. Process Modeling and Simulation
  12. Engineering Materials

Year 3: Specialization and Industry Application

  1. Advanced Process Control
  2. Process Safety and Risk Management
  3. Chemical Plant Design
  4. Sustainable Chemical Engineering
  5. Separation Technology
  6. Computational Fluid Dynamics (CFD)
  7. Advanced Materials Science
  8. Process Optimization
  9. Industrial Placement / Internship
  10. Capstone Project
  11. Project Management for Chemical Engineers
  12. Biochemical Engineering

Here are the Learning Outcomes for each study unit in the TQual Level 6 Diploma in Chemical Engineering 360 Credits – Three Year:

Year 1: Foundation of Chemical Engineering

1. Introduction to Chemical Engineering

  • Understand the core concepts and principles of chemical engineering, including its history and fundamental applications in industry.

2. Basic Thermodynamics

  • Apply the first and second laws of thermodynamics to chemical processes and solve related engineering problems.

3. Mathematics for Chemical Engineers

  • Use mathematical techniques such as calculus, differential equations, and linear algebra to solve chemical engineering problems.

4. Fluid Mechanics

  • Demonstrate knowledge of fluid properties and behavior, and apply fluid flow principles to chemical engineering systems.

5. Material and Energy Balances

  • Solve material and energy balance problems for chemical processes, considering inputs, outputs, and transformations.

6. Introduction to Process Control

  • Understand basic concepts of process control, including the role of sensors, actuators, and controllers in managing chemical processes.

7. Chemistry for Chemical Engineers

  • Apply fundamental principles of organic, inorganic, and physical chemistry to solve engineering problems in the chemical industry.

8. Introduction to Reaction Engineering

  • Understand chemical reaction rates and equilibrium and apply basic principles of reaction engineering in simple processes.

9. Engineering Drawing and CAD

  • Develop technical drawings and use computer-aided design (CAD) software to create models and design chemical engineering systems.

10. Professional Skills Development

  • Enhance communication, teamwork, and problem-solving skills, and demonstrate professionalism in engineering contexts.

11. Heat and Mass Transfer Fundamentals

  • Understand the fundamental principles of heat and mass transfer, and apply these to simple engineering processes.

12. Chemical Engineering Principles

  • Develop a strong understanding of the core chemical engineering principles and how they integrate to form chemical production systems.

Year 2: Advanced Chemical Engineering Concepts

13. Advanced Thermodynamics

  • Analyze complex thermodynamic systems, including phase equilibrium, chemical reactions, and design of energy-efficient processes.

14. Heat Transfer

  • Apply heat transfer principles in practical chemical engineering systems, focusing on conduction, convection, and radiation.

15. Mass Transfer Operations

  • Solve problems involving mass transfer in processes such as distillation, absorption, and filtration, understanding their application in separation technologies.

16. Chemical Process Design

  • Apply process design techniques to create efficient and safe chemical processes, including design and optimization of chemical reactors.

17. Industrial Chemistry

  • Understand the application of chemical processes in industrial settings, focusing on materials, catalysts, and large-scale reactions.

18. Process Systems Engineering

  • Apply systems thinking and engineering methods to optimize and simulate chemical production processes, ensuring efficiency and sustainability.

19. Fluid Dynamics and Flow Systems

  • Analyze fluid dynamics in engineering systems, including pipe design and pump operation, to ensure efficient transport of materials.

20. Reaction Engineering

  • Apply advanced principles of reaction kinetics and reactor design to optimize chemical reaction processes in industrial applications.

21. Environmental Engineering

  • Understand the environmental impact of chemical processes and apply sustainable practices to minimize pollution and optimize resource use.

22. Process Control and Automation

  • Apply advanced control systems and automation technologies to maintain optimal conditions in chemical processing plants.

23. Process Modeling and Simulation

  • Use simulation software to model and optimize chemical processes, predicting outcomes and improving efficiency.

24. Engineering Materials

  • Understand the properties and selection of materials used in chemical processes, considering factors such as durability, corrosion resistance, and thermal stability.

Year 3: Specialization and Industry Application

25. Advanced Process Control

  • Design and implement advanced process control systems, including distributed control systems (DCS) and real-time process monitoring.

26. Process Safety and Risk Management

  • Identify potential hazards in chemical processes, apply risk assessment techniques, and design systems to prevent accidents and ensure safety.

27. Chemical Plant Design

  • Design and analyze chemical plants, integrating all aspects of process flow, equipment selection, and safety protocols.

28. Sustainable Chemical Engineering

  • Apply sustainable chemical engineering practices, focusing on green chemistry, renewable energy, and reducing environmental impact.

29. Separation Technology

  • Apply separation techniques such as membrane filtration, distillation, and chromatography to optimize chemical production processes.

30. Computational Fluid Dynamics (CFD)

  • Use CFD software to model fluid flow, heat transfer, and chemical reactions in complex engineering systems.

31. Advanced Materials Science

  • Analyze the properties and applications of advanced materials used in chemical engineering, focusing on new technologies like nanomaterials.

32. Process Optimization

  • Apply optimization techniques to improve the efficiency, cost-effectiveness, and sustainability of chemical processes.

33. Industrial Placement / Internship

  • Gain real-world experience in the chemical engineering industry, applying learned concepts and gaining practical skills.

34. Capstone Project

  • Undertake an independent research or design project that integrates knowledge from across the curriculum to solve a complex engineering problem.

35. Project Management for Chemical Engineers

  • Develop project management skills, including scheduling, budgeting, and coordinating multidisciplinary teams to complete engineering projects.

36. Biochemical Engineering

  • Understand the principles and applications of biochemical engineering, focusing on bioreactors, fermentation, and bioprocess design.

The TQual Level 6 Diploma in Chemical Engineering provides a strong foundation for both academic and professional advancement. Upon completion, graduates can pursue a variety of pathways to further develop their careers and expertise. Here are some potential future progressions:

Professional Certifications and Accreditations

Chartered Engineer (CEng) Status
The TQual Level 6 Diploma can serve as the foundational knowledge needed for achieving chartered status with professional bodies such as the Institution of Chemical Engineers (IChemE). Achieving CEng status can significantly enhance career opportunities, positioning graduates for senior engineering and leadership roles.

Professional Engineer Certifications
Graduates may pursue industry-recognized certifications in specific areas such as process safety management, quality control, or sustainability. These certifications allow professionals to specialize and deepen their expertise, making them more competitive in niche areas of chemical engineering.

Industry Roles and Career Development

Process Engineer
Graduates can enter industries like chemicals, pharmaceuticals, food processing, and energy as process engineers, focusing on the design, optimization, and maintenance of production processes in chemical plants.

Project Manager in Engineering
With expertise in process design and optimization, graduates may transition into project management roles, overseeing the development and upgrade of chemical plants and infrastructure projects.

Environmental and Sustainability Consultant
Given the growing emphasis on sustainability, graduates can specialize in environmental consulting, advising companies on reducing their environmental impact, improving waste management, and enhancing energy efficiency in chemical operations.

Research and Development (R&D)
Graduates can take on roles in R&D, developing new chemical processes, materials, or technologies, with a focus on sustainability, innovation, and efficiency improvements within the chemical industry.

Biochemical Engineer
With the increasing intersection of biology and chemistry, graduates may choose to specialize in biochemical engineering, focusing on bioengineering, bioprocessing, and the design of bioreactors for pharmaceutical or environmental applications.

Entrepreneurship and Start-ups

Start a Chemical Engineering Consultancy
Graduates with an entrepreneurial mindset can establish their own consultancy business, offering services such as process optimization, chemical plant design, and environmental compliance.

Develop Sustainable Technology Solutions
Graduates may choose to innovate within renewable energy or green chemistry sectors, creating start-ups that offer eco-friendly solutions for chemical production or energy systems.

International Opportunities

Global Career Pathways
Chemical engineers are in demand worldwide, and graduates can explore job opportunities in multinational companies within sectors like chemicals, oil and gas, pharmaceuticals, and renewable energy. The TQual Level 6 Diploma provides a globally recognized qualification that opens doors to international work experiences.

International Research Programs
Graduates may also participate in international research collaborations, contributing to global advancements in chemical engineering technologies, sustainability, and climate change mitigation.

The TQual Level 6 Diploma in Chemical Engineering is a versatile qualification that not only provides opportunities for further education and professional certifications but also lays the foundation for a fulfilling career in both industry and research.

Even if a centre is already registered with TQual, it must meet specific requirements to deliver the TQual Level 6 Diploma in Chemical Engineering. These standards ensure the quality and consistency of training, assessment, and learner support.

1. Approval to Deliver the Qualification

Centres must obtain formal approval from TQual to deliver this qualification, even if they are already registered.
The approval process includes a review of resources, staff qualifications, and policies relevant to the program.

2. Qualified Staff

  • Tutors: Must hold relevant qualifications in Chemical Engineering at Level 7 or higher, along with teaching/training experience.
  • Assessors: Must have a recognized assessor qualification and demonstrate expertise in Chemical Engineering.
  • Internal Quality Assurers (IQAs): Must be appropriately qualified and experienced to monitor the quality of assessments.

3. Learning Facilities

Centres must have access to appropriate learning facilities, which include:

  • Classrooms: Modern, multimedia-equipped classrooms to deliver engaging theoretical instruction on chemical processes, reaction engineering, and industrial applications.
  • Practical Areas: Advanced laboratories with state-of-the-art equipment for chemical analysis, process simulation, distillation, heat transfer, and fluid mechanics, enabling hands-on training and experimental experience.
  • Technology Access: High-performance computers with specialized software (e.g., Aspen Plus, MATLAB, CHEMCAD) and internet connectivity for process modeling, simulations, and technical project work.

4. Health and Safety Compliance

Centres must ensure that practical training environments comply with relevant health and safety regulations.
Risk assessments must be conducted regularly to maintain a safe learning environment.

5. Resource Requirements

  • Learning Materials: Approved course manuals, textbooks, and study guides aligned with the curriculum.
  • Assessment Tools: Templates, guidelines, and resources for conducting and recording assessments.
  • E-Learning Systems: If offering online or hybrid learning, centres must provide a robust Learning Management System (LMS) to facilitate remote delivery.

6. Assessment and Quality Assurance

Centres must adhere to TQual’s assessment standards to ensure that all assessments are fair, valid, and reliable.

  • Internal quality assurance (IQA) processes must be in place to monitor assessments and provide feedback to assessors.
  • External verification visits from TQual will ensure compliance with awarding body standards.

7. Learner Support

Centres must provide learners with access to guidance and support throughout the program, including:

  • Academic support for coursework.
  • Career guidance for future progression.
  • Additional support for learners with specific needs (e.g., disabilities or language barriers).

8. Policies and Procedures

Centres must maintain and implement the following policies, as required by TQual:

  • Equal Opportunities Policy.
  • Health and Safety Policy.
  • Complaints and Appeals Procedure.
  • Data Protection and Confidentiality Policy.

9. Regular Reporting to TQual

Centres must provide regular updates to TQual on learner enrollment, progress, and completion rates.
Centres are required to maintain records of assessments and learner achievements for external auditing purposes.

Route for Candidates with No Experience

This route is ideal for learners who are new to the field of Chemical Engineering and do not have prior work experience. The process is as follows:

  1. Admission: The candidate enrolls in the program at a TQual Approved Training Centre.
  2. Training: The learner undergoes formal training, covering all essential study units. The training will include both theoretical instruction and practical activities.
  3. Assessment: Learners will be required to complete and submit assignments based on the course’s learning outcomes. These assignments will test the learner’s understanding and application of the course material.
  4. Certification: After successfully completing the required assignments and assessments, the learner will be awarded the TQual Level 6 Diploma in Chemical Engineering.

Route for Experienced and Competent Candidates

For candidates who already have relevant work experience in the Chemical industry, the following route is available:

  1. Eligibility: The candidate must have at least 6 years of verified experience in Chemical Engineering or a related field. This experience must be relevant to the learning outcomes of the qualification.
  2. Assessment of Competence: The candidate does not need to undergo the full training program. Instead, the TQual Approved Training Centre will assess whether the candidate’s existing knowledge and skills align with the learning outcomes of the course.
  3. Evidence Submission: The candidate must submit documentation and evidence of their work experience to demonstrate competence in the required areas. This can include job roles, responsibilities, and tasks performed that align with the learning outcomes of the course.
  4. Knowledge and Understanding: Centres must ensure that the candidate is familiar with all the course’s learning outcomes. If necessary, a skills gap assessment may be conducted to determine if any additional learning is required.
  5. Certification: Upon successful verification of experience and competence, the candidate will be awarded the TQual Level 6 Diploma in Chemical Engineering without having to complete the full training course.

Both routes ensure that candidates either gain the necessary knowledge through training or demonstrate their existing competency to achieve the TQual Level 6 Diploma in Chemical Engineering. This flexible approach caters to both new learners and experienced professionals seeking formal certification.

frequently asked questions

What is this course?

TQual Level 6 Diploma in Chemical Engineering 360 Credits – Three Year is a comprehensive program designed to provide in-depth knowledge and skills in chemical engineering. It covers key topics such as thermodynamics, process control, reaction engineering, and sustainable practices, preparing students for a successful career in the chemical and related industries.

This course is ideal for individuals looking to pursue a career in chemical engineering, including those with a strong interest in science, mathematics, and industrial processes. It is suitable for students who wish to develop practical and theoretical expertise in the field.

TQual Level 6 Diploma in Chemical Engineering is a three-year program, providing students with a structured pathway to develop advanced knowledge and practical skills in chemical engineering.

TQual Level 6 Diploma in Chemical Engineering 360 Credits – Three Year course is offered in various formats, including online, in-person, or a combination of both. Participants can choose the format that best fits their schedule and learning preferences. But final decision is made by ATC.

TQual Level 6 Diploma in Chemical Engineering 360 Credits – Three Year consist of 36 mandatory assessments. These assessments are designed to evaluate participants’ comprehension of course material and their capacity to apply concepts in practical situations. It is mandatory to pass all assessments to achieve this qualification.