MSc in Process Integration
- Key Information
Course Name:
MSc in Process Integration
University Name:
Universiti Teknologi PETRONAS (UTP)
Campus:
Perak
Qualification:
Master
Duration:
1 years
Intake:
January, May, September
IELTS:
6.0
Study Mode:
On-campus
Study Type:
Full time study
Program Mode:
Coursework
Yearly Tuition Fees
| Year | Fee |
|---|---|
| 1st Year | MYR 38,600 |
Other Fees
| Description | Fee | Application (International Full Time Student ONLY) | MYR 2,600 | Personal Bond | MYR 3,000 | Registration (Insurance & Commitment Fee) | MYR 1,600 |
|---|
+University fees for this course do not include 6% tax (SST)
Campus
Perak
Qualification
Master
المدة
1 years
Intake
January, May, September
IELTS
6.0
Study Mode
On-campus
Study Type
Full time study
Program Mode
Coursework
Course Fee for International Students
Yearly Tuition Fees
| Year | Fee |
|---|---|
| 1st Year | MYR 38,600 |
Other Fees
| Description | Fee | Application (International Full Time Student ONLY) | MYR 2,600 | Personal Bond | MYR 3,000 | Registration (Insurance & Commitment Fee) | MYR 1,600 |
|---|
+University fees for this course do not include 6% tax (SST)
Course Overview
The Master of Science in Process Integration at Universiti Teknologi PETRONAS (UTP), Malaysia, is a specialized postgraduate curriculum engineered to address the multifaceted challenges inherent in contemporary process systems engineering (PSE). The program is designed to facilitate a transition from conventional industrial practices toward the application of cutting-edge analytical methodologies and innovative systemic solutions. The pedagogical core of the program focuses on the technical synergy between several critical domains: Thermal and Energy Integration: Optimizing heat recovery and utility systems to minimize environmental impact. Computational Modeling and Optimization: Utilizing mathematical frameworks to enhance systemic efficiency. Process Safety, Control, and Operability: Ensuring the integrity and dynamic stability of industrial facilities. Through a collaborative framework involving distinguished industry practitioners, the curriculum encourages students to transcend traditional engineering paradigms. By grounding learning objectives in empirical industrial scenarios, the program aims to cultivate a specialized cohort of process integration experts capable of optimizing resource consumption and advancing global sustainability goals. Ultimately, graduates are prepared to lead the evolution of industrial processing toward a more resilient and resource-efficient future.
Curriculum
Programme Structure
| Semester / Category | Subjects & Electives Offered |
|---|---|
| Semester 1 |
|
| Semester 2 |
|
| Semester 3 |
|
| Structure A Electives (Choose any 4) |
Advanced Distillation Design, Cogeneration & Site Utility, Environmental Design for Aqueous Emissions, Environmental Design for Atmospheric Emission, Refinery and Petrochemical Processes, Refinery Optimization, Synthesis of Reaction and Separation Systems |
| Structure B Electives (Choose any 4) |
Advanced Distillation Design, Cogeneration & Site Utility, Environmental Design for Aqueous Emissions, Environmental Design for Atmospheric Emission, Process Safety, Refinery and Petrochemical Processes, Synthesis of Reaction and Separation Systems |
Field of Research
N/A