MSc in Process Integration - Online Degree
- Key Information
Course Name:
MSc in Process Integration - Online Degree
University Name:
Universiti Teknologi PETRONAS (UTP)
Campus:
Perak
Qualification:
Master
Duration:
1 years
Intake:
January, May, September
IELTS:
6.0
Study Mode:
ODL/Online
Study Type:
Full time study
Program Mode:
Coursework
Yearly Tuition Fees
| Year | Fee |
|---|---|
| 1st Year | MYR 30,800 |
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
Duration
1 years
Intake
January, May, September
IELTS
6.0
Study Mode
ODL/Online
Study Type
Full time study
Program Mode
Coursework
Course Fee for International Students
Yearly Tuition Fees
| Year | Fee |
|---|---|
| 1st Year | MYR 30,800 |
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 (ODL) at Universiti Teknologi PETRONAS (UTP), Malaysia, is a specialized postgraduate curriculum engineered to address the multifaceted challenges inherent in contemporary Process Systems Engineering (PSE) within a flexible, distance-learning framework. 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, the ODL format allows working professionals to lead the evolution of industrial processing toward a more resilient and resource-efficient future without geographical constraints.
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