COURSE OVERVIEW
PE0310 : Gas Sweetening & Sulphur Recovery
OVERVIEW
COURSE TITLE | : | PE0310 : Gas Sweetening & Sulphur Recovery |
COURSE DATE | : | Aug 25 - Aug 29 2024 |
DURATION | : | 5 Days |
INSTRUCTOR | : | Mr. Saad Bedir |
VENUE | : | Doha, Qatar |
COURSE FEE | : | $ 6000 |
Request For Course |
OTHER SCHEDULED DATES
Date | : | Jan 21 - Jan 25 2024 (5 Days) | Location | : | Dubai, UAE | Classroom Fee (US$) | : | $ 5500 | Course Info |
Date | : | Feb 18 - Feb 22 2024 (5 Days) | Location | : | Doha, Qatar | Classroom Fee (US$) | : | $ 6000 | Course Info |
Date | : | Mar 03 - Mar 07 2024 (5 Days) | Location | : | Istanbul, Turkey | Classroom Fee (US$) | : | $ 6000 | Course Info |
Date | : | Mar 03 - Mar 07 2024 (5 Days) | Location | : | Istanbul, Turkey | Classroom Fee (US$) | : | $ 6000 | Course Info |
Date | : | May 26 - May 30 2024 (5 Days) | Location | : | Doha, Qatar | Classroom Fee (US$) | : | $ 6000 | Course Info |
Date | : | Jun 09 - Jun 13 2024 (5 Days) | Location | : | Doha, Qatar | Classroom Fee (US$) | : | $ 6000 | Course Info |
Date | : | Jun 23 - Jun 27 2024 (5 Days) | Location | : | Al Khobar, KSA | Classroom Fee (US$) | : | $ 5500 | Course Info |
Date | : | Sep 23 - Sep 27 2024 (5 Days) | Location | : | Abu Dhabi, UAE | Classroom Fee (US$) | : | $ 5500 | Course Info |
Date | : | Oct 20 - Oct 24 2024 (5 Days) | Location | : | Dubai, UAE | Classroom Fee (US$) | : | $ 5500 | Course Info |
Date | : | Nov 03 - Nov 04 2024 (2.0416666666667 Days) | Location | : | Dubai, UAE | Classroom Fee (US$) | : | $ 5500 | Course Info |
Date | : | Jan 13 - Jan 17 2025 (5 Days) | Location | : | Abu Dhabi, UAE | Classroom Fee (US$) | : | $ 5500 | Course Info |
Date | : | Feb 09 - Feb 13 2025 (5 Days) | Location | : | Istanbul, Turkey | Classroom Fee (US$) | : | $ 6000 | Course Info |
Date | : | Apr 13 - Apr 17 2025 (5 Days) | Location | : | Al Khobar, KSA | Classroom Fee (US$) | : | $ 5500 | Course Info |
Date | : | Jun 29 - Jul 03 2025 (5 Days) | Location | : | Doha, Qatar | Classroom Fee (US$) | : | $ 6000 | Course Info |
Date | : | Jul 26 - Jul 30 2025 (5 Days) | Location | : | Kuwait City, Kuwait | Classroom Fee (US$) | : | $ 5500 | Course Info |
Date | : | Jul 27 - Jul 31 2025 (5 Days) | Location | : | Kuwait City, Kuwait | Classroom Fee (US$) | : | $ 5500 | Course Info |
Date | : | Sep 21 - Sep 25 2025 (5 Days) | Location | : | Dubai, UAE | Classroom Fee (US$) | : | $ 5500 | Course Info |
Date | : | Oct 11 - Oct 15 2025 (5 Days) | Location | : | Kuwait City, Kuwait | Classroom Fee (US$) | : | $ 5500 | Course Info |
Date | : | Oct 12 - Oct 16 2025 (5 Days) | Location | : | Kuwait City, Kuwait | Classroom Fee (US$) | : | $ 5500 | Course Info |
Course Description
Hydrogen sulfide, carbon dioxide, mercaptans and other contaminants are often found in natural gas streams. H2S is a highly toxic gas that is corrosive to carbon steels. CO2 is also corrosive to equipment and reduces the Btu value of gas. Gas sweetening processes remove these contaminants so the gas is suitable for transportation and use.
This course presents a complete and up-to-date overview of the Gas Sweetening, Liquid Hydrocarbon Sweetening and Sulphur Recovery with emphasis on gas plant process operations. The process flow sheets of several Sweetening and Sulphur Recovery Processes will be used to illustrate how the various operations differ. The advantages, limitations, and range of applicability of each process will be discussed so that its selection and integration into the overall plant is fully understood and appreciated.
Upon completing this course, you will have a good understanding of Gas Sweetening, Liquid Hydrocarbon Sweetening and Sulphur Recovery. There are many methods that may be employed to remove acidic components (primarily H2S and CO2) from hydrocarbon streams. The available methods may be broadly categorized as those depending on chemical reaction, absorption, or adsorption. Processes employing each of these techniques are described. Many of the processes result in acid gas streams that contain H2S that may be flared, incinerated, injected or fed to a Sulphur Recovery Unit. Various Sulphur Recovery Processes (primarily The Modified Claus Process) are discussed. You will also learn the basic vocabulary unique to the industry.
This course presents a complete and up-to-date overview of the Gas Sweetening, Liquid Hydrocarbon Sweetening and Sulphur Recovery with emphasis on gas plant process operations. The process flow sheets of several Sweetening and Sulphur Recovery Processes will be used to illustrate how the various operations differ. The advantages, limitations, and range of applicability of each process will be discussed so that its selection and integration into the overall plant is fully understood and appreciated.
Upon completing this course, you will have a good understanding of Gas Sweetening, Liquid Hydrocarbon Sweetening and Sulphur Recovery. There are many methods that may be employed to remove acidic components (primarily H2S and CO2) from hydrocarbon streams. The available methods may be broadly categorized as those depending on chemical reaction, absorption, or adsorption. Processes employing each of these techniques are described. Many of the processes result in acid gas streams that contain H2S that may be flared, incinerated, injected or fed to a Sulphur Recovery Unit. Various Sulphur Recovery Processes (primarily The Modified Claus Process) are discussed. You will also learn the basic vocabulary unique to the industry.
TRAINING METHODOLOGY
This interactive training course includes the following training methodologies:
LecturesWorkshops & Work Presentations
Case Studies & Practical Exercises
Videos, Software & Simulators
In an unlikely event, the course instructor may modify the above training methodology for technical reasons.
VIRTUAL TRAINING (IF APPLICABLE)
If this course is delivered online as a Virtual Training, the following limitations will be applicable:
Certificates | : | Only soft copy certificates will be issued |
Training Materials | : | Only soft copy materials will be issued |
Training Methodology | : | 80% theory, 20% practical |
Training Program | : | 4 hours per day, from 09:30 to 13:30 |
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