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Course code: 000546
School of Engineering
Discipline: Gas processing
GASP008 - Modern methods of oil and gas purification
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Currently, this course is conducted only in an intracorporate format.
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What this course about?

The seminar "Modern Methods of Oil and Gas Purification" will focus on studying the main methods of separation and preparation of oil and gas, as well as modern energy-saving technologies for gas purification from acidic components. It will cover the processing of natural and associated petroleum gases, as well as the treatment of wastewater and industrial water, including the removal of petroleum products. Special attention will be given to the main directions for improving the repair of existing gas processing equipment. The seminar will also include examples of successful implementation of these methods in the industry and their impact on environmental indicators.

The seminar will cover the following topics and sections:

• Explanation of effective methods for separating crude oil obtained from wells into gas, oil, and formation water for subsequent processing

• Explanation of natural and associated petroleum gas processing

• Explanation of the principles of modern gas purification technologies from acidic components

• Explanation of the types of wastewater and industrial water and stages and methods of their purification, including the removal of petroleum products

• Explanation of the differences between fixed (adopted) principles of technical maintenance and repair and a flexible methodology that will determine efficiency and improvement in work execution

• Explanation of the organization and safe conduct of work with electrical equipment at oil and gas processing enterprises performed as part of current operations

• Explanation of the hazardous area classification system

• Explanation of the potential danger of high voltage and training of an authorized person to perform high voltage switching

• Implementation of emergency shutdown systems and explanation of their functions and methods of operation

• Explanation of the basics of programmable logic controllers (PLC)

Who is this course for?
Heads of oil and gas preparation shops, steam and water supply, and boiler houses, repair and mechanical shops, central electric stations, and instrumentation and control systems.
What will you learn?
  • Explain methods for processing crude oil to obtain gas or liquids used to enhance crude oil extraction from a reservoir
  • Explain methods for processing crude oil to ensure these substances become suitable for transportation or local use
  • Explain methods for processing crude oil for waste preparation and safe local disposal
  • Explain natural and associated petroleum gas processing
  • Explain the differences between physical-energy, thermochemical, chemical-catalytic methods of hydrocarbon gas processing
  • Explain the differences and analyze the efficiency and energy-saving of gas purification from acidic components of the aforementioned technologies and processes
  • Explain and select the best technologies for existing wastewater treatment and petroleum product removal and for designing new ones
  • Explain the 13 essential elements of improving technical maintenance and repair
  • Practically apply critical requirements for this process
  • Ensure that any electrical equipment and power supply meet the country's rules and standards and are used, tested, and maintained safely according to the measures described above
  • Classify hazardous areas
  • Explain the coding of equipment used in hazardous areas
  • Illustrate one-way and two-way barriers and explain how to test them
  • List all steps of safe high voltage switching
  • Explain actions at each switching step
  • Use a high voltage tester
  • Explain the principle of "grounding"
  • Identify devices used in emergencies and emergency shutdown systems and explain how they work
  • Describe the function of the emergency shutdown system (ESD)
  • Explain the difference between PLC systems and old relay systems, the operation of a simple ladder diagram (PLC), the function of Allen-Bradley PLC components
  • Explain using a block diagram three main PLC systems, single, double, and triple redundant PLC
Courses in this discipline (7)
Course outline
  • Gas processing
  • Oil processing
  • Formation water processing
  • Absorption and adsorption processes
  • Direct oxidation of hydrogen sulfide and catalytic methods
  • Microbiological purification
  • Membrane technology
  • Compression processing
  • Absorption processing
  • Low-temperature processing
  • Types and classification of wastewater and industrial water
  • Preliminary treatment - coagulation, flotation, mixing, settling
  • Primary treatment - sedimentation, flotation, gravity separation, filtration, demulsification
  • Secondary treatment - chemical oxidation (reduction), chemical neutralization, biochemistry, electrocoagulation, electric flotation, electrolysis, electrodialysis, membrane separation
  • Advanced treatment - adsorption on activated carbon (organic substances), reverse osmosis (salts), ion exchange (inorganic substances)
  • Contour model for maintenance and repair improvement
  • Design and organization
  • Work list control
  • Contract strategy
  • Cost control
  • Logistics
  • Cost and risk optimization
  • Electrical safety work
  • Organizational and current measures ensuring safety
  • Documentation list for the responsible electrical manager
  • Organization of work in electrical installations by delegated personnel
  • Classification of premises by the degree of electric shock hazard
  • Hazardous areas
  • Equipment used in hazardous areas
  • Safety barriers
  • Equipment insulation
  • Lockouts and tagouts
  • Grounding
  • Work permits, obtaining work permits
  • ESD system construction
  • Description of the ESD system
  • Logical control schemes
  • PLC systems
  • Ladder diagrams
  • Relay systems and comparison with PLC
  • Examples of PLC systems
  • Simple PLC shutdown system
Eni
Total
Eni
Endesa
Shell
Chevron
Gas Natural
Iberdrola
Eni
Inpex
Eni
Exonmobile

Training can take place in 4 formats:

  • Self-paced
  • Blended learning
  • Instructor-led online (webinar)
  • Instructor-led offline (classroom)

Description of training formats:

  • Self-paced learning or e-Learning means you can learn in your own time and control the amount of material to consume. There is no need to complete the assignments and take the courses at the same time as other learners.
  • Blended learning or "hybrid learning" means you can combine Self-paced learning or e-Learning with traditional instructor-led classroom or webinar activities. This approach requires physical presence of both teacher and student in physical or virtual (webinars) classrooms or workshops. Webinar is a seminar or presentation that takes place on the internet, allowing participants in different locations to see and hear the presenter, ask questions, and sometimes answer polls.
  • Instructor-led training, or ILT, means that the learning can be delivered in a lecture or classroom format, as an interactive workshop, as a demonstration under the supervision and control of qualified trainer or instructor with the opportunity for learners to practice, or even virtually, using video-conferencing tools.

When forming groups of students, special attention is paid to important criteria - the same level of knowledge and interests among all students of the course, in order to maintain stable group dynamics during training.

Group dynamics is the development of a group in time, which is caused by the interaction of participants with each other and external influence on the group. In other words, these are the stages that the training group goes through in the process of communicating with the coach and among themselves.

The optimal group size for different types of training:

  • Self-paced / E-learning: 1
  • Instructor-led off-line (classroom): 6 – 12
  • Instructor-led on-line (webinar): 6 – 12
  • Blended learning: 6 – 12
  • Workshop: 6 – 12
  • On-the-job: 2 – 4
  • Simulator: 1 – 2

Feedback in the form of assessments and recommendations is given to students during the course of training with the participation of an instructor and is saved in the course card and student profile.

In order to control the quality of the services provided, students can evaluate the quality and training programme. Forms of assessment of the quality of training differ for courses with the participation of an instructor and those that are held in a self-paced format.

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Based on the results of training, students are issued a certificate of training. All training certificates fall into three main categories:

  • Certificate of Attendance - students who successfully completed the course but did not pass the tests and exams can apply for a certificate of attendance.
  • Certificate of Completion - students who have successfully completed a course could apply for a Certificate of Completion, this type of certificate is often required for compliance training.
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During the training, you may encounter various forms of testing and knowledge testing. The most common assessment methods are:

  • preliminary (base-line assessment) - to determine the current level of knowledge and adapt the personal curriculum
  • intermediate - to check the progress of learning
  • final - to complete training and final assessment of knowledge and skills, can be in the form of a project, testing or practical exam

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We want you to be happy, so almost all purchased courses can be returned within 30 days. If you are not satisfied with the course, you can request a refund, provided the request complies with our return policy.

The 30-day money back policy allows students to receive quality teaching services with minimal risk, we must also protect our teachers from fraud and provide them with a reasonable payment schedule. Payments are sent to instructors after 30 days, so we will not process refund requests received after the refund period.

We reserve the right, in our sole discretion, to limit or deny refund requests in cases where we believe there is refund abuse, including but not limited to the following:

  • A significant portion of the course has been consumed or downloaded by a student before the refund was requested.
  • Multiple refunds have been requested by a student for the same course.
  • Excessive refunds have been requested by a student.
  • Users whose account is blocked or access to courses is disabled due to violation of our Terms and Conditions or the Rules of Trust and Security.
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Smart Virtual Classroom (open digital / virtual classroom).

Conducting classes is based on the fact that the teacher demonstrates text, drawings, graphics, presentations on an interactive board, while the content appears in the student's electronic notebook. A specially designed digital notepad and pen are used to create and edit text and images that can be redirected to any surface via a projector.

Classes are live streamed online, automatically recorded and published on the Learning Portal, allowing you to save them for reuse anytime, anywhere, on any mobile device. This makes it possible not to miss classes and keep up with classes and keep up with the passage of new material.

Game Based Learning (learning using a virtual game environment)

Real-life training uses the principles of game organization, which allows future professionals to rehearse and hone their skills in a virtual emergency. Learning as a game provides an opportunity to establish a connection between the learning activity and real life.

The technology provides the following learning opportunities:

  • Focused on the needs of the user
  • Instant feedback
  • Independent decision making and choice of actions
  • Better assimilation and memorization of the material
  • Adaptive pace of learning tailored to the individual needs of the student
  • Better transfer of skills learned in a learning situation to real conditions

Basic principles of training:

  • A gradual increase in the level of difficulty in the game;
  • Using a simplified version of a problem situation;
  • Action in a variable gaming environment;
  • The right choice is made through experimentation.

The main advantages of Game Based Learning technology:

  • Low degree of physical risk and liability
  • Motivation to learn while receiving positive emotions from the process;
  • Practice - mirroring the real situation
  • Timely feedback
  • Choice of different playing roles
  • Learning in collaboration
  • Developing your own behavior strategy
Laboratory workshops using remote access technologies

Conducting practical classes online using remote access technologies for presentations, multimedia solutions and virtual reality:

  • Laboratory workshops that simulate the operation of expensive bench equipment in real production
  • Virtual experiment, which is visually indistinguishable from a remote real experiment performed
  • Virtual instruments, which are an exact copy of real instruments
  • Mathematical modeling to clarify the physical characteristics, chemical content of the investigated object or phenomenon.
GASP008 - Modern methods of oil and gas purification
Discipline: Gas processing
Language: English, Russian
Level: Intermediate
mail@tecedu.org
+7 747 898 5041
+7 7182 901 933