Renewable Energy: Biomass and Biogas Power plant
Start Date | End Date | Venue | Fees (US $) | ||
---|---|---|---|---|---|
Renewable Energy: Biomass and Biogas Power plant | 30 Nov 2025 | 04 Dec 2025 | Dubai, UAE | $ 3,900 | Register |

Renewable Energy: Biomass and Biogas Power plant
Start Date | End Date | Venue | Fees (US $) | |
---|---|---|---|---|
Renewable Energy: Biomass and Biogas Power plant | 30 Nov 2025 | 04 Dec 2025 | Dubai, UAE | $ 3,900 |
Introduction
Sustainability and energy efficiency are key concepts extensively adopted by the chemical and power industry that are fundamental to optimize the production process and to guarantee on the other hand the ability of future generations to use resources in order to meet their needs. Through accurate management activity, it is possible to accomplish these goals obtaining at the same time higher economic results and awareness about regulatory and environmental issues.
Objectives
- Understand how sustainability and energy efficiency are achieved in the industry
- Learn about strategies and approaches useful for energy managers
- Learn about sustainable and efficient ways to produce and convert energy
- Identify the critical steps needed for realizing a sustainability plan
In this course you will:
Training Methodology
This training course will utilize a variety of proven adult learning techniques to ensure maximum understanding, comprehension, and retention of the information presented. The daily workshops will be highly interactive and participative. The illustration will depend on videos and photos. In addition, the training course delivery emphasizes the use of group discussions and case studies to ensure participants can put the newly learned concepts to use.
Who Should Attend?
This course is intended for professionals involved in sustainable energy management. These are in particular sustainability managers, plant managers, plant supervisors, plant engineers, process engineers, utility engineers, and process technologists.
Course Outline
Day1:
- Thermodynamic principles
- Energy consumption
- Lost work
- Causes and effects of entropy generation
- Reduction of lost work
- Interpretation and applications of the exergy concept
- Chemical exergy
- Energy conversion analysis
- Analysis of separation methods
Day 2:
- Chemical conversion
- Sustainable development
- Energy efficiency
- Carbon capture and sequestration
- Green chemistry
- Biofuels
Day 3:
- Solar energy conversion
- Hydrogen technology
- Heat integration methodologies
- Energy management strategy and planning Implementation of sustainable energy management
- Organizational structure
- Corporate culture
Day 4:
- Strategy controlling and auditing
- System approach
- Eco-management approach
- Total quality management approach
- Life cycle analysis
Day 5:
- Gap analysis
- The exploitation of renewable energy sources
- Risk management
- Sustainable energy development monitoring