
BIOLOGICAL PROCESS AND MICROBES IN INDUSTRIAL EFFLUENT TREATMENT SYSTEM
28 - 29 SEPTEMBER 2026
12 CPD Approved by EiMAS
COURSE INTRODUCTION
Participants will explore the critical role of biological processes and microbial activity in the treatment of industrial effluents. As industries continue to expand, the need for effective and sustainable wastewater treatment solutions becomes increasingly vital. This course delves into the science behind using microorganisms to degrade pollutants and treat wastewater, offering a comprehensive understanding of both conventional and advanced biological treatment methods. By the end of the course, participants will be capable of relating to these processes in practical contexts. This heightened understanding will enable them to conduct root cause analyses, particularly in addressing upset conditions, thereby facilitating compliance with effluent standards.
COURSE OBJECTIVES
By the end of this programme, participants should be able to:
- Explain how microbial communities remove pollutants in industrial effluent treatment.
- Compare aerobic, anaerobic, facultative and suspended-growth treatment processes.
- Interpret biological indicators that reveal activated-sludge health and process stability.
- Relate aeration, alkalinity, volatile fatty acids and loading conditions to treatment performance.
- Diagnose common biological-process upsets using observations and operating data.
- Recommend corrective controls that support stable operation and effluent compliance.
WHO SHOULD ATTEND
This programme is suitable for waste water Manager, EHS Manager, Safety Executive, Environmental Executive, WWTP Engineer.
COURSE CONTENT
- Industrial effluent characteristics and Department of Environment compliance requirements
- Biological-treatment principles and suspended-growth systems
- Activated-sludge microbiology and the role of microbial communities
- Aerobic, anaerobic and facultative treatment processes
- Conventional activated sludge, extended aeration and UASB systems
- Aeration, volatile fatty acids, alkalinity and process stability
- Filamentous bacteria, process upsets and common biological indicators
- Performance evaluation, root-cause analysis and corrective control measures






