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Managing Indoor Air Pollution: HVAC Systems and Filtration Techniques

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Managing Indoor Air Pollution: HVAC Systems and Filtration Techniques

4(69)
2 enrolled
1160 views
COMPLETED
2 hrs
Mar 21, 2026 · 1:00 PM
English
1160 views
Yogesh Kulkarni
Yogesh Kulkarni
  • Session recordings included
  • Certificate of completion
  • Foundational Learning
  • Access to Study Materials
Volume pricing for groups of 5+

Why enroll

Mastering indoor air pollution management can significantly enhance your career prospects in the HVAC, facilities management, and environmental health industries. With this expertise, you'll be in high demand as an Indoor Air Quality (IAQ) Specialist, HVAC System Designer, or Facilities Manager. Your knowledge will enable you to design and implement effective air quality control strategies, improving occupant health and productivity. You'll be competitive for senior roles like Senior HVAC Engineer, Environmental Health Specialist, or Sustainability Manager, and be well-positioned to pursue certifications like CIEC, CMC, or LEED AP. Unlock new opportunities and take your career to the next level with this specialized skillset.

Is this course for you?

You should take this if

  • You work in Aerospace or Automotive
  • You're a Chemical & Process / Mechanical Engineering professional
  • You prefer live, instructor-led training with Q&A

You should skip if

  • You need a different specialisation outside Chemical & Process
  • You need fully self-paced, on-demand content

Course details

This comprehensive course covers the principles and practices of managing indoor air pollution using HVAC systems and filtration techniques. Students will learn how to:

- Identify and assess indoor air pollutants

- Understand HVAC system design and operation for air quality control

- Select and install effective air filtration systems

- Implement ventilation and air exchange strategies

- Maintain and monitor HVAC systems for optimal air quality

- Apply industry standards and guidelines for indoor air quality

Course suitable for

Key topics covered

Introduction to Indoor Air Pollution (10 minutes)
Understanding the sources and effects of indoor air pollution.

Role of HVAC Systems in Air Quality (15 minutes)
How HVAC systems impact indoor air quality.

Types of Indoor Air Pollutants (15 minutes)
Identifying and categorizing common indoor air pollutants.

Filtration and Ventilation Strategies (15 minutes)
Strategies for effective air filtration and ventilation.

HVAC System Upgrades for Improved Air Quality (15 minutes)
Exploring HVAC system enhancements for better air quality.

Maintenance and Filter Replacement (10 minutes)
The importance of regular maintenance and filter replacement.

Air Quality Monitoring and Measurement (10 minutes)
Tools and methods for monitoring indoor air quality.

Q&A and Resources (15 minutes)
An opportunity for participants to ask questions and access additional learning materials.

Opportunities that await you!

Career opportunities

Training details

This is a live course that has a scheduled start date.

Live session

Starts

Sat, Mar 21, 2026

1:00 PM UTC· your timezone

Duration

2 hours per day

Where this fits — what comes before, what comes next

COMPLETED

Mar 21, 2026 · 1:00 PM

Questions and Answers

A: A: Orientation and bypass are zero-power checks. If the arrows are wrong or there's a gap, everything downstream lies. B: ΔP means nothing until you know air is going the right way and not leaking around the frames. C: Jogging the fan before confirming physical install risks pulling filters off their seats. D: Paper compliance doesn't stop a backwards filter from dumping dust into the coil.

A: A: That's exactly the particle size HEPA is meant to catch. B: Again particulate, even if the source is outdoors. C: Vapors pass straight through fibrous media; you need adsorption or dilution. D: Droplets behave like particles once airborne, filtration still helps.

A: A: Outdoor air fraction stayed fixed, but total flow dropped. OA in cfm fell with it. B: Drift doesn't line up with a controls change across multiple rooms. C: Stratification doesn't create a sustained CO₂ rise tied to occupancy. D: Forcing the damper masks the real miss and can break humidity control.

A: A: Volume is 10,000 ft³. 500 cfm is 30,000 ft³/hr. That's about three air changes. B: That would imply only 5,000 ft³/hr, off by a factor of six. C: Mixing losses don't multiply flow by three. D: Occupancy doesn't change the math on volume and flow.