How can you control the exposure to propane and its combustion products?
Regular maintenance, tuning of propane-powered engines, and inspection of vehicle exhaust systems for leaks help keep the exposure to a minimum.
To control exposure to propane during refuelling, the general recommended procedures include:
The OSH Answers on Forklift Trucks - Safe Handling of Propane (LPG) Fuel discusses how to change and handle propane tanks.
The refuelling area should be equipped with a fire extinguisher.
When using propane-powered equipment indoors, ensure that there is adequate ventilation in the workplace. Exposure to toxic or hazardous gases or fumes should be kept to a minimum and well within established occupational exposure limits. Some jurisdictions may recommend specific ventilation rates.
In the Industrial Ventilation: A Manual of Recommended Practice for Design, 30th edition (2019) published by the American Conference of Governmental Industrial Hygienists (ACGIH), they provide recommended dilution ventilation rates based on average operating conditions as 10,000 acfm (5.00 am3/s) (or more) per propane fueled operating truck, where acfm stands for "actual flow rate in cubic feet per minute". This recommendation applies when:
Check with your jurisdiction for occupational health and safety recommendations or requirements for propane-powered forklift trucks or other vehicles used indoors, and what exposure limit values may be enforced in your area.
- administrative storage, refilling and handling of liquid propane fuel by qualified or trained personnel
- requirement refuelling or exchanging removable propane cylinders outdoors or in well-ventilated areas, away from sources of ignition
- requirement vehicles are maintained regularly and appropriately
- requirement lift trucks are used less than 50% of the working day (less than 4 hours in an 8-hour shift)
- requirement a reasonably good air flow distribution
- requirement volume of space is 150,000 ft3 (13,500 m3) per lift truck or more
- requirement lift truck is powered by an engine of less than 60 horsepower (745 watts) [Note: ACGIH cites the conversion of 60 horsepower as 745 watts; however, 1 mechanical horsepower is approximately 745 watts, making the conversion 44,742 watts.]