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CPA1

Calculating the CO/CO2 ratio from analyser readings

Worked example · Note 1 of 15 · free to read

Convert CO and CO2 to the same units, divide, then compare the answer with the exact wording of the appliance's limit.

The method

  1. Read carbon monoxide (CO) in parts per million (ppm) and carbon dioxide (CO2) as a percentage.
  2. Convert the CO2 percentage to ppm. 1% = 10,000 ppm, so multiply the percentage by 10,000.
  3. Divide: CO/CO2 ratio = CO in ppm ÷ CO2 in ppm.
  4. Compare the answer with the exact wording of the limit in the appliance instructions, then check the CO reading against its own limit.

Example 1: 80 ppm CO and 8.0% CO2

  1. CO2 in ppm: 8.0 × 10,000 = 80,000 ppm.
  2. Ratio: 80 ÷ 80,000 = 0.0010.

Example 2: 100 ppm CO and 5.0% CO2

  1. CO2 in ppm: 5.0 × 10,000 = 50,000 ppm.
  2. Ratio: 100 ÷ 50,000 = 0.002.

Check it the other way: 100 ppm is 0.01%, and 0.01 ÷ 5.0 also gives 0.002.

Example 3: 240 ppm CO and 4.0% CO2

  1. CO2 in ppm: 4.0 × 10,000 = 40,000 ppm.
  2. Ratio: 240 ÷ 40,000 = 0.006. This sample has more CO relative to CO2 than Example 2.

A ratio written as "1 to 250"

Divide the first number by the second: 1 ÷ 250 = 0.004. This is a number conversion, not a universal pass mark.

Comparing with a limit

Suppose the instructions for the appliance require a ratio below 0.004:

  • 0.002 meets the condition.
  • 0.006 does not.
  • Exactly 0.004 does not, because equal is not below. Where a limit is worded "at or below", the same reading would meet it.

Common mistakes

  • Dividing ppm by a percentage without converting: 80 ÷ 8.0 gives 10, not 0.0010.
  • Treating 0.004 as a universal pass mark. Use the limit for the actual appliance, fuel and operating condition.
  • Stopping at the ratio. A ratio that meets its limit does not cancel a CO reading above the appliance's CO limit or the other required checks.
  • Selecting or averaging readings to land within the limit. Record the true, stable figures from a calibrated analyser.