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Industro Model B Orsat Analyzer

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  • Method 3 - Industro Model B Orsat Analyzer
Method 3
Discontinued
SKU:
06502

 Product Description

 Method 3 Flue Gas Analyzer

Method 3 - Industro Model B Orsat Analyzer

Industro Model B Orsat Analyzer Flue Gas AnalyzerFeatures

  • The Method 3 INDUSTRO-B is a simplified instrument for the rapid and accurate field analysis of gas mixtures.
  • For the determination of carbon dioxide, oxygen and carbon monoxide in gas mixtures.
  • Commonly used in the analysis of chimney gases for the regulation of combustion in coal-, oil-, and gas-fired furnaces.
  • It can also be used for combustion control, furnace atmosphere analysis, air-leak detection, research and plant control, calibration of control instruments, and EPA testing.
  • Minimum number of glass parts combined with metal components for rugged field applications.
  • Two auto-bubbler pipettes and one contact pipette.
  • Bulb type burette, 50 ml. graduated 0 to 21% in 0.2%.
  • Carrying case
  • Operating instructions
  • Price also includes one 3 ounce bottle of each Reagent.
  • Reagents are: Oxsorbent, Di-Sorbent, Cosorbent and Burette Solution.
  • DIMENSIONS: 15 inches high x 9 inches wide x 4 inches deep.
  • WEIGHT: 10 pounds

Clean Air Express gas Analyzer rapidly analyzes gas mixtures, specifically to determine carbon dioxide, oxygen and carbon monoxide.

  • Burrell Allied Cabinet Model Gas Analyzer:
    • Graduated 100-ml gas measuring burette, one contact and two auto bubbler absorption pipettes for determining carbon dioxide, oxygen, and carbon monoxide levels.
  • Burrell Industro Model B Gas Analysis System:
    • Graduated 0-21% gas measuring burette, one contact and tow auto bubbler absorption pipettes for determining carbon dioxide, oxygen, and carbon monoxide levels. Solutions included.
Part Number
Item
0650
Allied cabinet model (A)
0650-1
Same as 0650 with three contact bubblers
0650-2
Industro model B (B)
The operating principle consists of subjecting a measured volume of the gas sample to successive contact with chemical solutions which serve to absorb the specific components; carbon dioxide, oxygen and carbon monoxide from the mixture. The decrease in volume of the sample, after each contact, is the basis for calculating the percentage of a specific gas in the gas mixture.

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