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Recovery and Evacuation Flashcards

6 cards from real ESCO A2L practice questions. Tap to flip, then mark Knew It or Still Learning โ€” missed cards come back until you master them.

Read the first 6 Recovery and Evacuation flashcards as text
  1. A technician is performing a recovery on a system containing the A2L refrigerant R-32. What is the most critical practice to prevent the dangerous condition of hydrostatic pressure build-up inside the recovery cylinder?

    Answer: Monitoring the weight of the cylinder to ensure it is not filled beyond 80% of its water capacity.

    Overfilling a recovery cylinder can lead to dangerously high pressures if the liquid refrigerant warms and expands, a condition known as hydrostatic pressure. To prevent this, regulations require that cylinders are not filled beyond 80% of their water capacity by weight, leaving a 20% vapor space for safe expansion.

  2. When evacuating a system that previously contained an A2L refrigerant, what is the primary reason for using a vacuum pump specifically rated for A2L or A3 refrigerants?

    Answer: They are designed with spark-proof motors and isolated electronics to prevent igniting residual refrigerant.

    The primary safety feature of an A2L-rated vacuum pump is its construction to prevent ignition. This includes features like sealed relays, spark-proof or brushless DC motors, and other designs that eliminate potential ignition sources from contacting any residual refrigerant vapor that passes through the pump.

  3. Which of the following recovery procedures is permissible for some refrigerants but is strictly prohibited for all HFC and HFO refrigerants, including A2Ls, under EPA Section 608 regulations?

    Answer: Intentionally venting refrigerant to the atmosphere.

    The EPA's "venting prohibition" under Section 608 of the Clean Air Act makes it illegal to intentionally release any HFC or HFO refrigerant (which includes all A2Ls) into the atmosphere during service, maintenance, or disposal of equipment.

  4. A technician is preparing to recover R-454B from a large commercial rooftop unit. To maximize efficiency and speed for removing the bulk of the charge, which recovery method should be used first?

    Answer: Use the push-pull method to remove the charge as a liquid.

    The push-pull method is the fastest way to recover large amounts of refrigerant. It uses the recovery machine to push high-pressure vapor into the system, which in turn pushes liquid refrigerant out of the system and into the recovery tank. After most of the liquid is removed, the remaining vapor can be recovered.

  5. After a major repair on an A2L system, such as a compressor replacement, the technician must pull a deep vacuum. What is the primary purpose of evacuating the system to 500 microns or lower?

    Answer: To remove atmospheric air and dehydrate the system by boiling off any moisture.

    The primary reason for achieving a deep vacuum (e.g., 500 microns) is to lower the boiling point of water to below ambient temperature. This causes any moisture in the system to vaporize so it can be removed by the vacuum pump. This dehydration process is critical for the chemical stability and proper operation of the refrigeration system.

  6. When setting up recovery equipment on a job site to service an A2L system, which of the following actions is a critical safety requirement to mitigate flammability risks?

    Answer: Ensure the recovery machine and cylinder are properly grounded.

    Because A2L refrigerants are flammable, preventing ignition from static electricity is a key safety measure. Properly grounding the recovery machine, recovery cylinder, and the system itself creates an equipotential bond, preventing the buildup of a static charge that could cause a spark.