10.4 - Core Memorization Sheet
Module: Universal Review and Mock Examinations
Purpose: One-page-target rapid review of the highest-priority Core facts before Universal mock examinations
Covers: Core material consolidated from Modules 1–6
Regulatory verification basis: Current project material verified through August 14, 2026
Use: Memorize the distinctions, rules, and safety principles below; return to the detailed module files when a condition or exception is unclear
1. Ozone and Environmental Effects
Ozone
O3 = ozone
- Stratospheric ozone: beneficial; absorbs much harmful ultraviolet radiation.
- Ground-level ozone: harmful air pollutant.
- Less stratospheric ozone means more harmful UVB can reach Earth’s surface.
Ozone-Depletion Sequence
CFC / HCFC released
→ transported to stratosphere
→ UV breaks molecule apart
→ chlorine released
→ catalytic ozone destruction
→ chlorine regenerated and can repeat the cycle
ODP and GWP
| Term | Meaning | Reference |
|---|---|---|
| ODP | Relative ability to destroy stratospheric ozone | CFC-11 reference |
| GWP | Relative climate-warming effect over a stated time horizon | CO2 reference |
Do not confuse: Zero ODP does not mean zero GWP, zero flammability, zero toxicity, or automatic regulatory acceptability.
2. Refrigerant Families
| Family | Contains Chlorine? | ODP Pattern | High-Priority Reminder |
|---|---|---|---|
| CFC | Yes | Significant | Major historical ozone-depleting family |
| HCFC | Yes | Lower than CFC but nonzero | Transitional ozone-depleting family |
| HFC | No | Zero | Many have significant GWP |
| HFO | No | Zero | Many have lower GWP; some are mildly flammable |
| Hydrocarbon | No | Zero | Low GWP; flammability is important |
| R-744 CO2 | No chlorine | Zero | Very high operating pressure |
| R-717 ammonia | No chlorine | Zero | Toxicity and flammability considerations |
| R-718 water | No chlorine | Zero | Used in specialized applications |
Blend Reminder
- Zeotropic / near-azeotropic blends: may have temperature glide.
- When required to avoid fractionation, remove the blend from the source cylinder as liquid.
- For superheat with a zeotropic blend, use dew point.
- For subcooling with a zeotropic blend, use bubble point.
3. Clean Air Act and Montreal Protocol
Clean Air Act
→ U.S. federal law
Section 608
→ stationary refrigeration / air-conditioning refrigerant management
→ 40 CFR Part 82, Subpart F
Montreal Protocol
→ international agreement
→ controls ozone-depleting substances
High-Priority Distinction
PRODUCTION / IMPORT PHASEOUT
≠
AUTOMATIC BAN ON USING EXISTING EQUIPMENT
Recovered, recycled, or reclaimed refrigerant may continue to be used where permitted.
Section 608 Versus Section 609
Section 608
→ stationary appliances
Section 609
→ MVAC service for consideration
Universal Section 608 certification does not replace Section 609 certification for paid MVAC service.
4. Venting
Central Rule
DO NOT KNOWINGLY VENT COVERED REFRIGERANT
during maintenance, service, repair, or disposal
Permitted Release Categories
- De minimis release during a good-faith recovery, recycling, or safe-disposal attempt.
- Release during normal operation rather than service or disposal.
- Release of an EPA-exempt substitute in the specified end use.
Nitrogen Trap
Nitrogen alone
→ may be released safely after pressure testing
Nitrogen + covered refrigerant
→ DO NOT intentionally vent the mixture
Exam trap: Zero ODP does not automatically mean venting is allowed.
5. Refrigerant Sales
Stationary Refrigerant
Section 608 certified technicians may purchase refrigerant within the current Section 608 sales-restriction framework.
Section 609
Section 609 certification provides purchase authority for refrigerants acceptable for MVAC use within its scope.
Section 609 credential
≠
authority to buy stationary-system refrigerant such as R-22
Small-Can MVAC Exception
An uncertified person may purchase a qualifying small can of non-exempt substitute refrigerant for DIY MVAC use when the container is:
- 2 lb or less.
- Equipped with a unique fitting.
- Equipped with a self-sealing valve.
This exception does not authorize paid MVAC service or intentional venting.
6. The Three Rs
| Term | Memory Word | Meaning |
|---|---|---|
| Recover | REMOVE | Remove refrigerant and store it in an external container |
| Recycle | CLEAN | Clean recovered refrigerant for permitted reuse |
| Reclaim | VERIFY | Reprocess to the applicable purity specification and verify purity |
Ownership Reminder
Same owner
→ recovered / recycled refrigerant may be reused where technically suitable
Different owner
→ used refrigerant generally must follow the reclamation pathway before transfer for use as refrigerant
7. Recovery Equipment
System-Dependent
Uses appliance compressor and/or refrigerant pressure
- Ordinary system-dependent equipment is not used on appliances with a full charge greater than 15 lb, except for the permanently attached pump-out-unit provision.
Self-Contained
Has its own means to draw refrigerant from the appliance
Recovery Equipment Date
November 15, 1993
→ recovery/recycling equipment date
→ NOT appliance manufacture date
Recovery-Speed Principles
Faster recovery generally comes from:
- Shorter hoses.
- Larger hose diameter.
- Removing restrictions.
- Recovering bulk liquid first where appropriate.
- Using useful high- and low-side access.
- Safely controlling appliance and recovery-cylinder temperatures.
8. Recovery Cylinders
RECOVERY CYLINDER
→ refillable
→ receives recovered refrigerant
DISPOSABLE CYLINDER
→ one-way container
→ DO NOT refill
→ DO NOT use for recovery
Fill Safety
- Do not overfill recovery cylinders.
- Project exam-preparation rule: 80% maximum fill concept.
- Use a scale.
- More restrictive manufacturer, refrigerant, or transportation limits control actual field filling.
- Keep different refrigerants in separate cylinders.
- Never heat a cylinder with an open flame.
- Secure cylinders during transportation and protect them from excessive heat.
Do not confuse: Type I 80% recovery and cylinder 80% fill are different concepts.
9. Evacuation and Dehydration
Recovery Versus Evacuation
RECOVERY
→ remove + capture refrigerant
EVACUATION / DEHYDRATION
→ remove air + moisture
A vacuum pump is not a substitute for a recovery machine.
Pressure Scales
0 psig
≈ atmospheric pressure
≠ perfect vacuum
psig
→ referenced to atmosphere
psia
→ referenced to perfect vacuum
For vacuum scales:
in. Hg vacuum
→ larger number = deeper vacuum
mm Hg absolute / microns
→ smaller number = deeper vacuum
Standing Vacuum
After evacuation, isolate the system and observe pressure behavior.
- Rapid rise can indicate a leak.
- Slower rise that tends to stabilize can indicate remaining moisture / outgassing.
- Exact acceptance criteria may be manufacturer- or procedure-specific.
Triple Evacuation
A dehydration method may use:
evacuate
→ break vacuum with dry nitrogen
→ evacuate again
→ repeat as required
Dry nitrogen helps sweep moisture; it does not replace the final evacuation.
10. Safety
PPE
Use appropriate:
- Safety glasses / goggles.
- Gloves suitable for refrigerant exposure.
- Protective clothing and footwear.
- Additional PPE required by the refrigerant, task, and workplace.
Liquid refrigerant can cause:
FROSTBITE / EYE INJURY
Asphyxiation
Many refrigerants can displace oxygen.
Refrigerant vapor may collect in low areas
Do not enter an unsafe atmosphere without proper hazard assessment and required respiratory / confined-space controls.
Nitrogen Pressure Testing
Use:
DRY NITROGEN
+
PRESSURE REGULATOR
+
DOWNSTREAM RELIEF PROTECTION
Never use:
OXYGEN
or
COMPRESSED AIR
for refrigerant-system pressure testing.
Fire and Decomposition
- Keep refrigerants away from open flames and hot surfaces.
- High temperatures can produce hazardous decomposition products.
- Refrigerant-air mixtures under pressure can create dangerous conditions.
- Flammable refrigerants require control of ignition sources and compatible service equipment.
Electrical Safety
Before service:
DE-ENERGIZE
→ LOCKOUT / TAGOUT where required
→ VERIFY safe condition
A compressor that is not running may still have energized components.
11. Core Numbers and Words to Know Cold
| Item | Memorize |
|---|---|
| Small-can DIY MVAC sales exception | 2 lb or less + unique fitting + self-sealing valve |
| Ordinary system-dependent recovery limit | >15 lb full charge prohibited unless permanent pump-out |
| Recovery-equipment date | November 15, 1993 |
| Recovery-cylinder exam fill concept | 80% |
| Common Section 608 record-retention period | 3 years in many applicable records |
| Universal project readiness target | 22/25 twice in each section |
High-Risk Exam Words
NOT • EXCEPT • MINIMUM • MAXIMUM • FIRST • LAST
CURRENT • HISTORICAL • REQUIRED • PROHIBITED
ABSOLUTE • GAUGE • RECOVER • RECYCLE • RECLAIM
12. Core Final Memory Map
OZONE
→ stratosphere protects from UV
→ chlorine / bromine can catalytically destroy ozone
CFC / HCFC
→ chlorine
→ nonzero ODP
HFC / HFO
→ no chlorine
→ zero ODP
CLEAN AIR ACT §608
→ U.S. stationary refrigerant management
MONTREAL PROTOCOL
→ international ODS control
NO INTENTIONAL VENTING
→ recover refrigerant
RECOVER → REMOVE
RECYCLE → CLEAN
RECLAIM → VERIFY
SYSTEM-DEPENDENT
→ appliance-assisted
SELF-CONTAINED
→ own recovery means
RECOVERY CYLINDER
→ refillable
DISPOSABLE CYLINDER
→ never refill
RECOVERY
≠
EVACUATION
NITROGEN
→ regulator + relief protection
NO oxygen / compressed air
PPE + ventilation + electrical safety
→ ALWAYS