HFC BlendA1 Safety ClassGWP 1,820
Refrigerant Technical Guide

R407F RefrigerantA1 refrigeration blend · lower-GWP than R404A / R507A · legacy transition role

R407F is a nonflammable HFC blend used mainly in commercial refrigeration and retrofit discussions around R404A and R507A systems. Its GWP is lower than R404A, but it is still a relatively high-GWP refrigerant by today’s transition standards. That makes R407F useful as a bridge or legacy transition fluid rather than a long-term “future-proof” endpoint.

Technical review updated: August 27, 2026
R407F at a glanceReference data
Composition / FormulaR32 / R125 / R134a = 30 / 30 / 40HFC Blend
100-Year GWP1,820Current page reference
Safety ClassA1ASHRAE classification
ODP0Ozone depletion potential
Phase BehaviorZeotropic blendHow the refrigerant behaves
Why it mattersEPA SNAP tables commonly show GWP 1,820; some older secondary materials round to about 1,825.Technical context
Overview

What is R407F refrigerant?

R407F should be understood as a practical A1 refrigeration blend from the earlier transition era. EPA composition tables identify it as 30% R32, 30% R125 and 40% R134a, and EPA SNAP tables commonly show GWP 1,820 with A1 safety classification. It has real relevance because it was positioned as a lower-GWP alternative to R404A / R507A, especially in low- and medium-temperature refrigeration, but the current regulatory direction increasingly favors even lower-GWP options.

R407F is a nonflammable HFC blend used mainly in commercial refrigeration and retrofit discussions around R404A and R507A systems. Its GWP is lower than R404A, but it is still a relatively high-GWP refrigerant by today’s transition standards. That makes R407F useful as a bridge or legacy transition fluid rather than a long-term “future-proof” endpoint.

Technical Snapshot

R407F technical properties

Core reference data and selection notes for R407F based on the positioning used in this page.

DesignationR407FASHRAE refrigerant designation
Nominal compositionR32 / R125 / R134a = 30 / 30 / 40EPA composition table
Refrigerant typeZeotropic HFC blendBlend with glide
ODP0No ozone depletion
100-year GWP1,820Common EPA SNAP table value
Older rounded references≈1,825Some secondary EPA materials
Safety classificationA1Nonflammable
Primary roleCommercial refrigerationOften discussed vs R404A / R507A
Application rangeLow- and medium-temperature refrigerationCommercial systems
Selection themeA1 transition refrigerantBridge from very high GWP legacy blends
Applications

Where R407F is used

These are the most relevant application contexts for R407F in practical HVACR and thermal-system discussions.

Commercial ice machines

EPA lists R407F as acceptable in commercial ice machines.

Stand-alone low-temperature equipment

EPA tables listed R407F for certain stand-alone low-temp uses, though newer transition rules restrict many new high-GWP uses.

Remote condensing / supermarket discussions

R407F is often evaluated in commercial refrigeration where R404A or R507A legacy systems are involved.

Medium-temperature refrigeration

Can be used where capacity and efficiency tradeoffs fit the application.

Low-temperature refrigeration

Often discussed where a nonflammable R404A-class transition blend is preferred.

Legacy installed-base management

Relevant as part of the “keep, retrofit, or replace” decision for older refrigeration assets.

Deep Dive

Detailed analysis

Why R407F mattered in the first transition wave

R407F became relevant because it offered a step down from the extremely high GWP of R404A while retaining A1 safety. At the time, that made it attractive for operators who wanted a more practical change than a complete technology shift.

This historical role still matters for content strategy because many installed systems, service decisions and archived technical documents still reference R407F.

A strong page should therefore explain both its original value and its current regulatory limitations.

R407F is better understood as a bridge refrigerant than a long-term endpoint

Compared with R404A or R507A, R407F reduces direct climate impact. However, a GWP around 1,820 is still high relative to today’s low-GWP direction.

In practice, that means R407F often appears in transitional or retrofit narratives rather than as the final destination for decarbonization planning.

This is exactly the kind of nuance readers need when choosing between short-term practicality and long-term compliance.

Why the A1 classification still matters

Even as lower-GWP A2L and natural-refrigerant options gain ground, there are still projects where nonflammability is a major decision factor.

For those cases, R407F historically offered a familiar A1 pathway with more manageable retrofit implications than a complete redesign.

However, A1 safety alone does not outweigh the growing policy pressure on higher-GWP refrigerants.

What technicians should remember about the blend nature

R407F is a zeotropic blend, not a pure refrigerant. That means charging, fractionation risk, pressure-temperature interpretation and service practices differ from single-component refrigerants.

The correct PT chart and blend-aware procedures should be used in service work.

Good content should emphasize this practical handling reality instead of treating R407F as just a numeric GWP entry.

Comparison

R407F vs R438A

A focused side-by-side comparison to help readers understand selection differences.

Comparison PointR407FR438A
Primary replacement storyR404A / R507A classR22 class
Safety classA1A1
ODP00
100-year GWP1,8202,270
TypeZeotropic HFC blendZeotropic HFC/HC blend
Core useCommercial refrigerationAir conditioning / refrigeration retrofit
Regulatory positionBridge refrigerant, not low GWPLegacy retrofit refrigerant, also not low GWP
Safety

R407F safety: A1 simplifies flammability, but it is still a zeotropic refrigerant blend

R407F is A1 and therefore avoids lower-flammability system constraints. Even so, it remains a refrigerant blend with pressure hazards, cold-burn risk and blend-handling requirements. Correct charging and system suitability checks are important, especially in retrofit work.

  • A1 classification: No lower-flammability designation.
  • Blend servicing: Use correct PT data and charge as a blend.
  • Retrofit discipline: Validate lubricant, controls and actual equipment performance.

Leak detection

Leak detection for R407F should be based on the intended function: maintenance leak finding, machinery-room monitoring or environmental concentration awareness. Infrared or electronic halogenated-refrigerant detection may be appropriate depending on the application. GasNose offers broader refrigerant gas detection context for research and concept validation.

Explore refrigerant detection resources

U.S. regulations

EPA SNAP tables commonly show R407F at GWP 1,820 and A1. It remains relevant in certain listed uses such as commercial ice machines and some legacy equipment contexts, but EPA’s more recent Technology Transitions direction increasingly pushes new equipment away from higher-GWP HFCs in many commercial refrigeration sectors.

EU / international context

In Europe, R407F also sits in a transition category rather than a leading low-GWP category. It may still appear in retrofit or installed-base management discussions, but it does not offer the same long-term numerical advantage as newer low-GWP solutions.

Phaseout / long-term view

R407F is best viewed as a legacy bridge refrigerant. Its future is constrained less by safety than by its still-relatively-high GWP compared with modern alternatives.

Common Questions

Misconceptions to avoid

Several refrigerants are misunderstood because readers focus on one number or one trade name. These points help keep the topic accurate.

“R407F is a low-GWP refrigerant.”

It is lower than R404A, but at about 1,820 GWP it is not low by current transition standards.

“A1 means R407F is automatically future-proof.”

A1 helps on flammability, but climate policy still limits high-GWP refrigerants.

“R407F is a pure refrigerant.”

No. It is a zeotropic blend of R32, R125 and R134a.

“R407F is only a data-sheet refrigerant with no real relevance.”

It has real historical and service relevance in commercial refrigeration.

Related refrigerants and alternatives

  • R438AAnother A1 retrofit-oriented blend, but focused more on R22 applications.
  • R427AA1 R22 retrofit blend often compared in legacy-system decision-making.
  • R513ALower-GWP A1 refrigerant but in a different R134a-class application family.
Frequently Asked Questions

R407F refrigerant FAQ

Concise answers to common questions about properties, uses, safety class and regulatory context.

What is R407F?

R407F is an A1 HFC blend used mainly in commercial refrigeration, especially in relation to R404A / R507A transition discussions.

What is the composition of R407F?

EPA composition tables show 30% R32, 30% R125 and 40% R134a.

What is the GWP of R407F?

EPA SNAP tables commonly show 1,820, while some older secondary materials round to about 1,825.

Is R407F flammable?

No. It is classified A1.

Is R407F a blend?

Yes. It is a zeotropic blend.

What is R407F used for?

Mostly commercial low- and medium-temperature refrigeration applications.

Is R407F low GWP?

Not by current standards. It is lower than R404A, but still relatively high GWP.

Why was R407F important?

Because it offered a lower-GWP A1 pathway for some R404A / R507A-era systems.

Can R407F be treated as a long-term endpoint?

Usually no; it is better understood as a bridge refrigerant.

How should R407F leaks be detected?

Use refrigerant detection matched to the intended function and validated for halogenated refrigerants.

References

Authoritative sources

Primary EPA references are prioritized, with supporting official or technical industry sources where helpful.

Need help selecting or monitoring refrigerants?

Refrigerant choice is not only about GWP. Safety class, end use, machinery design, regulations and leak detection strategy all matter. If you are evaluating a transition project, ask for technical support.

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