Refrigerant Comparison Hub

Compare Refrigerants

Compare major HVAC/R refrigerants by global warming potential, safety class, refrigerant type, application fit and transition role. Start with a popular comparison, or use the interactive comparison tool when you need a custom side-by-side shortlist.

Common comparisons
R32vsR454B
R32vsR410A
R290vsR32
R134avsR1234yf
A comparison does not make two refrigerants interchangeable. Equipment design, safety controls, charge limits, manufacturer approval and applicable regulations must still be checked.
Comparison Framework

What should you compare between refrigerants?

GWP is important, but it is only one part of refrigerant selection. A useful comparison should also explain safety, system architecture, application fit and regulatory implications.

Global Warming Potential

Compare GWP on the same reference basis and distinguish regulatory values from values used in other scientific assessments.

Safety Classification

A1, A2L, A3 and B2L refrigerants can require very different charge limits, mitigation strategies and service practices.

Type & Composition

Single-component refrigerants, blends, HFOs and natural refrigerants differ in composition, glide behavior and system implications.

Temperature Glide

Zeotropic blends can have meaningful temperature glide, while pure fluids and azeotropic or near-azeotropic blends behave differently.

Pressure & Architecture

Operating-pressure level and cycle architecture can change component selection, piping, controls and service requirements.

Application Fit

Air conditioning, heat pumps, supermarkets, domestic appliances, chillers and industrial systems have different priorities.

Equipment Compatibility

Similar pressure or capacity does not make refrigerants interchangeable. Compressor, lubricant, controls and approval still matter.

Regulatory Position

Current and future restrictions vary by country, equipment category, capacity, date and refrigerant GWP.

“Lower GWP” and “better refrigerant” are not the same statement.

A refrigerant with a very low GWP may introduce higher flammability, higher operating pressure, toxicity or different system requirements. Comparison pages should show the trade-off, not hide it.

Compare by Application

Choose the comparison that matches your system

Refrigerant decisions become more useful when they are tied to the actual equipment category. These comparison clusters connect directly to the application structure of Refrigerants.net.

Transition Comparisons

Compare legacy refrigerants with lower-GWP pathways

Installed-base refrigerants remain important research topics even when they are no longer preferred for many new systems. The useful question is not “what replaces it everywhere?” but “which technologies should be evaluated for this specific application?”

From R410A

HVAC transition

Compare A2L and natural-refrigerant routes for new air-conditioning and heat-pump platforms.

From R404A / R507A

Refrigeration transition

Compare transitional A1 blends, sub-150 A2L blends and natural refrigerants for food retail and refrigeration.

R448AR449AR454CR455AR290R744
From R134a

Application-specific transition

Automotive, chillers and domestic refrigeration follow different technology paths and should not be grouped into one replacement answer.

R1234yfR513AR450AR600aR744
Comparison candidate ≠ drop-in replacement. A retrofit or refrigerant conversion can change compressor operation, lubricant requirements, system pressure, heat-exchanger behavior, controls, charge limits, flammability classification and equipment approval. Use manufacturer-specific guidance for an actual conversion decision.
Quick Reference

Comparison snapshot: major refrigerants

This table gives a quick orientation before you open a detailed comparison. It is intentionally concise; individual refrigerant profiles contain more complete technical context.

RefrigerantEPA GWPSafety ClassFamily / TypeTypical Research ContextProfile
R32675A2LHFC · single componentAir conditioning · heat pumps · chillersView R32 →
R454B465A2LHFO/HFC blendNew HVAC · heat pumps · R410A transitionView R454B →
R2903.3A3Natural · propaneHeat pumps · appliances · commercial refrigerationView R290 →
R410A2,088A1HFC blendLarge installed HVAC base · transition researchView R410A →
R134a1,430A1HFC · single componentAutomotive installed base · chillers · refrigerationView R134a →
R1234yf1A2LHFO · single componentAutomotive / mobile air conditioningView R1234yf →
R7441A1Natural · CO₂Food retail · heat pumps · transport · industrialView R744 →
R7171B2LNatural · ammoniaIndustrial refrigeration · cold storageView R717 →

GWP values shown use the U.S. EPA Technology Transitions reference basis. Other regulatory regimes can use different values or methodologies, especially for non-fluorinated refrigerants. Always use the value required by the applicable rule.

Need a Different Pair?

Go from comparison hub to the right research tool

Use this hub when you want the most important pre-built comparisons. Use the interactive tool for a custom pair, or the Finder when you do not yet know which refrigerants should be shortlisted.

Interactive Tool

Compare any two refrigerants

Choose your own pair and review refrigerant properties side by side when the comparison you need is not yet available as a dedicated guide.

Not sure what to compare?

Start with the Refrigerant Finder

Describe the application, region, GWP target and safety preference first. The Finder narrows the market to practical candidates before you compare them.

Reference Framework

Compare on a consistent technical basis

Refrigerants.net uses authoritative designation, safety-classification and regulatory reference sources so that values do not silently change from one comparison page to another.

HVAC/R Project Support

Comparing refrigerants for a real project?

Discuss refrigerant selection, low-GWP transition, application requirements, sourcing or refrigerant leak-detection considerations.