R-454B vs R-410A: 2026 Transition Guide

The January 1, 2026 R-410A installation deadline has passed. Here is what replaces R-410A, how R-454B actually compares — GWP, safety, glide, performance — and what the change means for your designs and service work.

September 2026 HVAC&R Engineering Guide 9 min read

Where the R-410A Transition Stands

Under the AIM Act technology transition rules, manufacturing of new R-410A residential and light-commercial AC and heat-pump equipment stopped on January 1, 2025, and the installation deadline for that remaining inventory passed on January 1, 2026 [CITED: EPA AIM Act]. In practice, 2026 is the first full year where most new residential platforms ship on A2L refrigerants — and on ducted systems the dominant choice is R-454B. R-410A itself remains available for servicing existing systems, but its GWP of 2,088 keeps it on the phase-down schedule through 2036 [CITED: EPA AIM Act].

R-454B at a Glance

Head-to-Head: R-454B vs R-410A

PropertyR-410AR-454BChange
GWP (IPCC AR5)2,088466−78%
ASHRAE 34 safety classA1A2Lmildly flammable
Composition (mass%)R-32/R-125, 50/50R-32/R-1234yf, 68.9/31.1
Normal boiling point−51.4 °C−50.7 °C+0.7 K
Temperature glide (AC range)~0.1 K~1.4–1.5 Khigher
Evap. pressure @ 5 °C sat. (dew point)9.33 bar8.57 bar−8%
Cond. pressure @ 45 °C sat. (bubble point)27.3 bar26.0 bar−5%
Volumetric capacity (rating)100%~96%−4%

Saturation pressures, boiling point and glide computed with CoolProp (HEOS backend). GWP and safety class as cited above.

Performance with Real Numbers

The table below is an ideal-cycle comparison at AHRI-style rating conditions (7.2 °C evaporation, 54.4 °C condensation, 11.1 K superheat, 8.3 K subcooling, isentropic compression), computed with CoolProp — the same Helmholtz-grade property engine behind our calculators.

Both columns describe the same four-point cycle, and every one of those points has a place on a P-h diagram. If you want to read the states yourself instead of trusting a table, How to Read a P-h Diagram (With a Live Interactive Example) draws one real R-410A cycle from the engine and walks the four points, the two axes and the dome, number by number.

Metric (ideal cycle, rating conditions)R-410AR-454BChange
COP (isentropic)4.424.39−0.7%
Volumetric capacity5,649 kJ/m³5,396 kJ/m³−4%
Evap. pressure @ 7.2 °C (dew point)10.0 bar9.2 bar−8%
Cond. pressure @ 54.4 °C (bubble point)33.9 bar32.3 bar−5%
Isentropic discharge temp.85.0 °C91.3 °C+6.3 K

Real-system COPs run roughly 65–75% of the ideal-cycle value depending on compressor efficiency and heat-exchanger approach. At a colder engine-check point (−10/40 °C, η = 0.70, same 11.1 K superheat / 8.3 K subcooling as the table above) the gap stays under 2%: COP 2.83 (R-454B) vs 2.88 (R-410A) with the same property library. Manufacturer ratings may differ with optimized heat exchangers.

The honest engineering summary: cycle efficiency is essentially a wash — plan for parity, not a free efficiency gain — while volumetric capacity drops a few percent, which OEMs recover with slightly larger coil face area or compressor displacement. The larger practical deltas are the higher isentropic discharge temperature (+6 K) and the 78% cut in direct CO₂-equivalent emissions.

Temperature Glide: What Actually Changes

R-454B is zeotropic with a temperature glide of roughly 1.4–1.5 K at air-conditioning saturation pressures (near-azeotropic R-410A glides ~0.1 K). In practice this means:

A2L Handling Requirements

A2L classification (ASHRAE 34) means lower toxicity and mildly flammable — slower-burning than A3 hydrocarbons, but a real change from A1. Expect requirements around A2L-rated leak detection, equipment design per ASHRAE 15 and UL 60335-2-40, and A2L-rated recovery equipment and practices. Follow the equipment manufacturer's installation instructions and your local code [CITED: ASHRAE 15 / UL 60335-2-40 framework].

Retrofit or New Equipment?

The honest answer: R-454B is a new-equipment refrigerant, not a drop-in retrofit. R-410A systems were not designed for a zeotropic, A2L blend, and R-454B's glide and discharge-temperature profile differ enough that a conversion is an OEM engineering exercise, not a field job. For existing R-410A systems, the practical path is continued service on R-410A — which remains manufactured for service use through the phase-down — while new construction and replacement equipment arrives charged for R-454B [CITED: EPA AIM Act schedule].

Run the Numbers Yourself

Compare R-454B against R-410A, R-32 and more on one cycle — COP, volumetric capacity, discharge temperature and pressures, computed live with CoolProp. Free, browser-based, no install.

Open the Refrigerant Comparison Tool →

Full property data: R-454B property page  ·  Interactive P-h diagram

Size the Changeover on the Systems You Actually Run

Run R-454B against the R-410A charge you already own — COP, capacity, discharge temperature, glide and pressures, computed live with CoolProp. Free tier, 20 calculations a month, no card.

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