Lubrizol’s Next-Gen POE Technology for R32 Scroll Compressors

Dr. Bridgett Rakestraw - Director Technology, Lubrizol Fluid Engineering, The Lubrizol Corporation

The refrigeration industry is accelerating its transition toward lower-GWP and higher-efficiency technologies. As an alternative to traditional R410A refrigerant, R32 has become a widely adopted option for residential and light commercial scroll compressors, supported by its reduced Global Warming Potential (GWP), strong energy efficiency, and favorable system economics.

At the same time, the adoption of R32 introduces new technical considerations. Higher discharge temperatures and distinct chemical characteristics place increased demands on lubricant performance. In some system designs, limitations in compatibility with conventional lubricants may influence oil return behavior, viscosity stability, and long-term compressor performance. These factors highlight the importance of lubricant solutions that are engineered specifically with R32 operating conditions in mind.

As a global leader in refrigeration lubrication technology, Lubrizol applies deep application knowledge and extensive R&D expertise to address these challenges. By optimizing the molecular structure of polyolester (POE) lubricants, Lubrizol has developed high-performance lubrication solutions designed to support reliable and efficient operation in R32 refrigerant scroll compressor applications.

R32 as a Lower-GWP Refrigerant Option

Driven by evolving environmental regulations and the phase-down of higher-GWP refrigerants, the industry continues to evaluate alternatives that balance environmental considerations with system performance. With a GWP of approximately 675, R32 offers a reduced environmental footprint compared with R410A while maintaining strong cooling performance.

R32 systems can also benefit from lower refrigerant charge volumes, higher volumetric cooling capacity, and competitive system economics, supporting their adoption across residential and light commercial applications.

However, R32 operation may involve higher discharge temperatures and different refrigerant–lubricant interactions. These conditions can require lubricants with enhanced thermal and chemical stability, stable viscosity characteristics, and suitable miscibility behavior to support effective oil circulation. Inappropriate lubricant  election may increase the risk of oil separation, reduced oil return, or excessive refrigerant dilution, potentially impacting lubrication effectiveness over time.

Advancing R32 Lubrication Through Molecular-Level Design

To address the performance demands associated with R32 and the diversity of scroll compressor designs, Lubrizol focused on molecular-level lubricant design rather than incremental formulation changes. The development objective was to improve refrigerant compatibility, maintain viscosity under elevated operating temperatures, and deliver robust thermal and chemical stability suitable for R32 applications.

This approach supports lubricant performance across a range of operating conditions while allowing flexibility to align with different compressor architectures and system requirements, subject to OEM validation.

High-Pressure Scroll Compressors: INXG™ 5100 Series

For high-pressure scroll compressor designs in which the motor and oil sump are located on the high-pressure side and exposed to elevated discharge temperatures, Lubrizol offers the INXG™ 5100 series lubricants.

These products are designed with a high viscosity index, low pour point, and strong thermal and chemical stability. They demonstrate favorable miscibility characteristics with R32 across a broad operating temperature range, supporting effective oil circulation and low-temperature fluidity while helping maintain viscosity under demanding thermal conditions.

In validated applications, these characteristics can contribute to consistent lubricity, wear protection, and heat transfer performance throughout compressor operation.

Low-Pressure Scroll Compressors: INXG™ 5000 Series

For low-pressure scroll compressor designs that utilize oil-pump supply, Lubrizol offers the INXG™ 5000 series based on a high-performance formulation platform.

This series is designed to balance viscosity index, pour point, _ash point, and controlled refrigerant solubility. The formulation approach supports viscosity stability and lubrication performance* under typical R32 operating conditions, while also addressing cost considerations relevant to larger-scale commercial refrigeration applications.

Supporting Efficient and Sustainable Refrigeration Systems

Lubrizol’s R32-focused lubrication solutions are designed to support the interface between lower-GWP refrigerants and long-term equipment performance. Favorable miscibility behavior can assist oil return and help maintain heat transfer efficiency within validated system designs.

By supporting viscosity stability in the presence of refrigerant dilution, these lubricants are designed to help reduce wear risks and support consistent lubrication performance over time. Strong thermal and chemical stability also enhances resistance to oxidation and hydrolysis, contributing to longer lubricant life and reduced maintenance intervals in appropriate applications.

Covering both high-pressure and low-pressure scroll compressor designs, Lubrizol’s R32 lubricant portfolio supports a wide range of residential and light commercial applications, helping equipment manufacturers advance their transition toward lower-GWP refrigerants while maintaining performance expectations.

As the refrigeration industry continues to evolve toward greater efficiency and sustainability, Lubrizol remains committed to advancing lubrication technology through innovation, developing solutions that support today’s operating requirements while aligning with the industry’s long-term environmental goals.


*Lubricant performance may vary depending on compressor design, operating conditions, and system con_guration. Final lubricant selection and validation should be conducted in accordance with compressor manufacturer recommendations and application-speci_c requirements.

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