Document mB1GVXwQj8yx6eO59d6kjwGb
RACHP Equipment & PFAS
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Date
OUR PRODUCTS
Air-Conditioners
Heat Pumps
Refrigeration
From less than 1 kW up to couple hundred kW With different technologies as "split" types and "self contained" types
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WHERE OUR PRODUCTS ARE USED
Home refrigeration
Vaccine storage
Transport refrigeration Sports facilities
Grocery stores Offices and schools
Homes Hospitals
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OUR MEMBERS
EPEE's membership is comprised of 46 member companies and national associations across Europe realising a turnover of over
30 billion Euros and employing more than 200,000 people in Europe. Our member companies manufacture most of their
products in the EU.
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Role of RACHP sector in society
Cooling and heating are fundamental needs for society:
Refrigeration
Reduces food loss and thereby reduces CO2 emissions. Ensures safe and affordable food supplies. Safe transport of vaccines and medicine.
Comfort and industrial cooling
Necessary for health protection and productivity in homes, hospitals, offices and process industry.
Comfort and industrial heating
Heat pumps reduce dependency on fossil fuels, but also support DHC networks and recover waste heat.
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Emissions of the sector: example from the model
+5
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EPEE assumptions:
Rapidly growing heat pump stock
(REPowerEU)
Range of different lowerGWP
refrigerants used
Since 2012, EPEE has developed a powerful HFC Outlook EU Model tool, in recent years in partnership with UNEP:
Assesses the best pathways towards achieving the Kigali Amendment. Gives data on the placing on the market and on the emissions of all types of refrigerants, including CO2 emissions based on system efficiency.
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Interplay between PFAS and other files
Energy Efficiency First Principle: "taking utmost account of cost efficient energy efficiency measures in shaping energy policy and making relevant investment decisions."
Socalled "natural refrigerants" cannot always guarantee the same level of: safety energy efficiency affordability
Energy efficiency
Fgas Regulation Revision
UPFAS REACH Restriction Proposal
Fgas Regulation: Further pushes the HFC Phase Down and transitions towards HFOs and nonfluorinated alternatives
The two first Fgas Regulations are in place since 2006/2014 and are considered to be very successful.
Date of implementation: 2024
UPFAS REACH Restriction: Proposal to restrict the use of PFAS including Fgases and equipment using fluoropolymers
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Date of implementation: 2028
The Fgas Regulation
Regulates the use of fluorinated gases, as the transposition of the 1987 Montreal Protocol and the 2016 Kigali Amendment. The first two Regulations already led to significant decrease in emissions. The third one, to be fully adopted in March 2024, will contain:
stricter containment measures for HFCs, HFOs and blends full Fgas product bans after 2030 for several product categories with review of their feasibility by 2030. full phase out of virgin HFCs by 2050 with a review clause in 2040
This Regulation has a similar purpose as the PFAS Restriction proposal, as it also reduces environmental release and impact.
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Emissions of the sector: low leakage rates
Emissions and leakage rates vary between products but are generally low.
Many small equipment types are factorybuilt sealed systems, with low operational leakage rate - below 1% per year.
More graphs and data are available in the full submission of EPEE.
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Degradation products of Fgases
One of the reasons for the inclusion of Fgases is the partial degradation into trifluoroacetic acid (TFA), however many independent experts and scientists consider TFA to be of low concern for human health and the environment:
EEAP, 2022: "all PFAS should not be grouped together, persistence alone is not sufficient for grouping PFAS for the purposes of assessing human health risk" "based on projected future use of these precursors of TFA [including HFC/HFO], no harm is anticipated"
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Emissions from refrigerants defined as PFAS
Outcome: The emissions of PFAS refrigerants are decreasing year by year which indicates progress in reducing environmental impact.
2020 2025 2030 2035
R125
10.016 8.503 4.809 2.654
R134a
19.071 16.099 9.703 4.301
HFCs R143a R227ea
3.653 200
2.424 169
187 81
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R245fa
72
R
R1233z
365MFC d(E)
114 1
15
29
43
HFOs
R 1234yf
R1234z e(E)
1.546 94 3.617 384 6.022 670 8.686 999
R 1336mz z
0
6
12
17
Total [tons]
34.766 31.218 21.512 16.720
From 2020 to 2035, the emissions will decrease by more than two.
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Granularity of applications
The use of Fgases is diversified across RACHP applications, with specific products having specific characteristics that influence the choice of refrigerants.
A broad restriction would:
Impede the optimal
refrigerant choice for new
equipment
Lead to premature obsolescence
Generate unnecessary
waste
Hamper the recovery and reclamation of refrigerants
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Use of fluoropolymers
Fluoropolymers are essential for the functionality and tightness of RACHP products, with unique characteristics:
Sealing to prevent the release of refrigerant
into atmosphere
Temperature and pressure resistance facing differentials from 50C to
175C and from near vacuum conditions up to
120 bar
Persistence and chemical inertness in
aggressive environment
Unique electrical properties, like the low dielectric constant that does not break down
when subjected to important electric fields
Low friction that enables components to
be more sustainable and require fewer
repairs
Today there is no viable alternative that can fulfill
all the same criteria.
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Lack of alternatives to fluoropolymers
Two possibilities:
A return to previously used components, which were replaced for efficiency/safety reasons (e.g. lead)
Development and implementation of innovative components.
The unlimited derogation included in the Proposal for "national safety standards and building codes"
does not cover fluoropolymers, making it counterintuitive as equipment will not properly
function without fluoropolymers.
Internal estimation of time for developing alternatives to fluoropolymers, based on industry experience.
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LEaPcEkEoref caoltmermnaetnivdeastitoonfsluoropolymers
For Fgases:
Full timeunlimited derogation for Fgases used in RACHP applications, with a review clause 10 years after the EIF to assess efficiency/availability of alternatives, but also for:
Maintenance and refilling
Reclamation and recycling of refrigerants
Exports of precharged equipment
A reconsideration of the concentration limits as the current value proposed may jeopardize the efforts to recover, reclaim and reuse refrigerants.
For fluoropolymers: Full timeunlimited derogation for fluoropolymers used in RACHP applications, with a review clause 10 years after the EIF to assess availability and viability of alternatives, but also for: Spare parts, waste treatment and exports
A reconsideration of concentration thresholds to not hamper the circularity of components.
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Thank you for your attention!
Contact:
EPEE
@epeeglobal.org
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