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Anonymized field reference — engineering experience without publishable raw data

Nordic biomass CHP: ammonia HP lifts ~35°C flue heat to 65–95°C DH

Anonymized public project: four ammonia heat pumps recover biomass CHP flue condensation heat for district heating, with seasonal supply temperatures.

Engineering data

Case type
Anonymized field reference
Data status
anonymized_field_reference
Industry
District heating
Source temperature
35–40°C
Sink temperature
65–95°C
Temperature lift
≈ 25 K
Heating or cooling duty
Not disclosed
Architecture
Multi-unit ammonia screw heat pumps (incl. high-pressure stage)
Result status
Stable DH supply from flue condensation heat; reduced peak-boiler runtime
Key risk
Ammonia plant-room safety; high-pressure design; winter peak coverage
Existing system
Biomass CHP with peak boilers; low-grade flue heat partly rejected
Refrigerant
R717 (ammonia)
COP
4–4.5
Annual savings
Reported first heating season ~80,000 MWh heat delivery; ~20 kt/y CO₂ cut (public summary)
Estimated payback
Not disclosed

Project background

A Nordic municipal energy complex needed more district-heating capacity from an existing biomass CHP site. Low-grade flue heat around 35°C was available after condensation stages but previously contributed little to useful network temperatures.

Source / inputs

Source ≈35°C after secondary flue condenser. Sink 65°C in summer, 85°C typical winter, up to ~95°C on extreme demand. Natural refrigerant ammonia. Figures from public project summaries—customer names omitted.

Heat pump solution

Four ammonia screw heat pumps, including a high-pressure stage for winter network temperatures. Seasonal controls modulate leaving-water setpoints; the train recovers flue condensation heat that would otherwise be rejected.

COP & savings

Public summary cites COP above 4 and first-season heat delivery on the order of 80 GWh, with multi-ten-thousand-ton annual CO₂ reduction. Treat as reported operating claims, not an Open Thermal AI field audit.

Investment / ROI notes

CAPEX/payback not disclosed in the public summary. Value case is boiler displacement and carbon reduction on a large DH load.