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Methodology & sources (indicative estimates — not a quotation, not financial advice)
Gas price: prefilled per country from the local traded hub — THE (DE), PEG (FR), Dutch TTF (NL), ZTP (BE), PVB/MIBGAS (ES), TTF + delivery premium (SE/FI, no liquid local hub), Henry Hub (US) — sources:
EEX / ICE Endex,
MIBGAS,
U.S. EIA. Values are dated index snapshots (see label under the field), refreshed live on load where a public feed is reachable; always editable to your contracted price.
Gas boiler comparator: fuel ÷ boiler efficiency (default 90%, typical industrial range 85–94% —
US DOE steam guidance) + carbon at the EU ETS allowance price (
ICE EUA futures, ~€82/t Aug 2026); natural-gas emission factor 0.20 tCO₂/MWh fuel (EU MRR standard factor 0.202, rounded —
EU Monitoring & Reporting Regulation). Optional free-allocation slider applies a cash-view reduction today, ramping to the 2030 CBAM factor (51.5% of basis) and zero by 2034 per the adopted 2026–30 benchmark cuts (~34% on heat/fuel benchmarks). Indicative payback = installed cost ÷ annual savings, before grants or credits.
E-boiler comparator: electrode/resistance boilers convert electricity to heat at ~99% efficiency with comparatively low capex, but without storage they run whenever heat is needed — so they pay the period-average power price + grid fees in every hour; we model average price ÷ 99% + €2/MWh indicative capex adder. Efficiency and technology basis:
Agora Industry / Fraunhofer ISI, “Direct Electrification of Industrial Process Heat” (2024). This is the decision many plants weigh (Joule Hive vs gas vs e-boiler); the difference is the charging window — storage buys the cheapest 30–50% of hours, a flat e-boiler buys them all.
Electricity: wholesale averages — ENTSO-E day-ahead via
Ember (2025); captured price = cheapest-hours charging vs those averages (EU logged 1,223 negative-price hours in Q1 2026 —
pv magazine).
Joule Hive: >98% electricity-to-heat efficiency, 95% availability, DNV-validated 20-year core materials (
announcement); installed-cost default is an indicative marketing band, not an offer. LCOH = energy + annualized capex + O&M per MWh of delivered heat. © Electrified Thermal Solutions.