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ASIC mining articles and advice

Nebona spice factory: surplus solar becomes Bitcoin and building heat

Terahash describes a commissioned system at Nebona’s spice factory: a Heatcore HS20 with two Whatsminer M63 units uses surplus rooftop solar power and supplies hot water to a buffer tank. The existing heating system remains available.

Renewables & heat reuse / project case study

Munich, GermanyOperator reportedEvidence reviewed 29 September 2026

Terahash describes a commissioned system at Nebona’s spice factory: a Heatcore HS20 with two Whatsminer M63 units uses surplus rooftop solar power and supplies hot water to a buffer tank. The existing heating system remains available. Terahash / Nebona installation report.

Published project reference
Up to 20 kW · buffer-tank heat recovery
Evidence date / context
Operator page reviewed 29 September 2026
Financial evidence
Project accounts not established by the cited evidence
Comparison in this article
Explicit UK scenario per 1,000 miner kWh

Estimated reading time: 5 minutes

What this project demonstrates

The buffer tank separates short changes in computing output from the building’s immediate heat demand. It can improve utilisation, but it does not create an unlimited sink for summer solar production.

Follow the electricity and the heat

Rooftop PV surplushydro minersbuffer tankbuilding heat

Industrial sites should protect production demand before allocating electricity to computing. The best operating window can change on weekends, during shutdowns and across seasons. The value of retained Bitcoin should be recorded separately from the value earned when it was mined.

Mining income, heat value and running costs

The figures below are The Mining Shop’s own worked comparison for a prospective UK site. They are not the operator’s earnings, a current tariff or a forecast. All inputs are shown so you can see which conditions create or remove the benefit.

Worked scenario · not the operator’s accounts

What 1,000 kWh could contribute

1,000 kWh to miners + 50 kWh of auxiliary electricity. GBP comparison for a prospective UK site; no currency conversion of project results.

Gross mining income£80.00
Useful heat value£36.00
Electricity opportunity cost£52.50
Pool fee£1.60
Other operating allowance£10.00
Operating contribution
Before capital and omitted costs

£51.905.19p per miner kWh

The 5p/kWh rate represents the export payment forgone for electricity diverted to mining and its auxiliary equipment. It is an opportunity cost, not an additional grid-import bill. The example assumes existing generation; include new generation costs if building it specifically for mining.

Every assumption behind the chart
Gross mining income 8p per miner kWh; a scenario, not a current machine yield
Electricity 5p/kWh × 1,050 kWh = £52.50
Pool fee 2% of gross mining income
Useful heat 60% of miner electricity = 600 kWh; 6p per delivered kWh
Other operating costs £10 per 1,000 miner kWh; placeholder allowance
Not included Equipment, installation, finance, tax, depreciation, major replacements and any costs beyond the stated allowance

The operating contribution is mining income after pool fees + useful heat value − electricity cost or export forgone − other running costs. Electricity consumed in pumps or extra fans earns no mining income in this example. Recovered heat is a second use of the same energy, not extra electricity.

Lower earnings can change the decision
Gross income per miner kWh Without heat credit Including useful heat
5p −£13.50 £22.50
8p Chart scenario £15.90 £51.90
11p £45.30 £81.30
Break-even gross mining income
2.70p

per miner kWh

Maximum electricity cost / export value
9.94p

per total electricity kWh

These are alternative operating thresholds using the chart’s inputs. Capital and omitted costs would lower the supported electricity price and raise the required mining income.

Heating alternatives, annual costs and payback

The heat credit must reflect the real alternative. For example, purchased electricity at 20p/kWh and a heat pump delivering a seasonal COP of 3 gives an energy-only heat cost of about 6.67p/kWh, before its other costs. That is a different comparator from a resistance heater using 20p of electricity per kWh of heat. These are arithmetic examples, not measured performance at this project.

To turn this into an annual assessment, use the miner electricity actually expected in the profitable operating windows. Multiply the contribution by annual miner kWh ÷ 1,000 only if the assumptions remain valid in those windows, then deduct annual fixed costs. Simple payback is total installed capital divided by positive annual cash contribution; it is unavailable when that contribution is zero or negative. No project payback is claimed here because the necessary capital and operating accounts are not published in the cited evidence.

What to take into a UK project

Separate useful building heat from production-process requirements, and prioritise the factory’s productive electricity demand.

Meter solar generation, factory consumption, tank heat input and boiler fuel. Track weekend and production-day performance as separate operating modes.

Questions to resolve for your site

  • How often is the buffer tank already hot?
  • Does the available heat replace oil at the time mining runs?

Build the decision around your own interval electricity data, the real alternative use of that power, and a heat customer with a measured demand. Choose hardware using its dated revenue estimate, efficiency and service requirements. A higher gross earning figure is only the start; useful operating margin and the installed cost determine whether the project deserves investment.

Test the same logic with your own site inputs

Compare all supported mining algorithms, electricity use and dated earning estimates. Start with zero heat credit, then add only the heat you can use or sell.

Model renewable miningCompare with grid export

Sources and original imagery

Project statements are attributed to the operator, filing, research paper or reporting listed below. Engineering interpretation and the GBP calculations are our analysis. Review date: 29 September 2026; this is a source review, not a site visit or independent audit.

  1. Terahash / Nebona installation report

Image provenance: Terahash / Nebona (source). Image context is recorded with each photograph.

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