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POET Biorefining - Chancellor

Waste power plant in South Dakota, United States of America. Approximate location 43.3705, -96.9598.

WasteSouth DakotaUnited States of America

POET Biorefining - Chancellor is a 5 MW waste power plant in South Dakota, United States of America. It is operated by POET Biorefining- Chancellor. Based on its capacity (estimated), it can supply roughly 7.4k homes (estimated). It ranks #6616 of 10,938 United States of America power plants by installed capacity. Commissioned in 2018, it is around 8 years old — recently built. In context, the national grid averages 384 gCO₂/kWh (43.0% low-carbon) (2025).

5Source-backed capacity
7,433homes powered (est.)
2018commissioned (~8 yrs)

Plant data: WRI Global Power Plant Database (CC BY 4.0), id USA0063853.

Data status

Known data

FacilityPOET Biorefining - Chancellor WRI
CountryUnited States of America · South Dakota WRI
Coordinates43.3705, -96.9598 WRI
FuelWaste WRI
MW installed capacity5 MW WRI source record; scope not independently normalised
OwnerPOET Biorefining- Chancellor WRI
Commissioned2018 WRI

Calculated from dataset

Capacity rank in country#6616 of 10938 calculated
Fuel-specific rank in country#330 of 551 calculated
Capacity vs country/fuel peers0.82× · 7 MW median · 551 peers calculated
Homes-powered equivalent7,433 calculated
Climate8.0°C · HDD 3,979 derived from coordinates
Environmental severityC2 · 34/100 derived from coordinates

Not available

TechnologyNot available not in dataset
GWh reported / yrNot available not in dataset
CO₂ emissionsNot available not in dataset

Known, modelled and calculated values are kept separate. Missing fields are shown as unavailable.

Data provenance

The capacity and/or fuel fields on this page include a source-backed provenance label from GEM, an official registry, Wikidata, OSM, or a cross-source match.

capacity: Wikidata P2109 nameplate capacity; fuel: WRI source-record fuel

In context: how this plant compares

At 5 MW, POET Biorefining - Chancellor is below the median waste plant in United States of America (7 MW). Waste-to-energy plants burn municipal solid waste to generate electricity and heat, cutting landfill volume while recovering energy from residual waste.

Capacity comparison computed from the WRI Global Power Plant Database; fuel-type context is general engineering background.

Capacity vs largest waste plants in United States of America

Covington Facility: 161 MW161Covington …CPI USA NC Southport: 135 MW135CPI USA NC…Okeelanta Cogeneration: 129 MW129Okeelanta …Covanta Fairfax Energy: 124 MW124Covanta Fa…Deerhaven Renewable: 116 MW116Deerhaven …Domtar Paper Co LLC Plymouth NC: 114 MW114Domtar Pap…Nacogdoches Power: 114 MW114Nacogdoche…Florence Mill: 104 MW104Florence M…

Installed capacity (MW), WRI Global Power Plant Database (CC BY 4.0).

Owner

Operated by POET Biorefining- Chancellor.

Local climate & thermal context

This waste plant recovers energy by combusting municipal or industrial waste. It sits in a hot-summer humid continental climate (Köppen Dfa) — Northern Hemisphere, latitude 43.4°N — which shapes how much energy it can produce and how its output varies through the year.

8.0°Cannual mean temp
3,979heating degree-days (base 18°C)
364cooling degree-days (base 18°C)
387 melevation

Monthly mean temperature

J: -10 °CJF: -6 °CFM: 1 °CMA: 9 °CAM: 16 °CMJ: 21 °CJJ: 23 °CJA: 22 °CAS: 17 °CSO: 10 °CON: 0 °CND: -7 °CD23 °C

Heating degree-days here run 62% above the median power plant in this dataset — a proxy for how much extra energy heated equipment must replace through its surfaces in winter.

Climate heat-demand index: 84/100 — this site sits in the top third of the power plants we cover by heating degree-days.

Climate normals: WorldClim 2.1 (1970–2000 monthly normals, 10 arc-min, CC BY 4.0); zone: Köppen-Geiger world climate classification (Kottek et al. 2006, 0.5° grid). Degree-days & heat-demand index computed by PowerAtlas — a modelled heat-demand proxy, not a measured site figure.

Site climate & environmental severity

For a plant’s outdoor hardware — heat-recovery steam generators (HRSG), expansion joints, valves, flanges and their insulation — the local climate sets how fast unprotected steel and coatings degrade. This site sits in a mild atmospheric environment (estimated ISO 9223 class C2 — Low), with thermal cycling the leading environmental stress.

C2ISO 9223 corrosivity (indicative)
34/100environmental-severity index
32.6°Cseasonal temperature swing
678 kmdistance to coast

Higher environmental severity is exactly where protective removable insulation pays back most: a sheltered micro-climate slows corrosion, UV and thermal-cycling damage and extends outdoor hardware service life. This is an indicative site-climate context — not a condition assessment of any specific plant or operator.

Indicative estimate via the ISO 9223:2012 informative method (atmospheric corrosivity from temperature, time-of-wetness and airborne salinity), using WorldClim climate normals, the Köppen-Geiger class and coast distance. Indicative, not a measured corrosion rate.

How it compares & nearby plants

The #330 largest waste power plant of 551 in United States of America by capacity.

United States of America has 551 waste power plants in this dataset, together about 10,154 MW of capacity.

Nearby power plants

Location

Coordinates 43.3705, -96.9598 from WRI Global Power Plant Database (CC BY 4.0). View on OpenStreetMap.

Frequently asked questions

What type of power plant is POET Biorefining - Chancellor?

POET Biorefining - Chancellor is a 5 MW source-record waste power plant in South Dakota, United States of America, commissioned in 2018.

How many homes can POET Biorefining - Chancellor power?

Its output is enough to supply roughly 7,433 homes (estimated).

Who operates POET Biorefining - Chancellor?

POET Biorefining - Chancellor is operated by POET Biorefining- Chancellor.

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