Parc Adfer EfW: Difference between revisions
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==Summary== | ==Summary== | ||
The Parc Adfer Energy from Waste facility was developed by and is operated by [[Wheelabrator Technologies]], located at the Deeside Industrial Park in Flintshire, North Wales. The facility accepts 200,000 tonnes per year of residual waste as a feedstock from household, businesses and commercial sources, and produces both electricity and heat as a [[CHP]] plant. The waste feedstock is locally supplied by the 5 counties in the North of Wales representing the [[North Wales Residual Waste Treatment Project]]<ref name= "ref1"> Wheelabrator, 2020. [https://wtiparcadfer.co.uk/about-us/ About - Parc Adfer. Online. Wheelabrator Parc Adfer. [Accessed 6 Feb. 2020]]</ref>. | The Parc Adfer Energy from Waste facility was developed by and is operated by [[Wheelabrator Technologies]], located at the Deeside Industrial Park in Flintshire, North Wales. The facility accepts 200,000 tonnes per year of residual waste as a feedstock from household, businesses and commercial sources, and produces both electricity and heat through a combustion system as a [[CHP]] plant. The waste feedstock is locally supplied by the 5 counties in the North of Wales representing the [[North Wales Residual Waste Treatment Project]]<ref name= "ref1"> Wheelabrator, 2020. [https://wtiparcadfer.co.uk/about-us/ About - Parc Adfer. Online. Wheelabrator Parc Adfer. [Accessed 6 Feb. 2020]]</ref>. | ||
==History== | ==History== |
Revision as of 13:57, 6 February 2020
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See Residual EfW → page for a larger UK Wide map. | |
Waste Licence | Error: no local variable "epr" has been set. |
Operator | [[Error: no local variable "operator" has been set.]] |
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Operational Capacity | Error: no local variable "cap" has been set.ktpa |
Is site R1? | Error: no local variable "r1" has been set. |
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What was the R1 value | Error: no local variable "r1value" has been set. |
Electrical Capacity | Error: no local variable "mwe" has been set.MWe |
Number of Lines | Error: no local variable "line" has been set. |
Number of Turbines | Error: no local variable "turbine" has been set. |
CHP | Error: no local variable "chp" has been set. |
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Operators Annual Report
Input Data
Year | HH | C&I | Clin | RDF | Total |
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Output Data
Year | IBA | IBA %ge of Tot IN | APC | APC %ge of Tot IN |
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Summary
The Parc Adfer Energy from Waste facility was developed by and is operated by Wheelabrator Technologies, located at the Deeside Industrial Park in Flintshire, North Wales. The facility accepts 200,000 tonnes per year of residual waste as a feedstock from household, businesses and commercial sources, and produces both electricity and heat through a combustion system as a CHP plant. The waste feedstock is locally supplied by the 5 counties in the North of Wales representing the North Wales Residual Waste Treatment Project[1].
History
Wheelabrator Technologies was selected as the preferred bidder to build and operate the Parc Adfer EfW in 2014, entering into a 25 year contract as a public-private partnership (PPP). Support was given by the Welsh Government as the facility serves the five local authorities that make up the North Wales Residual Waste Treatment Project (NWRWTP). Planning consent was granted by Flintshire County Council in May 2015, and the environmental permit was granted by Natural Resources Wales in October 2015, leading financial close being reached and construction beginning in December 2016 with the full commercial operations starting December 2019[1].
Plant
The process equipment equipment for the plant was supplied by CNIM, with Clungston responsible for the civil works. The project was initiated by the Welsh Government and the North Wales Residual Waste Treatment Project Partnership to achieve long-term targets for recycling and diversion of waste from landfill for Flintshire County Council, Isle of Anglesey County Council, Gwynedd County Council, Conwy County Borough Council, Denbighshire County Council[1].
Local Authority Users
References
- ↑ 1.0 1.1 1.2 Wheelabrator, 2020. About - Parc Adfer. Online. Wheelabrator Parc Adfer. [Accessed 6 Feb. 2020]