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Plant Betterment Capabilities

Paiton Private Power Project

Cope Generating Station

AES Power Facility

Seward Repowering Project

Guadalupe Electric Generation Facility

Urquhart Repowering Project

Ingleside Cogeneration Facility

Midland Cogeneration Facility

Kentucky Utilities

Fluor is keenly aware of the many drivers that influence power plant owners in making difficult decisions dealing with large capital expenditures.

Whether the driver is environmental compliance or performance improvement to generate additional savings, Fluor's Plant Betterment Group provides high-value assistance in identifying appropriate recommendations and solutions. To meet our clients' specific needs, we offer a full range of services from conceptual studies and financing to full turnkey rebuild and major component additions.

Environmental Compliance

Clients benefit from Fluor's extensive experience with a wide variety of environmental compliance technologies. As a member of the past Duke/Fluor Daniel partnership, Fluor's experience allows us to examine our clients' needs and identify the optimal technology that most cost-effectively meets their needs. Our experts help clients understand the specific advantages and disadvantages of implementing different compliance technologies as shown below:

  • SCRs - Fluor has installed four separate SCR compliance technologies that service a total capacity of 16,100MW.
  • Flue Gas Desulfurization - Fluor has installed eight different technologies that service a total capacity of 15,900MW.
  • Precipitators - Fluor has installed eight precipitators using different precipitator technologies that service a total of 18,852MW.

Fluor is a partner in the PowerspanSM Electro Catalytic Oxidation (ECO) technology. This patented multi-pollutant process is designed to scrub SO2, NOX, fine particulates and mercury. This technology is currently being utilized on a 50MW Commercial unit at FirstEnergy's Burger generating station in Ohio.

Fluor's experience is demonstrated by the following select projects:

Flue Gas Desulfurization

Selective Catalytic Reduction