Duke Energy, Duke University Partner on Innovative Power Project

CHARLOTTE, NC – Duke Energy and Duke University have announced a partnership that will lead to cleaner and more efficient power for the university and the surrounding community.

Under a proposed 35-year agreement and subject to approval by the North Carolina Utilities Commission (NCUC), Duke Energy Carolinas proposes to own, build and operate a 21-megawatt (MW) natural gas combined heat and power (CHP) facility on the Duke University campus in Durham.

If approved, the plant would use the waste heat from generating electricity to produce thermal energy and steam needed for the university, making it one of the most efficient generating assets in the Duke Energy generation fleet. The electric power would be put back on the Duke Energy electric grid to serve the university and nearby customers.

“This project will provide a cleaner and more diverse energy mix for the community and provide the value of thermal energy for the university,” says David Fountain, Duke Energy North Carolina president. “The innovative approach provides multiple benefits to a large customer like Duke University and is a cost-effective generation asset for Duke Energy and our customers in North Carolina.”

In addition to 21 megawatts of power, the facility would be capable of producing roughly 75,000 pounds per hour of steam, which would be sold to Duke University for heating water, among other things. The CHP facility would be connected to an existing Duke Energy substation located on the campus, which serves the university and its medical center as well as other customers.

“This partnership will provide value for Duke University and will accelerate our progress towards climate neutrality,” says Duke University's executive vice president Tallman Trask III.  “By combining steam and electricity generation systems, we can increase efficiency and reduce our overall consumption by millions of units of energy each year, and have a positive effect on the community at large.”

By displacing the current electricity mix and boilers currently serving the university, the project would lower energy-related carbon dioxide emissions at Duke University by about 25 percent. In the future, the project could also be used to isolate the critical loads on the campus, providing a method to increase reliability to hospitals and clinics as additional grid back up.

Duke Energy Carolinas will file with the NCUC for a Certificate of Public Convenience and Necessity for the project. If approved, the project — around $55 million — is expected to come online in 2018.

Duke Energy and Duke University are separate organizations — both with a connection to noted businessman James B. Duke (1856-1925).

About CHP
Sometimes referred to as cogeneration, CHP systems generate electricity and useful thermal energy in a single system. Heat that is normally wasted in conventional power generation is recovered -- avoiding the losses that would otherwise occur. CHP systems are more efficient than doing the same tasks with separate systems.

“Advancements in the technology make this type of system attractive to other large customers with similar power and related-energy needs,” adds Fountain. “We are excited to offer this service.”

About Duke Energy
Headquartered in Charlotte, NC, Duke Energy is a S&P 100 Stock Index company traded on the New York Stock Exchange under the symbol DUK.

About Duke University
Duke University consistently ranks among the leading institutions of higher education in the world. Duke educates 6,500 undergraduate and 8,500 graduate and professional students in ten schools and colleges, and has more than 160,000 alumni. While Duke’s campus is situated on nearly 9,000 acres in Durham, the university’s reach includes partner institutions in Singapore, China and many other countries.  With more than 36,000 faculty and staff in the university and health system, Duke is the second-largest private employer in North Carolina.

Featured

  • A digital silhouette works at a computer, immersed in a glowing, interconnected world

    How Will AI Transform Learning Space Design?

    For years, higher education has designed learning spaces around technology as a tool for display, capture, collaboration, and connectivity. AI changes that equation.

  • Massachusetts K–12 District Selects Architect for New Junior High

    Swansea Public Schools in Swansea, Mass., recently announced that it has selected Finegold Alexander Architects to design a new junior high school for the district, according to a news release. The firm will create the Feasibility Study and Schematic Design for Joseph Case Junior High School after a lengthy selection process by the Massachusetts School Building Authority (MSBA).

  • Photo courtesy of Kraus-Anderson

    Minnesota District Completes $49.7M Addition, Renovation Project

    St. Paul Public Schools in St. Paul, Minn., recently announced the completion of a $49.7-million addition and remodeling project at two district schools, according to a news release.

  • South Carolina District Starts Construction on $50M Middle School Renovation

    The Aiken County Public School District in North Augusta, S.C., recently held a groundbreaking ceremony for the $50-million renovation and expansion of North Augusta Middle School, according to a news release. The project’s funding comes from the 2024 renewal of a one-cent sales tax approved by local voters.