The Honeymoon uranium project in South Australia. (Photo: Boss Energy)
The board of Boss Energy Limited has made a “final investment decision” to develop the Honeymoon in situ uranium project in Australia, the Perth-based company announced last week. Boss said it will now accelerate engineering, procurement, and construction to ensure that Honeymoon—located in South Australia, near the border with New South Wales—remains on track for first production by December 2023, ramping up to a steady-state rate of 2.45 million pounds of U3O8 per year.
A group shot of Energoatom and Westinghouse personnel at the Khmelnytskyi nuclear power plant in Ukraine, where the first two AP1000 reactors under a recent agreement will be constructed. (Photo: Westinghouse)
The war in Ukraine notwithstanding, Westinghouse Electric Company has stepped up its partnership with Energoatom, Ukraine’s state-owned nuclear utility, signing agreements last week to supply all of the nuclear fuel for the country’s operating reactor fleet and to collaborate on the construction of nine AP1000 units for Ukraine, rather than the five earlier envisioned.
Artist’s rendering of a BWRX-300 plant. (Image: GE Hitachi Nuclear Energy)
Ontario-based GEH SMR Technologies Canada Ltd. and the Saskatchewan Industrial and Mining Suppliers Association (SIMSA) announced yesterday the signing of a memorandum of understanding focused on the potential deployment of the BWRX-300 small modular reactor in Saskatchewan.
The MOU calls for engaging with local suppliers to maximize the role of the Saskatchewan supply chain in the nuclear energy industry.
Dae Chung, associate principal deputy assistant secretary for corporate services (second from left) and other EM officials recently toured the Paducah Site. Also pictured (from left) are Jennifer Woodard, acting senior advisor to Chung; Jolie Fleming, technical services director for Four Rivers Nuclear Partnership; and Lisa Phillips, physical scientist. In this photo, they discuss the new criticality accident alarm system in the C-333 process building at Paducah. The building is being deactivated to prepare for future demolition. (Photo: DOE)
Officials from the Department of Energy’s Office of Environmental Management recently got a firsthand look at cleanup progress being made at the Paducah Site in western Kentucky. The site is owned by the DOE, which is overseeing environmental cleanup activities there, including environmental remediation, waste management, depleted uranium conversion, and decontamination and decommissioning.
The visit by Dae Chung, associate principal deputy assistant secretary for corporate services, and other EM officials included stops at the C-400 cleaning building remediation project, the new Large Item Neutron Assay System (LINAS), and the C-333 process building deactivation.
Hinkley Point C’s Unit 2, in March of this year. (Photo: EDF Energy)
The target date for the start of electricity generation at Hinkley Point C’s Unit 1 reactor has been moved back to June 2027, following the completion of a schedule and cost review of the new nuclear build project, EDF announced last week.
While the review considered the main aspects of the project to construct two 1,630-MWe EPRs in Somerset, England, the schedule and cost of electromechanical works and of final testing were not examined, according to the utility.
The world's first AP1000 reactors to enter operation, Sanmen units 1 and 2, in China. (Image: Westinghouse Inc.)
Westinghouse Electric Company and South Korea’s Hyundai Engineering & Construction have signed an agreement to “jointly participate in global AP1000 plant opportunities,” the Pennsylvania-based nuclear technology firm announced on May 24.
McMaster University, in Hamilton, Ontario, Canada. (Photo: McMaster University)
McMaster University, Ultra Safe Nuclear Corporation (USNC), and Global First Power (GFP) have embarked on a new partnership to study the feasibility of deploying a USNC Micro Modular Reactor (MMR) at McMaster University or an affiliated site. The three partners last week announced a memorandum of understanding that will support research on advanced reactor and small modular reactor technologies in support of Canada’s Net-Zero Emissions by 2050 goal.
The Pantex Plant in Texas (Photo: NNSA)
The National Nuclear Security Administration announced last week that it is canceling its November 2020 contract solicitation for management and operation of the Pantex Plant and Y-12 National Security Complex and terminating the contract award announced in November 2021 for the two sites. The NNSA intends to hold two new competitions for separate contracts to manage each site.
The Palisades nuclear power plant
Despite last month’s strong (and many might say overdue) expression of interest from Michigan Gov. Gretchen Whitmer in extending the operational life of the Palisades nuclear power plant via the Department of Energy’s new Civil Nuclear Credit Program, the facility’s 777-MWe pressurized water reactor was removed from service last Friday—11 days prior to its scheduled May 31 retirement date.

Representatives from Westinghouse and Penn State met at Westinghouse headquarters to sign a memorandum of understanding and enter a partnership focused on researching and developing microreactors. From left: Jason Beebe, director of the global transformation office at Westinghouse; Michael Valore, senior director of advance reactor commercialization, Westinghouse; Mike Shaqqo, senior vice president of advanced reactors, Westinghouse; Lora Weiss, senior vice president for research at Penn State; Jean Paul Allain, head of the Ken and Mary Alice Lindquist Department of Nuclear Engineering at Penn State; Geanie Umberger, associate vice president for research and director of industry research collaborations at Penn State; Saya Lee, assistant professor of nuclear engineering; Elia Merzari (back), associate professor of nuclear engineering; and Hilary Ruby, director of transformation for the Americas Operating Plant Services Business Unit at Westinghouse. (Photo: Westinghouse)
Artist’s rendering of USNC spacecraft using EmberCore. (Image: DIU)
The Defense Innovation Unit (DIU), a Department of Defense organization focused on swiftly putting commercial technology to use in the U.S. military, has awarded contracts for two nuclear technologies—compact fusion and radioisotope heat—for spacecraft that could carry a high-power payload and freely maneuver in cislunar space. The objective is to accelerate ground and flight testing and launch a successful orbital prototype demonstration of each approach in 2027.