한국어

Laser Uranium Enrichment Company (GLE) accelerates development

201
2024-06-22 10:16:22
번역 보기

Paducah, located in western Kentucky, may become the location of the world's first commercial facility to adopt this technology.
Since 2016, Global Laser Enrichment Company (GLE) has partnered with the US Department of Energy to use its unique molecular process to concentrate 200000 tons of depleted uranium "tails" stored at the former Padiuka gas diffusion plant in western Kentucky.

After years of research and testing, GLE has successfully pushed third-generation nuclear technology to the forefront of commercialization. This enterprise was originally jointly owned by General Electric and Hitachi, and now is 51% owned by Australian nuclear technology pioneer Silex, while Canadian nuclear fuel supplier Cameco holds the remaining 49%.

Recently, GLE signed an important agreement with the local government to obtain the option to acquire the land near the former PGDP (Padiuka Gas Diffusion Plant). This factory, which has been in use for national defense since 1952, began producing fuel grade uranium for nuclear reactors in 1964 and ceased operations in 2013.

At the same time, the Padiuka McCracken County Industrial Development Bureau has reached a transfer agreement for a piece of land located in Fulton County and Hickman County along the Mississippi River. Once GLE exercises its option, the land will be transferred to KFW.

Bruce Wilcox, President and CEO of Greater Paduah Economic Development, revealed that the option will expire in December 2024, but GLE expects its Test Loop pilot facility in Wilmington, North Carolina to complete a technical demonstration before that.

McLarken County Commissioner Eddie Jones, as the chairman of the Padiuka Community Reuse Organization, welcomes this and sees it as an "exciting development". He emphasized that Padiyuka's nuclear history may be key to its economic revival.

Regarding the core technology of GLE, Patrick White, the research director of the Nuclear Innovation Alliance, pointed out that the principle of laser uranium enrichment is to selectively excite uranium-235 molecules using lasers and separate them from uranium-238 molecules through physical methods. Compared to traditional gas diffusion or centrifuge technology, laser concentration has higher energy efficiency and smaller footprint.

However, some scientists and securities experts have expressed concerns about the global nuclear proliferation potential of Silex technology. In this regard, White believes that as long as appropriate control measures are implemented to ensure that technology is used responsibly, its existence "may not necessarily be a big problem".

Nima Ashkeboussi, Vice President of Government Relations and Communication at GLE, revealed in an interview that the construction cost of the facility is expected to exceed $1 billion. US President Biden approved a spending bill worth $2.7 billion in March this year to build an advanced nuclear fuel supply chain, and Ashkeboussi expects GLE to receive some funding support from it to achieve its ambitious goals.

Source: OFweek

관련 추천
  • Innovative laser technology: a novel quantum cavity model for superradiance emission

    Quantum optics is a complex field where theoretical and experimental physicists collaborate to achieve breakthroughs in explaining subatomic level phenomena.Recently, Farokh Mivehvar from the University of Innsbruck used the most comprehensive model in quantum optics, the Dicke model, to study the interaction between two groups of atoms in a quantized field. This new study makes it possible to obs...

    2024-03-16
    번역 보기
  • In situ bubble point measurement using spectroscopy

    Develop and research a new downhole bubble point pressure measurement technology suitable for black oil and volatile oil to enhance well analysis using spectroscopy.Representative fluid characteristics are required for a wide range of oilfield lifespans, such as the initial scale and production planning of reservoir hydrocarbon reserves. Fluid characteristics are usually obtained from laboratory s...

    2024-01-31
    번역 보기
  • Japan and Germany jointly develop ultra high speed laser material deposition technology

    Makino Machine Tool Company, headquartered in Tokyo, Japan, and Fraunhofer Institute for Laser Technology (ILT), headquartered in Aachen, Germany, have collaborated to combine ultra-high speed laser material deposition (EHLA) and near net shape additive manufacturing (EHLA3D) with a five axis CNC platform. The new system developed can efficiently produce, coat, or repair complex geometric shapes o...

    2024-10-25
    번역 보기
  • Medium-long wavelength infrared quantum cascade laser of MOCVD on silicon

    Us researchers report 8.1 μm wavelength quantum cascade laser (QCL) grown on silicon (Si) by MOCVD [S. Xu et al., Applications. Physics Letters, v123, p031110, 2023]. "There are no previous reports of QCL growth on silicon substrates by metal-organic chemical vapor deposition (MOCVD)," commented the team from the University of Wisconsin-Madison, the University of Illinois at Urbana-Champaign an...

    2023-08-04
    번역 보기
  • CinIonic launches a new cinema screen specifically designed for laser theaters

    CinIonic announced the launch of a new cinema screen specifically designed for laser auditoriums. CinIonic Laser Screen 2.4 amplifies the power of laser projection by optimizing efficiency and enhancing screen presentation. This new screen is aimed at becoming the ideal companion for CinIonic Laser and is the first screen product in the CinIonic All Laser Solution portfolio.The CinIonic laser scre...

    2023-09-20
    번역 보기