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Radium King

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The Radium King was built in 1937 to haul ore on the Mackenzie River , and her tributaries. This included uranium used in the US atom bombs of World War II . Later in her active career she hauled barges on Great Slave Lake .

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43-673: The Radium King , and a sister ship, the Radium Queen , were built in the Manseau shipyards in Montreal . They were then disassembled and the pieces were loaded on flatcars for shipment by railroad to Waterways, Alberta , which was then the northern terminus of the North American railway grid, to be reassembled and launched on the Mackenzie River. It required nine flatcars to completely load all

86-515: A cargo/tug ship that served on the Slave River . It made runs between Lake Athabaska and Great Slave Lake which is generally navigable. The Radium Queen towed barges from the railhead at Waterways, Alberta to a portage around the rapids. Cargo was unloaded there and transported by land, and loaded on barges on the lower river that were towed by the Radium King , and later by other tugboats, like

129-517: A fuel in CANDU reactors. Currently, AECL is developing the Advanced CANDU Reactor , or "ACR". This design is meant to improve the commercial CANDU 6 design in terms of capital cost and construction schedule, while maintaining the classic design and safety characteristics of the CANDU concept. Cernavoda Nuclear Power Plant Unit 2 began operation on May 6, 2007 . Preparatory work required for

172-511: A heavy water leak (May 14, 2009). The production from the NRU reactor represented a significant fraction of the worlds medical isotope supply and the disruptions caused a worldwide shortage. Due to maintenance requirements from the aging NRU reactor and the failure of the MAPLE 1 & 2 reactor projects, the long term production of medical isotopes at Chalk River became uncertain. The NRU reactor at Chalk River

215-567: A nuclear bomb made from plutonium manufactured by the CIRUS research reactor built by AECL in 1956, which was a commercial version of its NRX research reactor. In addition AECL built two power reactors in India based on the Douglas Point design, and many of India's other reactors are domestic variants of this design. The connection between India's nuclear weapons program and its CIRUS research reactor led to

258-514: A severance of nuclear technological cooperation between Canada and India. In 1977–1978 the Bruce A group went online and began commercial operation. Each Bruce unit produces about 800 MWe of power. In 1978, Whiteshell Labs began research into fuel waste disposal. Between 1983 and 1986, the Pickering B group went online and also in 1983 the single CANDU reactor at Point Lepreau began operation, as did

301-582: Is a Canadian Crown corporation and the largest nuclear science and technology laboratory in Canada. AECL developed the CANDU reactor technology starting in the 1950s, and in October 2011 licensed this technology to Candu Energy . AECL describes its goal as ensuring that "Canadians and the world receive energy, environmental and economic benefits from nuclear science and technology – with confidence that nuclear safety and security are assured". Until October 2011, AECL

344-614: Is already part of Team CANDU, a group of five companies that manufacture and refurbish the CANDU reactors. The government will continue to own the Chalk River Laboratories (produces isotopes for medical imaging). The transaction puts 800 jobs at risk while improving job security for 1,200 employees. Due to safety concerns many countries are considering thorium nuclear reactors which AECL's CANDU reactors easily convert into (from uranium fuelled). Higher energy yields using thorium as

387-575: Is on display outside the Northern Life Museum in Fort Smith, Northwest Territories . The Radium King was restored, and turned into a museum. In 2005 Atomic Energy of Canada published a study of the toxic legacy of the mining of radioactive ore at Port Radium. According to the report the Radium King and all the other surviving vessels of the Radium line were found to be free of contamination, with

430-514: Is the world's largest supplier of molybdenum -99 for diagnostic tests, and cobalt-60 for cancer therapy. AECL is funded through a combination of federal government appropriations and commercial revenue. In 2009, AECL received CA$ 651 (equivalent to $ 893.99 in 2023)   million in federal support. In October 2011 the federal government of Canada sold the commercial CANDU design and marketing business of AECL to Candu Energy for CA$ 15   million (including 15 years worth of royalties,

473-596: The Radium Charles , Radium Express and Radium Yellowknife . It was built at the Manseau Shipyards , then disassembled and shipped by railroad to Waterways. The Radium Queen was shipped first, and reassembled at Waterways, so she could tow the parts to assemble the Radium King downstream to the rapids on the Slave River. The parts to the Radium King were then portaged around the rapids to be assembled on

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516-628: The Gentilly 2 CANDU reactor. Between 1984 and 1987 the Bruce B group began commercial operation, and also in 1987 the CANDU design was ranked one of Canada's top-10 engineering achievements. Douglas Point was decommissioned in May, 1984. Between 1985 and 1987, a series of design flaws in AECL's Therac-25 medical accelerator caused massive overdoses of radiation on 6 different occasions, resulting in five deaths. In 1987

559-756: The Hydro-Electric Power Commission of Ontario to build Canada's first nuclear power plant at Rolphton, Ontario, which is 30 kilometres (19 mi) upstream from Chalk River. On June 4, 1962, the NPD ( Nuclear Power Demonstration ) first reactor went critical to demonstrate the CANDU concept, generating about 20 MWe. In 1963, AECL established the Whiteshell Nuclear Research Establishment (now Whiteshell Laboratories ) in Pinawa , Manitoba , where an organically moderated and cooled reactor

602-463: The NRX reactor at AECL's Chalk River Laboratories, when a combination of human and mechanical error led to a temporary loss of control over the reactor's power level. Undercooling of the fuel channels led to a partial meltdown . This caused a hydrogen-oxygen explosion inside the calandria . Several fuel bundles experienced melting and ruptured, rendering much of the core interior unusable. The reactor building

645-538: The National Research Council of Canada to develop a design for a nuclear reactor. Canadian firms had American contracts from the Manhattan Project ; with Eldorado Gold Mines for mining and processing uranium ore and with by Consolidated Mining and Smelting (CMS) for a heavy water plant at Trail, British Columbia . In 1944, approval was given by the federal government to begin with construction of

688-469: The Radium King was the first vessel to cross Great Slave Lake—arriving in Yellowknife on June 8. While the lake's ice had broken up, it hadn't moved out. Northern Transportation added additional vessels to her fleet, many of which, like the Radium Charles and Radium Yellowknife also bore the prefix "Radium", and the line was known locally as the " Radium Line ". In 1956 the Radium King survived

731-514: The NRU ( National Research Universal Reactor ) first went critical. This was a natural-uranium fuelled, heavy-water moderated and cooled research reactor (converted to high-enriched-uranium fuel in the 1960s, and finally to low-enriched-uranium fuel in the 1990s). The NRU is a world-renowned research facility, producing about 60% of the world's supply of molybdenum-99, the principle isotope used for nuclear medical diagnosis. Canada also pioneered use of cobalt-60 for medical diagnosis in 1951 and currently

774-472: The NRU reactor produces the medical-use cobalt-60, while selected CANDU reactors produce industrial-use cobalt-60, comprising 85% of the world's supply. NRU was primarily a Canadian design, and a significant improvement on NRX. Other than radioisotope production, the NRU provides irradiation services for nuclear materials and fuels testing, as well as producing neutron beams for the National Research Council's Canadian Neutron Beam Laboratory. On May 24, 1958,

817-423: The NRU suffered a major accident. A damaged uranium fuel rod caught fire and was torn in two as it was being removed from the core, due to inadequate cooling. The fire was extinguished, but not before releasing a sizeable quantity of radioactive combustion products that contaminated the interior of the reactor building and, to a lesser degree, an area of the surrounding laboratory site. Over 600 people were employed in

860-518: The United States". ZEEP put Canada at the forefront of nuclear research in the world and was the instigator behind eventual development of the CANDU reactors, ZEEP having operated as a research reactor until the early 1970s. In 1946 the Montreal research laboratory was closed and research was consolidated at Chalk River Laboratories. On July 22, 1947, the NRX (National Research Experimental) reactor,

903-687: The ZEEP (Zero Energy Experimental Pile) reactor at the Chalk River Nuclear Laboratories near Chalk River, Ontario , located on the Ottawa River approximately 190 km northwest of Ottawa . AECL was also involved in the development of associated technology such as the UTEC computer. On September 5, 1945, the ZEEP reactor first went critical, achieving the first "self-sustained nuclear reaction outside

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946-442: The clean-up. [2] [3] No immediate injuries resulted from AECL's two accidents, but there were over-exposures to radiation. In the case of the NRU cleanup, this resulted in at least one documented case of latent, life-changing injury, as well as allegations that radiation monitoring and protection were inadequate (meaning that additional latent injuries would have gone unrecognized or unacknowledged). In 1954 AECL partnered with

989-411: The completion of Units 3 and 4 is scheduled to begin by the end of 2007. Company president Robert Van Adel announced that he would be stepping down from the position of president and retired from the company effective November 11, 2007. Energy Alberta Corporation announced August 27, 2007, that they had filed application for a license to build a new nuclear plant at Lac Cardinal (30 km west of

1032-585: The design was flawed. Unit 1 of the Cernavodă Nuclear Power Plant was commissioned on December 2, 1996. Rated at 706 MWe, it currently supplies approximately 10% of Romania's electrical needs. Unit Two achieved criticality on 6 May 2007 and was connected to the national grid on 7 August. It began operating at full capacity on 12 September 2007, also producing 706 MW. In the late 1990s, several reactors were built by AECL in South Korea . Wolsong 2

1075-628: The exception of the Radium Gilbert . 60°00′17″N 111°53′19″W  /  60.004827°N 111.888603°W  / 60.004827; -111.888603 Radium Queen (ship) The Radium Queen and her sister ship the Radium King were built in Sorel, Quebec in 1937, for the Northern Transportation Company , a subsidiary of Eldorado Gold Mines . The Radium Queen was

1118-459: The explosion of mining supplies on a barge she was towing. In 1959 noted English professor Hugh MacLennan described a trip he took down the Mackenzie on the Radium King for Maclean's magazine . He said the vessel was suddenly frozen in, on Great Slave Lake, for over a week, due to a sudden cold snap at the beginning of the shipping season in 1958. In 1967 the boat was retired. Currently she

1161-547: The fuel (1 tonne (0.98 long tons; 1.1 short tons) of thorium produces the same amount of energy as 200 tonnes (200 long tons; 220 short tons) tons of uranium) also makes it more attractive. OMERS has also shown interest in the company. AECL traces its heritage to the Second World War when a joint Canadian- British nuclear research laboratory, the Montreal Laboratory , was established in Montreal in 1942, under

1204-549: The government could get back as much as CA$ 285   million). The sale entered the exclusive negotiation stage in February, a month after the other bidder, Bruce Power pulled out). Poor sales and cost overruns ( CA$ 1.2   billion in the last five years) were reasons for the divestment though SNC-Lavalin expects to reverse that trend by focusing on new generation reactors . SNC-Lavalin Nuclear Inc, SNC's nuclear subsidiary

1247-658: The lower reaches. In 2005 Atomic Energy of Canada published a study of the toxic legacy of the mining of radioactive ore at Port Radium. According to the report all but one of the surviving vessels of the Radium Line were found to be free of contamination, with the exception of the Radium Gilbert , but whether the Radium Queen had been contaminated could not be determined, as she had been scrapped. Atomic Energy of Canada Atomic Energy of Canada Limited ( AECL )

1290-478: The machine was found defective by the Food and Drug Administration (FDA) and eventually recalled by AECL despite their multiple denials that the problems existed. Between 1990 and 1993, the 4 CANDU reactors at Darlington went online and represent the most recent reactor construction in Canada. In 1991, AECL decided to spin off its medical isotope production business under the name Nordion International Inc. The unit

1333-428: The most powerful reactor in the world at the time, went critical and was "used successfully for producing radioisotopes, undertaking fuels and materials development work for CANDU reactors, and providing neutrons for physics experiments". In 1952 AECL was formed by the government with a mandate to develop peaceful uses of nuclear energy. On December 12, 1952, one of the world's first major reactor accidents occurred in

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1376-596: The parts of the vessel. The Radium King was staffed by a crew of 10, and could carry 10 passengers. The shipping season was short during the working lifetime of the Radium King . In 1942 she was to be the last vessel to make the round trip down the Mackenzie River, and had to leave on August 17, in order arrive back on time. On November 16, 1945, the Radium King and the Radium Express were caught by freeze up in Yellowknife. The Edmonton Journal reported in 1953 that

1419-575: The reactor debris. [1] The NRX was repaired, upgraded, and returned to service 14 months later and operated for another 40 years, finally being shut down in 1992. Throughout the 1950s the NRX was used by many researchers in the pioneering fields of neutron condensed matter physics, including Dr. Bertram Brockhouse , who shared the 1994 Nobel Prize in Physics for his work in developing the neutron scattering techniques. The NRU opened in 1957. On November 3, 1957

1462-421: The reactors. In June 2009 the province announced that only AECL's ACR-1000 submission met all the proposal requirements. The Ontario government has since suspended the acquisition process citing the cost and uncertainty surrounding the companies future ownership (discussed below). Medical isotope production using the 1957-built NRU reactor experienced two forced outages due to safety concerns (December 2007) and

1505-701: The town of Peace River . The application would see an initial twin AECL Advanced CANDU Reactor (ACR) plant go online in 2017, producing 2.2 gigawatt (electric). Point Lepreau, New Brunswick CANDU 6 plant refurbishment to begin as of April 1, 2008. In June 2008, the Province of Ontario has announced plans to build two additional commercial reactors for electricity generation at a site next to Ontario Power Generation 's Darlington Nuclear Generating Station Two companies, AREVA and Westinghouse Electric Company along with AECL submitted proposals to build

1548-411: The way for upscaling to commercial power CANDU reactors in subsequent years. In 1971 the first commercial CANDU reactor, Pickering A 1, began commercial operation. By 1973 the other three reactors of the A group at Pickering were online and constituted the most powerful nuclear facility in the world at that time. Each Pickering unit produces about 600 MWe of power. On May 18, 1974, India detonated

1591-462: The world's medical isotopes , meaning that the second reactor would be used as a back-up to ensure an uninterruptible supply. The first reactor was started but experienced malfunctions in its safety rods, and a positive nuclear power feedback coefficient was recorded. After running over the Schedule by more than 8 years and more than doubling the initial budget, AECL cancelled the project in 2008 because

1634-622: Was also the vendor of CANDU technology, which it had exported worldwide. Throughout the 1960s–2000s AECL marketed and built CANDU facilities in India , South Korea , Argentina , Romania , and the People's Republic of China . It is a member of the World Nuclear Association trade group. In addition, AECL manufactures nuclear medicine radioisotopes for supply to Nordion in Ottawa , Ontario, and

1677-500: Was built. Later work on developing a SLOWPOKE reactor , thorium fuel cycle , and a proposal for safe storage of radioactive waste were carried out at this site. AECL built a larger CANDU prototype (200 MWe) at Douglas Point on Lake Huron, first going critical on November 15, 1966. Douglas Point experienced significant problems with leakage of heavy water , which were eventually solved by much-improved valve design. Other important design refinements worked out at Douglas Point opened

1720-504: Was commissioned July 1, 1997. Wolsong 3 was commissioned on July 1, 1998. Wolsong 4 was commissioned October 1, 1999. All three reactors were rated at 715MWe Gross Output. They currently have some of the highest lifetime capacity factors of nuclear reactors. In 2001, AECL began tests at Chalk River Labs to determine the feasibility of using surplus mixed oxide fuel (MOX) from the Russian and U.S. defence programs (which contains plutonium) as

1763-515: Was contaminated, as well as an area of the Chalk River site, and millions of gallons of radioactive water accumulated in the reactor basement. This water was pumped to a waste management area of the Laboratories and monitored. Hundreds of military personnel from Canada and the U.S. (including naval officer and later U.S. President, LT James "Jimmy" Carter ) were employed in the cleanup and disposal of

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1806-605: Was shut down in 2018. In the summer of 2011 SNC-Lavalin won an international bidding process for the reactor design division of the company. Prior to the acquisition, 10% of SNC Lavalin's international power workforce (400 of 4000) were engaged in the production and refurbishment of nuclear reactors. Concerns raised about the deal include a lack of commitment by SNC-Lavalin to keeping the design division intact (its size makes it more capable of providing ongoing safety support). For 2010 and 2009 combined Atomic Energy of Canada Ltd lost CA$ 493   million. Following divestiture of

1849-466: Was sold to MDS Health Group and now operates under the name MDS Nordion With a contract signed in 1991, AECL, in partnership with MDS Nordion, began construction of the MAPLE dedicated isotope-production facility. Constructed on-site at AECL's Chalk River Laboratories this facility would house two reactors and an isotope processing facility. Each reactor was designed to be able to produce at least 100% of

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