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Radioactive waste research paper

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From: Skylar M.
Added: 30.03.2021
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Radioactivity in fracking wastewater comes from the interaction between a chemical slurry and ancient shale during the hydraulic fracturing process, according to Dartmouth College research. The study, detailed in twin papers appearing in Chemical Geology , is the first research that characterizes the phenomenon of radium transfer in the widely-used method to extract oil and gas. The findings add to what is already generally known about the mechanisms of radium release and could help the search for solutions to challenges in the fracking industry. As a result of fracking, the U. But the wastewater that is produced contains toxins like barium and radioactive radium. Upon decay, radium releases a cascade of other elements, such as radon, that collectively generate high radioactivity.

Radioactive Waste Disposal

Radioactive Waste Disposal Assignment Example | Topics and Well Written Essays - words

Science topics such as nuclear waste are not as frightening if you understand exactly how nuclear waste is used and the benefits of it. Nuclear waste research papers can explain the science behind nuclear energy or how nuclear waste is dealt with in the United States. Whatever you need to focus on, our scientists and physists can write you a project that explains whatever you need to focus on. As the popularity of nuclear fuel sources increases, so too, does the fear of a nuclear accident related to the generation of nuclear power or the transport of nuclear waste.

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Radioactive wastes are produced as a by-product from many important medical, industrial, research and defence activities. In the UK, the majority of radioactive waste is from the decommissioning of nuclear power reactors. This section looks at radioactive waste produced during the nuclear fuel cycle and radioactive waste produced from medical, industrial, research and defence activities. It includes the manufacturing of nuclear fuel and management of spent used nuclear fuel.
Two new research papers from The University of Manchester, working with colleagues at Sellafield Limited and the National Nuclear Laboratory show that microbes can actively colonize some of the most intensively radioactive waste storage sites in Europe. When nuclear facilities such as Sellafield were designed and built more than 50 years ago, it was sensible to assume that the conditions in the pond would prevent microbial life from taking hold, but now new research shows that this is not the case. The growth of microbial life in nuclear facilities can cause uncertainty or problems.

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