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RADIOLOGICAL ISSUES ASSOCIATED WITH THE RECENT BOOM IN OIL AND GAS HYDRAULIC FRACTURING

机译:油气水力压裂与近期动荡相关的放射学问题

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As the worldwide hydraulic fracturing 'tracking' market continued to grow to an estimated $37 Billion in 2012, the need to understand and manage radiological issues associated with fracking is becoming imperative. Fracking is a technique that injects pressurized fluid into rock layer to propagate fractures that allows natural gas and other petroleum products to be more easily extracted. Radioactivity is associated with fracking in two ways. Radioactive tracers are frequently a component of the injection fluid used to determine the injection profile and locations of fractures. Second, because there are naturally-occurring radioactive materials (NORM) in the media surrounding and containing oil and gas deposits, the process of fracking can dislodge radioactive materials and transport them to the surface in the wastewater and gases. Treatment of the wastewater to remove heavy metals and other contaminates can concentrate the NORM into technologically-enhanced NORM (TENORM). Regulations to classify, transport, and dispose of the TENORM and other radioactive waste can be complicated and cumbersome and vary widely in the international community and even between states/provinces. In many cases, regulations on NORM and TENORM do not even exist. Public scrutiny and regulator pressure will only continue to increase as the world demands on oil and gas continue to rise and greater quantities of TENORM materials are produced. Industry experts, health physicists, regulators, and public communities must work together to understand and manage radiological issues to ensure reasonable and effective regulations protective of the public, environment, and worker safety and health are implemented.
机译:随着全球水力压裂“追踪”市场在2012年持续增长,估计达到370亿美元,了解和管理与压裂相关的放射学问题变得迫在眉睫。压裂技术是一种将加压流体注入岩层中以传播裂缝的技术,从而可以更容易地开采天然气和其他石油产品。放射性以两种方式与压裂相关。放射性示踪剂通常是用于确定注入剖面和裂缝位置的注入流体的组成部分。其次,由于介质周围自然存在放射性物质(NORM),并含有油气沉积物,因此压裂过程会驱除放射性物质并将其输送到废水和气体中的地表。处理废水以去除重金属和其他污染物可以将NORM浓缩为技术增强的NORM(TENORM)。 TENORM和其他放射性废物的分类,运输和处置法规可能很复杂且繁琐,并且在国际社会甚至州/省之间差异很大。在许多情况下,甚至没有关于NORM和TENORM的法规。随着全球对石油和天然气的需求持续上升以及生产更多的TENORM材料,公众监督和监管机构的压力只会继续增加。行业专家,健康物理学家,监管机构和公共社区必须共同努力,以了解和管理放射学问题,以确保实施合理,有效的法规来保护公众,环境以及工人的安全和健康。

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