首页> 外文会议>ASME international conference on environmental remediation and radioactive waste management >DEVELOPMENT OF A MECHANICAL BASED SYSTEM FOR DRY RETRIEVAL OF SINGLE-SHELL TANK WASTE AT HANFORD
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DEVELOPMENT OF A MECHANICAL BASED SYSTEM FOR DRY RETRIEVAL OF SINGLE-SHELL TANK WASTE AT HANFORD

机译:基于机械的汉福德单罐废物干法回收系统的开发

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This study explores the development of a mechanical based system to retrieve single-shell tank waste at the Hanford site, located in Richland, Washington, without the addition of water. Out of 177 tanks at Hanford, there are 149 single-shell tanks (SST) and 28 double-shell tanks (DST). There are currently 67 SSTs that have leaked radioactive waste to the surrounding groundwater in the past or assumed to have questionable tank integrity. Leaking tanks continue to be a major concern as it was recently announced in February 2013 that six SSTs are leaking, even though they were believed to have been stabilized back in 2005. There are also several tanks with significant in-tank obstructions, such as air-lift circulators, where an arm-based retrieval would not be possible. All current methods of waste retrieval deployed involve the addition of significant amounts of water to generate a slurry that can be pumped out of the tank. This water, however, can exacerbate the leak and risk the potential of leaking more waste into the surrounding soil, subsequently contaminating the groundwater. It also reduces available waste storage space in DSTs, and increases the risk of dangerous buoyant displacement gas release events (BDGRE) in the headspace of DSTs. Focusing on leaking tanks, tanks with significant in-tank obstructions, and utilizing existing risers in Hanford's tanks, this study evaluates commercially available dry technologies, such as augers and high-powered vacuums, for feasibility, safety, and efficiency of waste retrieval at Hanford.
机译:这项研究探索了一种基于机械的系统的开发,该系统可在位于华盛顿州里奇兰德的汉福德工厂不加水的情况下回收单壳式垃圾箱。在汉福德(Hanford)的177个储罐中,有149个单壳储罐(SST)和28个双壳储罐(DST)。目前,有67个SST过去曾将放射性废物泄漏到周围的地下水中,或被认为储罐的完整性令人怀疑。储罐泄漏仍然是一个主要问题,因为最近在2013年2月宣布有6个SST泄漏,尽管据信它们在2005年已经稳定下来。还有一些储罐内有严重障碍物,例如空气举式循环器,在这种情况下不可能进行基于手臂的取回。当前采用的所有废物回收方法都涉及添加大量的水以产生可以从水箱中抽出的泥浆。但是,这种水会加剧泄漏,并有可能将更多的废物泄漏到周围的土壤中,从而污染地下水。它还减少了DST中可用的废物存储空间,并增加了DST顶部空间中危险的浮力置换气体释放事件(BDGRE)的风险。这项研究主要针对泄漏的储罐,具有明显内部障碍物的储罐以及利用汉福德储罐中的现有立管,评估了汉福德市售的干式技术(如螺旋钻和大功率真空吸尘器)的可行性,安全性和效率, 。

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