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Pilot-Scale Treatment of a Spent Uranium Catalyst Formally Used in the SOHIO Process: Pilot Plant Verification of the SENSEI Process

机译:在SOHIO过程中使用的废铀催化剂的试验规模治疗:SensiI过程的试验工厂验证

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Approximately 7000 drums of waste uranium catalyst are currently present in Korea and require an appropriate treatment and waste management strategy. Recently, one such process has been developed and has proven successful at both laboratory and bench scales. The success of the process has culminated in its verification at a pilot plant scale. The purpose of this paper is to describe the catalyst treatment process and present results obtained from the pilot plant study that may be applicable to other such wastes. The individual unit technologies have been tested and verified, enabling process scale-up to be successfully proven. The final volume reduction of up to 80% has been confirmed with the successful separation, encapsulation, and immobilization of residue wastes, representing a potential cost saving of US$70 million compared to the direct disposal. The inactive silica component of the waste catalyst was purified and confirmed to be free of uranium. All effluents generated during the process were treated and satisfy the appropriate Korean release criteria. The process employs the concept of Selective Extraction of Nonradioactive Species, Encapsulation, and Immobilization, and is therefore introduced as the SENSEI process.
机译:目前韩国目前存在大约7000桶废物铀催化剂,需要适当的处理和废物管理策略。最近,已经开发了一种这样的过程,并在实验室和台阶尺度方面成功了。该过程的成功已在试点植物规模核实中已核准。本文的目的是描述催化剂处理过程,并从先导植物研究中获得的现有结果,这些研究可能适用于其他此类废物。已经测试和验证了各个单元技术,使得能够成功证明流程扩展。通过成功的分离,包封和固定残留废物的成功分离,包封和固定,达到了高达80%的最终体积减少,与直接处置相比,潜在成本节省了7000万美元。纯化废催化剂的无活性二氧化硅组分并证实不含铀。在该过程中产生的所有污水进行处理并满足适当的韩国释放标准。该方法采用选择性提取非参芪的非偶联物种,包封和固定的概念,因此被引入Sensii方法。

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