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Effects of Hydrogen Water Chemistry on Chemical Decontamination in Boiling Water Reactors (BWR)

机译:氢水化学对沸水反应器化学净化的影响(BWR)

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The oxide film that forms on the wetted surfaces of BWR process piping during normal plant operation varies widely depending on the plants method of operation and water chemistry. Early metal oxide films were primarily iron-nickel based oxides which were easily removed with the standard decontamination processes ofLOMITM, CITROXTM or CANDEREMTM. With the onset of hydrogen water chemistry (HWC) and zinc injection, process piping films proved to be more tenacious and resistant to the decontamination processes. Recent enhancements to the decontamination process application as well as new process solvents have mitigated the effects of HWC and zinc injection. By applying multiple acidic permanganate steps in conjunction with the standard processes and using improved techniques for solvent destruction, chrome rich films can be overcome with minimal increase in resin wastes. The changes to the decontamination processes will be analyzed and compared with results from recent process applications.
机译:在正常植物操作期间在BWR处理管道的湿润表面上形成的氧化物膜根据操作和水化学的植物方法而变化广泛。早期金属氧化膜主要是铁 - 镍基氧化物,其易于用洛米特,葡萄葡萄酒,葡萄球菌或烛光的标准去污方法除去。随着氢水化学(HWC)和锌注射的开始,工艺管道薄膜被证明更顽强,耐净化过程。最近对去污过程应用的增强以及新的工艺溶剂的增强减少了HWC和锌注射的影响。通过将多个酸性高锰酸盐步骤与标准方法结合施加并利用改进的溶剂破碎技术,可以通过最小的树脂废物增加来克服富含富铬的薄膜。将分析对去污过程的变化,并将其与最近的过程应用的结果进行比较。

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