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Update on the Use of Dissolved Oxygen Addition to Monitor the Effectiveness of Noble Metal Applications in External Manifolds

机译:更新溶解氧的使用,以监测外歧管中贵金属应用的有效性

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Electrochemical corrosion potential (ECP) measurements in a Mitigation Monitoring System (MMS) ECP manifold have historically been a primary indicator of the effectiveness of an On-Line NobleChem (OLNC) application, with the MMS ECP intended to measure the catalytic effect of noble metal deposited on the ECP manifold surface. In some plants ECP measurements made on untreated surfaces prior to an OLNC application were significantly lower than what would be expected for stainless steel under reactor bulk chemistry conditions. This is due to the consumption and depletion of bulk liquid dissolved oxygen (DO) in the lines supplying reactor water to these external ECP measurement locations. This phenomenon degrades the ability to use these external manifolds to confirm noble metal deposition. Previous papers have described how the injection of an oxygen-rich stream to the MMS supply stream (DO Addition) can be used to re-establish the capability of external ECP measurements to monitor the catalytic behavior of platinum deposited during an OLNC injection. This paper will provide an update of how this method is being successfully used in operating BWRs to monitor OLNC injections. The paper will outline the overall approach used to characterize the catalytic behavior of external ECP manifolds before and after the noble metal application and present plant data collected during DO Additions performed under various conditions.
机译:在缓解监测系统(MMS)ECP歧管中的电化学腐蚀电位(ECP)测量历史上是在线NOBLECHEM(OLNC)应用的有效性的主要指标,MMS ECP旨在测量贵金属的催化作用沉积在ECP歧管表面上。在某些植物中,在OLNC施用之前在未处理的表面上制备的ECP测量显着低于反应堆散装化学条件下的不锈钢所预期的。这是由于在向这些外部ECP测量位置供应反应器水的管线中散装液体溶解氧(DO)的消耗和耗尽。这种现象会降低使用这些外歧管来确认贵金属沉积的能力。先前的论文描述了如何将富含氧的流注射到MMS供应流(做添加)中,可用于重新建立外部ECP测量的能力,以监测在OLNC注射过程中沉积铂的催化行为。本文将提供更新如何在操作BWR中成功用于监控OLNC喷射的方法。本文将概述用于表征外部ECP歧管的催化行为在贵金属施用之前和之后的催化行为,并在各种条件下进行的添加期间收集的植物数据。

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