首页> 外文会议>International conference on environmental degradation of materials in nuclear power systems-water reactors >MITIGATING EFFECT OF MAGNETITE BUFFERING ON ALLOY 800 TUBING DEGRADATION IN ACIDIC, SULPHATE-DOMINATED ENVIRONMENTS AT 300 °C
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MITIGATING EFFECT OF MAGNETITE BUFFERING ON ALLOY 800 TUBING DEGRADATION IN ACIDIC, SULPHATE-DOMINATED ENVIRONMENTS AT 300 °C

机译:在300°C的酸性,硫酸盐污染环境中,磁铁矿缓冲对合金800钢管降解的缓解作用。

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Sulphate may enter steam generators with feedwater, either as chronic in-leakage (for example, due to sulphate contamination in the condensers) or as an acute ingress (for example, from a loss of ion-exchange resin into the feedwater system). Following either ingress event, sulphate may accumulate in steam-generator crevices; possibly affecting tubing degradation by lowering the local pH_T, creating localized environments that are aggressive but the magnetite that is associated with steam generator crevices may set limits on how low the pH_T can drop. The work described in this paper investigates the effect of these aspects on the degradation of Alloy 800 and comprises two parts: evaluation of pH_T buffering by magnetite and corrosion testing in sulphate-dominated environments. For the corrosion testing, the aggressiveness of sulphate, by itself and in conjunction with chloride, to Alloy 800 has been investigated at 300 °C and at a pH_(300°C) between 3 and 4. Cyclic and potentiostatic polarization techniques were used to quantify the susceptibility of Alloy 800 in these environments and to identify the type of degradation. For the pH_T evaluation, the pH_T was experimentally measured in the same sulphate-bearing environment, in the absence, and in the presence, ofin-situ generated iron corrosion products, to investigate the possibility that pH_T could be buffered by dissolution of magnetite, adsorption of sulphates on the corrosion products that accumulate in the crevice, or other effects.
机译:硫酸盐可能会随着长期泄漏(例如,由于冷凝器中的硫酸盐污染)或急剧进入(例如,由于离子交换树脂损失进入给水系统)而与给水一起进入蒸汽发生器。在任何一个侵入事件之后,硫酸盐都可能在蒸汽发生器的缝隙中积聚。可能会通过降低局部pH_T来影响管道的降解,从而创建侵蚀性的局部环境,但与蒸汽发生器缝隙相关的磁铁矿可能会限制pH_T降低的范围。本文描述的工作研究了这些方面对800合金降解的影响,包括两部分:磁铁矿对pH_T缓冲的评估以及在硫酸盐为主的环境中的腐蚀测试。为了进行腐蚀测试,已经研究了硫酸盐本身以及与氯化物一起在800°C和pH_(300°C)在3和4之间时对800合金的侵蚀性。量化在这些环境中Alloy 800的磁化率,并确定降解的​​类型。对于pH_T评估,在没有硫酸盐存在的条件下和在有硫酸盐存在的条件下,在相同的含硫酸盐环境中实验测量了pH_T,以研究pH_T可以通过磁铁矿的溶解,吸附而被缓冲的可能性。腐蚀产物在缝隙中累积的硫酸盐或其他影响。

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