NUCLEAR TECHNIQUES, Volume. 46, Issue 3, 030603(2023)

Effect of zinc injection on crud deposition and boron precipitation on fuel cladding surface

Jiapeng LIAO, Yulong MAO*, Tianming RUAN, Yousen HU, Desheng JIN, Jinggang LI**, and Zhongcun CHEN
Author Affiliations
  • China Nuclear Power Technology Research Institute Co, Ltd., Shenzhen 518000, China
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    References(19)

    [1] Armstrong B, Bosma J, Cheng B et al. PWR axial offset anomaly (AOA) guidelines[R](1999).

    [2] Daniel M W, Richard B, Ryuji U. Impact of PWR primary water dissolved hydrogen concentration on fuel crud and boron accumulation[C](2016).

    [6] Tigeras A, Stellwag B, Engler N et al. Understanding the zinc behaviour in PWR primary coolant: a comparison between French and German experience[J]. VGB Power Technology, 12, 61-69(2008).

    [7] Reid R, Little M J. PWR primary system chemistry control during hot functional testing[C](2014).

    [14] LIAO Jiapeng, MAO Yulong, JIN Desheng et al. Laboratory simulation of crud deposition on Zr-alloy fuel cladding in simulated pressurized water reactor primary coolant[J]. Journal of Chinese Society for Corrosion and Protection, 43, 197-201(2023).

    [16] Beverskog B. The role of zinc in LWRs[C](2004).

    [17] Byers W A, Deshon J. Structure and chemistry of PWR crud[C](2006).

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    Jiapeng LIAO, Yulong MAO, Tianming RUAN, Yousen HU, Desheng JIN, Jinggang LI, Zhongcun CHEN. Effect of zinc injection on crud deposition and boron precipitation on fuel cladding surface[J]. NUCLEAR TECHNIQUES, 2023, 46(3): 030603

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    Paper Information

    Category: Research Articles

    Received: Oct. 20, 2022

    Accepted: --

    Published Online: Apr. 17, 2023

    The Author Email:

    DOI:10.11889/j.0253-3219.2023.hjs.46.030603

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