NUCLEAR TECHNIQUES, Volume. 46, Issue 3, 030603(2023)
Effect of zinc injection on crud deposition and boron precipitation on fuel cladding surface
[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).
Get Citation
Copy Citation Text
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
Category: Research Articles
Received: Oct. 20, 2022
Accepted: --
Published Online: Apr. 17, 2023
The Author Email: