Oxygen-iron interaction in liquid lead-bismuth eutectic alloy

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Oxygen-iron interaction in liquid lead-bismuth eutectic alloy. / Aerts, Alexander; Gavrilov, Serguei; Manfredi, Gabriele; Marino, Alessandro; Rosseel, Kris; Lim, Jun.

In: PCCP - Physical Chemistry Chemical Physics, Vol. 18, No. 29, 30.06.2016, p. 19526-19530.

Research output: Contribution to journalArticlepeer-review

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@article{89478397d49b45d19a4c9f10bbeaff0f,
title = "Oxygen-iron interaction in liquid lead-bismuth eutectic alloy",
abstract = "Iron released by steel corrosion was found to be a key impurity in reactions with dissolved oxygen in liquid lead-bismuth eutectic alloy. The iron-oxygen-magnetite equilibrium was characterized, allowing quantification of phenomena that are important for long- term operation of lead-alloy based installations such as corrosion rate control and management of precipitates.",
keywords = "lead bismuth eutectic, liquid lead alloys, magnetite, Corrosion",
author = "Alexander Aerts and Serguei Gavrilov and Gabriele Manfredi and Alessandro Marino and Kris Rosseel and Jun Lim",
note = "Score=10",
year = "2016",
month = jun,
day = "30",
doi = "10.1039/C6CP01561A",
language = "English",
volume = "18",
pages = "19526--19530",
journal = "PCCP - Physical Chemistry Chemical Physics",
issn = "1463-9076",
publisher = "RSC - Royal Society of Chemistry",
number = "29",

}

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TY - JOUR

T1 - Oxygen-iron interaction in liquid lead-bismuth eutectic alloy

AU - Aerts, Alexander

AU - Gavrilov, Serguei

AU - Manfredi, Gabriele

AU - Marino, Alessandro

AU - Rosseel, Kris

AU - Lim, Jun

N1 - Score=10

PY - 2016/6/30

Y1 - 2016/6/30

N2 - Iron released by steel corrosion was found to be a key impurity in reactions with dissolved oxygen in liquid lead-bismuth eutectic alloy. The iron-oxygen-magnetite equilibrium was characterized, allowing quantification of phenomena that are important for long- term operation of lead-alloy based installations such as corrosion rate control and management of precipitates.

AB - Iron released by steel corrosion was found to be a key impurity in reactions with dissolved oxygen in liquid lead-bismuth eutectic alloy. The iron-oxygen-magnetite equilibrium was characterized, allowing quantification of phenomena that are important for long- term operation of lead-alloy based installations such as corrosion rate control and management of precipitates.

KW - lead bismuth eutectic

KW - liquid lead alloys

KW - magnetite

KW - Corrosion

UR - http://ecm.sckcen.be/OTCS/llisapi.dll/open/19572394

U2 - 10.1039/C6CP01561A

DO - 10.1039/C6CP01561A

M3 - Article

VL - 18

SP - 19526

EP - 19530

JO - PCCP - Physical Chemistry Chemical Physics

JF - PCCP - Physical Chemistry Chemical Physics

SN - 1463-9076

IS - 29

ER -

ID: 1422978