ISIJ International
Online ISSN : 1347-5460
Print ISSN : 0915-1559
ISSN-L : 0915-1559
Ironmaking
Exploring the Capability of Muon Scattering Tomography for Imaging the Components in the Blast Furnace
Xianfeng Hu Lena Sundqvist ÖkvistElin ÅströmFredrik ForsbergPaolo ChecchiaGermano BonomiIrene CalliariPiero CalviniAntonietta DonzellaEros FaraciFranco GonellaJoel KlingerDavide PaganoAndrea RigoniPietro ZanuttighPaolo RoncheseMichele UrbaniSara VaniniAldo ZenoniGianni Zumerle
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2018 年 58 巻 1 号 p. 35-42

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Knowing the distribution of the materials in the blast furnace (BF) is believed to be of great interest for BF operation and process optimization. In this paper calibration samples (ferrous pellets and coke) and samples from LKAB’s experimental blast furnace (probe samples, excavation samples and core-drilling samples) were measured by the muon scattering tomography detector to explore the capability of using the muon scattering tomography to image the components in the blast furnace. The experimental results show that it is possible to use this technique to discriminate the ferrous pellets from the coke and it is also shown that the measured linear scattering densities (LSD) linearly correlate with the bulk densities of the measured materials. By applying the Stovall’s model a correlation among the LSD values, the bulk densities and the components of the materials in the probe samples and excavation samples was established. The theoretical analysis indicates that it is potential to use the present muon scattering tomography technique to image the components in various zones of the blast furnace.

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© 2018 by The Iron and Steel Institute of Japan

This is an open access article under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs license.
https://creativecommons.org/licenses/by-nc-nd/4.0/
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