X-ray Microcomputed Tomography (μCT) for Mineral Characterization: A Review of Data Analysis Methods

被引:53
|
作者
Guntoro, Pratama Istiadi [1 ]
Ghorbani, Yousef [1 ]
Koch, Pierre-Henri [1 ]
Rosenkranz, Jan [1 ]
机构
[1] Lulea Univ Technol, MiMeR Minerals & Met Engn, SE-97187 Lulea, Sweden
关键词
X-ray microcomputed tomography; data analysis; mineral characterization; texture; mineralogy; COMPUTED-TOMOGRAPHY; QUANTITATIVE-ANALYSIS; IMAGE SEGMENTATION; DISTANCE TRANSFORMATIONS; MICROTOMOGRAPHY IMAGES; 3D CHARACTERIZATION; MICRO-TOMOGRAPHY; SURFACE-AREA; PORE-SPACE; QUANTIFICATION;
D O I
10.3390/min9030183
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The main advantage of X-ray microcomputed tomography (mu CT) as a non-destructive imaging tool lies in its ability to analyze the three-dimensional (3D) interior of a sample, therefore eliminating the stereological error exhibited in conventional two-dimensional (2D) image analysis. Coupled with the correct data analysis methods, mu CT allows extraction of textural and mineralogical information from ore samples. This study provides a comprehensive overview on the available and potentially useful data analysis methods for processing 3D datasets acquired with laboratory mu CT systems. Our study indicates that there is a rapid development of new techniques and algorithms capable of processing mu CT datasets, but application of such techniques is often sample-specific. Several methods that have been successfully implemented for other similar materials (soils, aggregates, rocks) were also found to have the potential to be applied in mineral characterization. The main challenge in establishing a mu CT system as a mineral characterization tool lies in the computational expenses of processing the large 3D dataset. Additionally, since most of the mu CT dataset is based on the attenuation of the minerals, the presence of minerals with similar attenuations limits the capability of mu CT in mineral segmentation. Further development on the data processing workflow is needed to accelerate the breakthrough of mu CT as an analytical tool in mineral characterization.
引用
收藏
页数:32
相关论文
共 50 条
  • [1] Application of machine learning techniques in mineral phase segmentation for X-ray microcomputed tomography (μCT) data
    Guntoro, Pratama Istiadi
    Tiu, Glacialle
    Ghorbani, Yousef
    Lund, Cecilia
    Rosenkranz, Jan
    MINERALS ENGINEERING, 2019, 142
  • [2] Gas hydrate characterization in sediments via x-ray microcomputed tomography
    Abbasi, Ghazanfer Raza
    Arif, Muhammad
    Isah, Abubakar
    Ali, Muhammad
    Mahmoud, Mohamed
    Hoteit, Hussein
    Keshavarz, Alireza
    Iglauer, Stefan
    EARTH-SCIENCE REVIEWS, 2022, 234
  • [3] Pore Structure Characterization of Pervious Concrete Using X-Ray Microcomputed Tomography
    Chandrappa, Anush K.
    Biligiri, Krishna Prapoorna
    JOURNAL OF MATERIALS IN CIVIL ENGINEERING, 2018, 30 (06)
  • [4] Application of X-ray Microcomputed Tomography for the Static and Dynamic Characterization of the Microstructure of Oleofoams
    Metilli, Lorenzo
    Storm, Malte
    Marathe, Shashidhara
    Lazidis, Aris
    Marty-Terrade, Stephanie
    Simone, Elena
    LANGMUIR, 2022, 38 (04) : 1638 - 1650
  • [5] X-Ray Microcomputed Tomography in Additive Manufacturing: A Review of the Current Technology and Applications
    du Plessis, Anton
    Yadroitsev, Igor
    Yadroitsava, Ina
    Le Roux, Stephan G.
    3D PRINTING AND ADDITIVE MANUFACTURING, 2018, 5 (03) : 227 - 247
  • [6] Characterization of acoustically engineered polymer nanocomposite metamaterials using x-ray microcomputed tomography
    Mitri, F. G.
    Garzon, F. H.
    Sinha, D. N.
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2011, 82 (03):
  • [7] Microscale Characterization of Field and Laboratory Foamed Cement by Use of X-Ray Microcomputed Tomography
    Pang, Xueyu
    Maxson, Joe K.
    Jimenez, Walmy Cuello
    Singh, John P.
    Morgan, Ronnie G.
    SPE JOURNAL, 2017, 22 (05): : 1690 - 1703
  • [8] Application of X-ray microcomputed tomography in the characterization of irradiated nuclear fuel and material specimens
    Silva, C. M.
    Snead, L. L.
    Hunn, J. D.
    Specht, E. D.
    Terrani, K. A.
    Katoh, Y.
    JOURNAL OF MICROSCOPY, 2015, 260 (02) : 163 - 174
  • [9] Inside Marginal Adaptation of Crowns by X-ray MicroComputed Tomography
    dos Santos, Thais M.
    Lima, Inaya
    Pimenta, Manoel A. C.
    Rivaldo, Elken G.
    Frasca, Luis Carlos F.
    Lopes, Ricardo Tadeu
    IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 2016, 63 (03) : 1594 - 1599
  • [10] MicroComputed tomography with a photon-counting X-ray detector
    Frey, Ec.
    Taguchi, K.
    Kapusta, M.
    Xu, J.
    Orskaug, T.
    Ninive, I.
    Wagenaar, D.
    Patt, B.
    Tsui, B. M. W.
    MEDICAL IMAGING 2007: PHYSICS OF MEDICAL IMAGING, PTS 1-3, 2007, 6510