Cargando…

A synchrotron-based local computed tomography combined with data-constrained modelling approach for quantitative analysis of anthracite coal microstructure

Quantifying three-dimensional spatial distributions of pores and material compositions in samples is a key materials characterization challenge, particularly in samples where compositions are distributed across a range of length scales, and where such compositions have similar X-ray absorption prope...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Wen Hao, Yang, Sam Y. S., Xiao, Ti Qiao, Mayo, Sherry C., Wang, Yu Dan, Wang, Hai Peng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3998815/
https://www.ncbi.nlm.nih.gov/pubmed/24763649
http://dx.doi.org/10.1107/S1600577514002793
_version_ 1782313419374854144
author Chen, Wen Hao
Yang, Sam Y. S.
Xiao, Ti Qiao
Mayo, Sherry C.
Wang, Yu Dan
Wang, Hai Peng
author_facet Chen, Wen Hao
Yang, Sam Y. S.
Xiao, Ti Qiao
Mayo, Sherry C.
Wang, Yu Dan
Wang, Hai Peng
author_sort Chen, Wen Hao
collection PubMed
description Quantifying three-dimensional spatial distributions of pores and material compositions in samples is a key materials characterization challenge, particularly in samples where compositions are distributed across a range of length scales, and where such compositions have similar X-ray absorption properties, such as in coal. Consequently, obtaining detailed information within sub-regions of a multi-length-scale sample by conventional approaches may not provide the resolution and level of detail one might desire. Herein, an approach for quantitative high-definition determination of material compositions from X-ray local computed tomography combined with a data-constrained modelling method is proposed. The approach is capable of dramatically improving the spatial resolution and enabling finer details within a region of interest of a sample larger than the field of view to be revealed than by using conventional techniques. A coal sample containing distributions of porosity and several mineral compositions is employed to demonstrate the approach. The optimal experimental parameters are pre-analyzed. The quantitative results demonstrated that the approach can reveal significantly finer details of compositional distributions in the sample region of interest. The elevated spatial resolution is crucial for coal-bed methane reservoir evaluation and understanding the transformation of the minerals during coal processing. The method is generic and can be applied for three-dimensional compositional characterization of other materials.
format Online
Article
Text
id pubmed-3998815
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher International Union of Crystallography
record_format MEDLINE/PubMed
spelling pubmed-39988152014-05-13 A synchrotron-based local computed tomography combined with data-constrained modelling approach for quantitative analysis of anthracite coal microstructure Chen, Wen Hao Yang, Sam Y. S. Xiao, Ti Qiao Mayo, Sherry C. Wang, Yu Dan Wang, Hai Peng J Synchrotron Radiat Research Papers Quantifying three-dimensional spatial distributions of pores and material compositions in samples is a key materials characterization challenge, particularly in samples where compositions are distributed across a range of length scales, and where such compositions have similar X-ray absorption properties, such as in coal. Consequently, obtaining detailed information within sub-regions of a multi-length-scale sample by conventional approaches may not provide the resolution and level of detail one might desire. Herein, an approach for quantitative high-definition determination of material compositions from X-ray local computed tomography combined with a data-constrained modelling method is proposed. The approach is capable of dramatically improving the spatial resolution and enabling finer details within a region of interest of a sample larger than the field of view to be revealed than by using conventional techniques. A coal sample containing distributions of porosity and several mineral compositions is employed to demonstrate the approach. The optimal experimental parameters are pre-analyzed. The quantitative results demonstrated that the approach can reveal significantly finer details of compositional distributions in the sample region of interest. The elevated spatial resolution is crucial for coal-bed methane reservoir evaluation and understanding the transformation of the minerals during coal processing. The method is generic and can be applied for three-dimensional compositional characterization of other materials. International Union of Crystallography 2014-03-18 /pmc/articles/PMC3998815/ /pubmed/24763649 http://dx.doi.org/10.1107/S1600577514002793 Text en © Wen Hao Chen et al. 2014 http://creativecommons.org/licenses/by/2.0/uk/ This is an open-access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
spellingShingle Research Papers
Chen, Wen Hao
Yang, Sam Y. S.
Xiao, Ti Qiao
Mayo, Sherry C.
Wang, Yu Dan
Wang, Hai Peng
A synchrotron-based local computed tomography combined with data-constrained modelling approach for quantitative analysis of anthracite coal microstructure
title A synchrotron-based local computed tomography combined with data-constrained modelling approach for quantitative analysis of anthracite coal microstructure
title_full A synchrotron-based local computed tomography combined with data-constrained modelling approach for quantitative analysis of anthracite coal microstructure
title_fullStr A synchrotron-based local computed tomography combined with data-constrained modelling approach for quantitative analysis of anthracite coal microstructure
title_full_unstemmed A synchrotron-based local computed tomography combined with data-constrained modelling approach for quantitative analysis of anthracite coal microstructure
title_short A synchrotron-based local computed tomography combined with data-constrained modelling approach for quantitative analysis of anthracite coal microstructure
title_sort synchrotron-based local computed tomography combined with data-constrained modelling approach for quantitative analysis of anthracite coal microstructure
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3998815/
https://www.ncbi.nlm.nih.gov/pubmed/24763649
http://dx.doi.org/10.1107/S1600577514002793
work_keys_str_mv AT chenwenhao asynchrotronbasedlocalcomputedtomographycombinedwithdataconstrainedmodellingapproachforquantitativeanalysisofanthracitecoalmicrostructure
AT yangsamys asynchrotronbasedlocalcomputedtomographycombinedwithdataconstrainedmodellingapproachforquantitativeanalysisofanthracitecoalmicrostructure
AT xiaotiqiao asynchrotronbasedlocalcomputedtomographycombinedwithdataconstrainedmodellingapproachforquantitativeanalysisofanthracitecoalmicrostructure
AT mayosherryc asynchrotronbasedlocalcomputedtomographycombinedwithdataconstrainedmodellingapproachforquantitativeanalysisofanthracitecoalmicrostructure
AT wangyudan asynchrotronbasedlocalcomputedtomographycombinedwithdataconstrainedmodellingapproachforquantitativeanalysisofanthracitecoalmicrostructure
AT wanghaipeng asynchrotronbasedlocalcomputedtomographycombinedwithdataconstrainedmodellingapproachforquantitativeanalysisofanthracitecoalmicrostructure
AT chenwenhao synchrotronbasedlocalcomputedtomographycombinedwithdataconstrainedmodellingapproachforquantitativeanalysisofanthracitecoalmicrostructure
AT yangsamys synchrotronbasedlocalcomputedtomographycombinedwithdataconstrainedmodellingapproachforquantitativeanalysisofanthracitecoalmicrostructure
AT xiaotiqiao synchrotronbasedlocalcomputedtomographycombinedwithdataconstrainedmodellingapproachforquantitativeanalysisofanthracitecoalmicrostructure
AT mayosherryc synchrotronbasedlocalcomputedtomographycombinedwithdataconstrainedmodellingapproachforquantitativeanalysisofanthracitecoalmicrostructure
AT wangyudan synchrotronbasedlocalcomputedtomographycombinedwithdataconstrainedmodellingapproachforquantitativeanalysisofanthracitecoalmicrostructure
AT wanghaipeng synchrotronbasedlocalcomputedtomographycombinedwithdataconstrainedmodellingapproachforquantitativeanalysisofanthracitecoalmicrostructure