Granulometric properties of particles in Upper Miocene sandstones from thin sections, Szolnok Formation, Hungary

Particle size and shape are among the most important properties of sedimentary deposits. Objective and robust determination of granulometric features of sediments is a challenging problem, and has been standingin the focal point of sedimentary studies for many decades. In this study, we provide an o...

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Main Authors: Csilla Király, György Falus, Fruzsina Gresina, Gergely Jakab, Zoltán Szalai, György Varga
Format: Article
Language:English
Published: Research Centre for Astronomy and Earth Sciences, Hungarian Academy of Sciences 2019-12-01
Series:Hungarian Geographical Bulletin
Subjects:
Online Access:https://ojs3.mtak.hu/index.php/hungeobull/article/view/2208
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spelling doaj-96a20e499f564e999c8e4789c3d2a9672020-11-25T00:26:47ZengResearch Centre for Astronomy and Earth Sciences, Hungarian Academy of SciencesHungarian Geographical Bulletin2064-50312064-51472019-12-0168434135310.15201/hungeobull.68.4.22208Granulometric properties of particles in Upper Miocene sandstones from thin sections, Szolnok Formation, HungaryCsilla Király0György Falus1Fruzsina Gresina2Gergely Jakab3Zoltán Szalai4György Varga5Geographical Institute, Research Centre for Astronomy and Earth Sciences, Budapest, HungaryMining and Geological Survey of Hungary, Budapest, Hungary ; Institute of Geography and Earth Sciences, Faculty of Science, Eötvös University, Budapest, HungaryInstitute of Geography and Earth Sciences, Faculty of Science, Eötvös University, Budapest, HungaryGeographical Institute, Research Centre for Astronomy and Earth Sciences, Budapest, Hungary ; Institute of Geography and Earth Sciences, Faculty of Science, Eötvös University, Budapest, Hungary ; Institute of Geography and Geoinformatics, University of Miskolc, Miskolc, HungaryGeographical Institute, Research Centre for Astronomy and Earth Sciences, Budapest, Hungary ; Institute of Geography and Earth Sciences, Faculty of Science, Eötvös University, Budapest, HungaryGeographical Institute, Research Centre for Astronomy and Earth Sciences, Budapest, HungaryParticle size and shape are among the most important properties of sedimentary deposits. Objective and robust determination of granulometric features of sediments is a challenging problem, and has been standingin the focal point of sedimentary studies for many decades. In this study, we provide an overview of a new analytical approach to characterize particles from thin sections of sandstones by using 2D automated optical static image analysis. The analysed samples are originated from the turbiditic Lower Pannonian (Upper Miocene) sediments of Szolnok Formation. Sandstone samples were analysed from 1,500 to 2,250 m depth range. According to the previous studies: the detrital components are quartz, muscovite, dolomite, K-feldspar and plagioclase. Diagenetic minerals are mostly carbonates (calcite, Fe-dolomite, ankerite, siderite), clay minerals (illite, kaolinite), ankerite, siderite and kaolinite. As the discussed Szolnok Formation is considered as a potential CO2 storage system (to reduce atmospheric CO2 concentration), special attention has to be paid on grain size and shape alteration evaluation, since pore water-rock interactions affected by CO2 injection may cause changes in particle properties. The primarily aim of the present study was to develop a method for effective characterization of the particle size and shape of sandstones from thin sections. We have applied a Malvern Morphologi G3SE-ID automated optical static image analyser device, what is completed with a Raman spectrometer. Via the combined analysis of granulometry and chemical characterization, it was obvious that there were specific relationships among various grain shape parameters (e.g., circularity values correlate to width and length ratios, as well as to convexity) and the results indicated that based simply on particle shapes, muscovites can be effectively separated from other minerals. Quartz and feldspar grains showed the highest variability in shapes as these are detrital ones, and sometimes arrived as lithic fragments from which other parts were dissolved The size and shape of carbonate minerals depends highly on the original pore size and shape because these minerals are mainly diagenetic. The shape of detrital dolomites depends on diagenetic ankerite, as it replaces the rim of dolomites.https://ojs3.mtak.hu/index.php/hungeobull/article/view/2208grain sizegrain shapesandstoneimage analysispore water-rock interaction
collection DOAJ
language English
format Article
sources DOAJ
author Csilla Király
György Falus
Fruzsina Gresina
Gergely Jakab
Zoltán Szalai
György Varga
spellingShingle Csilla Király
György Falus
Fruzsina Gresina
Gergely Jakab
Zoltán Szalai
György Varga
Granulometric properties of particles in Upper Miocene sandstones from thin sections, Szolnok Formation, Hungary
Hungarian Geographical Bulletin
grain size
grain shape
sandstone
image analysis
pore water-rock interaction
author_facet Csilla Király
György Falus
Fruzsina Gresina
Gergely Jakab
Zoltán Szalai
György Varga
author_sort Csilla Király
title Granulometric properties of particles in Upper Miocene sandstones from thin sections, Szolnok Formation, Hungary
title_short Granulometric properties of particles in Upper Miocene sandstones from thin sections, Szolnok Formation, Hungary
title_full Granulometric properties of particles in Upper Miocene sandstones from thin sections, Szolnok Formation, Hungary
title_fullStr Granulometric properties of particles in Upper Miocene sandstones from thin sections, Szolnok Formation, Hungary
title_full_unstemmed Granulometric properties of particles in Upper Miocene sandstones from thin sections, Szolnok Formation, Hungary
title_sort granulometric properties of particles in upper miocene sandstones from thin sections, szolnok formation, hungary
publisher Research Centre for Astronomy and Earth Sciences, Hungarian Academy of Sciences
series Hungarian Geographical Bulletin
issn 2064-5031
2064-5147
publishDate 2019-12-01
description Particle size and shape are among the most important properties of sedimentary deposits. Objective and robust determination of granulometric features of sediments is a challenging problem, and has been standingin the focal point of sedimentary studies for many decades. In this study, we provide an overview of a new analytical approach to characterize particles from thin sections of sandstones by using 2D automated optical static image analysis. The analysed samples are originated from the turbiditic Lower Pannonian (Upper Miocene) sediments of Szolnok Formation. Sandstone samples were analysed from 1,500 to 2,250 m depth range. According to the previous studies: the detrital components are quartz, muscovite, dolomite, K-feldspar and plagioclase. Diagenetic minerals are mostly carbonates (calcite, Fe-dolomite, ankerite, siderite), clay minerals (illite, kaolinite), ankerite, siderite and kaolinite. As the discussed Szolnok Formation is considered as a potential CO2 storage system (to reduce atmospheric CO2 concentration), special attention has to be paid on grain size and shape alteration evaluation, since pore water-rock interactions affected by CO2 injection may cause changes in particle properties. The primarily aim of the present study was to develop a method for effective characterization of the particle size and shape of sandstones from thin sections. We have applied a Malvern Morphologi G3SE-ID automated optical static image analyser device, what is completed with a Raman spectrometer. Via the combined analysis of granulometry and chemical characterization, it was obvious that there were specific relationships among various grain shape parameters (e.g., circularity values correlate to width and length ratios, as well as to convexity) and the results indicated that based simply on particle shapes, muscovites can be effectively separated from other minerals. Quartz and feldspar grains showed the highest variability in shapes as these are detrital ones, and sometimes arrived as lithic fragments from which other parts were dissolved The size and shape of carbonate minerals depends highly on the original pore size and shape because these minerals are mainly diagenetic. The shape of detrital dolomites depends on diagenetic ankerite, as it replaces the rim of dolomites.
topic grain size
grain shape
sandstone
image analysis
pore water-rock interaction
url https://ojs3.mtak.hu/index.php/hungeobull/article/view/2208
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