Some Geotechnical Properties of Pure and Waste Gypsum for Geoelectrical Grounding Applications

Natural occurring gypsum is a soft mineral consists of hydrated calcium sulphate, mainly used in cement industry. On the other hand, red gypsum (RG) is a waste generated from a sulphate process of ilmenite ore to acquire titanium dioxide. Due to the gypsum content in both materials are similar, it i...

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Main Authors: Mohd Tadza Mohd Yuhyi, Mazelan Nurmazuria, Yusri Nur Farahana, Abdullah Amizatulhani
Format: Article
Language:English
Published: Sciendo 2019-09-01
Series:Civil and Environmental Engineering Reports
Subjects:
Online Access:http://www.degruyter.com/view/j/ceer.2019.29.issue-3/ceer-2019-0027/ceer-2019-0027.xml?format=INT
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spelling doaj-7dc1108de8434842971b113891998e342020-11-25T01:47:58ZengSciendoCivil and Environmental Engineering Reports2080-51872450-85942019-09-012939710610.2478/ceer-2019-0027ceer-2019-0027Some Geotechnical Properties of Pure and Waste Gypsum for Geoelectrical Grounding ApplicationsMohd Tadza Mohd Yuhyi0Mazelan Nurmazuria1Yusri Nur Farahana2Abdullah Amizatulhani3Faculty of Civil Engineering and Earth Reources, Universiti Malaysia Pahang, Lebuhraya Tun Razak, 26300, Gambang, Kuantan (Pahang)Faculty of Civil Engineering and Earth Reources, Universiti Malaysia Pahang, Lebuhraya Tun Razak, 26300, Gambang, Kuantan (Pahang)Faculty of Civil Engineering and Earth Reources, Universiti Malaysia Pahang, Lebuhraya Tun Razak, 26300, Gambang, Kuantan (Pahang)Faculty of Civil Engineering and Earth Reources, Universiti Malaysia Pahang, Lebuhraya Tun Razak, 26300, Gambang, Kuantan (Pahang)Natural occurring gypsum is a soft mineral consists of hydrated calcium sulphate, mainly used in cement industry. On the other hand, red gypsum (RG) is a waste generated from a sulphate process of ilmenite ore to acquire titanium dioxide. Due to the gypsum content in both materials are similar, it is expected that both gypsum type can be used for similar engineering applications. In this study, RG was tested and compared to pure gypsum for geoelectrical grounding applications. The geotechnical properties and plasticity characteristics were carefully measured and tested. In addition, X-ray fluorescence (XRF) was employed to study the chemical constituents of the materials. Test results showed that, the geotechnical properties of RG is different to that of white gypsum. The plasticity index (PI) of RG was 239.6% greater due to the presence of Fe ions. Surprisingly, the electrical resistivity of both material were found to be similar. It was also noted that, although the plasticity of pure gypsum is high, the plasticity of pure gypsum was found to be short lived primarily due to instantaneous exothermic reaction between water and semi-hydrated gypsum. The change in the plasticity also affected the resistivity as gypsum hardened after short duration. Based on the geotechnical and plasticity characteristics determined, RG was found to be a better as grounding material as compared to gypsum.http://www.degruyter.com/view/j/ceer.2019.29.issue-3/ceer-2019-0027/ceer-2019-0027.xml?format=INTgypsumtitanium dioxidered gypsumplasticitygroundingelectrical resistivity
collection DOAJ
language English
format Article
sources DOAJ
author Mohd Tadza Mohd Yuhyi
Mazelan Nurmazuria
Yusri Nur Farahana
Abdullah Amizatulhani
spellingShingle Mohd Tadza Mohd Yuhyi
Mazelan Nurmazuria
Yusri Nur Farahana
Abdullah Amizatulhani
Some Geotechnical Properties of Pure and Waste Gypsum for Geoelectrical Grounding Applications
Civil and Environmental Engineering Reports
gypsum
titanium dioxide
red gypsum
plasticity
grounding
electrical resistivity
author_facet Mohd Tadza Mohd Yuhyi
Mazelan Nurmazuria
Yusri Nur Farahana
Abdullah Amizatulhani
author_sort Mohd Tadza Mohd Yuhyi
title Some Geotechnical Properties of Pure and Waste Gypsum for Geoelectrical Grounding Applications
title_short Some Geotechnical Properties of Pure and Waste Gypsum for Geoelectrical Grounding Applications
title_full Some Geotechnical Properties of Pure and Waste Gypsum for Geoelectrical Grounding Applications
title_fullStr Some Geotechnical Properties of Pure and Waste Gypsum for Geoelectrical Grounding Applications
title_full_unstemmed Some Geotechnical Properties of Pure and Waste Gypsum for Geoelectrical Grounding Applications
title_sort some geotechnical properties of pure and waste gypsum for geoelectrical grounding applications
publisher Sciendo
series Civil and Environmental Engineering Reports
issn 2080-5187
2450-8594
publishDate 2019-09-01
description Natural occurring gypsum is a soft mineral consists of hydrated calcium sulphate, mainly used in cement industry. On the other hand, red gypsum (RG) is a waste generated from a sulphate process of ilmenite ore to acquire titanium dioxide. Due to the gypsum content in both materials are similar, it is expected that both gypsum type can be used for similar engineering applications. In this study, RG was tested and compared to pure gypsum for geoelectrical grounding applications. The geotechnical properties and plasticity characteristics were carefully measured and tested. In addition, X-ray fluorescence (XRF) was employed to study the chemical constituents of the materials. Test results showed that, the geotechnical properties of RG is different to that of white gypsum. The plasticity index (PI) of RG was 239.6% greater due to the presence of Fe ions. Surprisingly, the electrical resistivity of both material were found to be similar. It was also noted that, although the plasticity of pure gypsum is high, the plasticity of pure gypsum was found to be short lived primarily due to instantaneous exothermic reaction between water and semi-hydrated gypsum. The change in the plasticity also affected the resistivity as gypsum hardened after short duration. Based on the geotechnical and plasticity characteristics determined, RG was found to be a better as grounding material as compared to gypsum.
topic gypsum
titanium dioxide
red gypsum
plasticity
grounding
electrical resistivity
url http://www.degruyter.com/view/j/ceer.2019.29.issue-3/ceer-2019-0027/ceer-2019-0027.xml?format=INT
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