Study of effect and mechanism of flame retardation-bursting liability reduction based on chelating water injection wetting agent in coal seam

As coal mines continue to deepen high-intensity mining, the two disasters of coal seam rock burst and spontaneous combustion obviously have a trend of compound occurrence. How to achieve the integrated prevention and control of the two disasters is an important guarantee to realize coal mine safety....

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Main Authors: Lianman Xu, Hao Wei, Xinyue Kang, Yajing Li, Fengshuo Yang, Wenxin Li, Jianxin Kou, Xinyang Bao, Hui Fu
Format: Article
Language:English
Published: Elsevier 2022-11-01
Series:Energy Reports
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2352484722007430
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author Lianman Xu
Hao Wei
Xinyue Kang
Yajing Li
Fengshuo Yang
Wenxin Li
Jianxin Kou
Xinyang Bao
Hui Fu
author_facet Lianman Xu
Hao Wei
Xinyue Kang
Yajing Li
Fengshuo Yang
Wenxin Li
Jianxin Kou
Xinyang Bao
Hui Fu
author_sort Lianman Xu
collection DOAJ
description As coal mines continue to deepen high-intensity mining, the two disasters of coal seam rock burst and spontaneous combustion obviously have a trend of compound occurrence. How to achieve the integrated prevention and control of the two disasters is an important guarantee to realize coal mine safety. As a result, it is very important to select a coal seam water injection additive that can not only reduce the bursting liability, but also prolong the spontaneous combustion period of coal. In this paper, the chelating wetting agent was chosen to soak the coal, and the mass changed and carbon-containing functional groups during the coal oxidation process were studied by thermogravimetric and X-ray photoelectron spectroscopy, and tested the strength of coal by uniaxial compression experiment, and the scanning electron microscopy and low-temperature N2 adsorption were used to analyze the pore structure of coal. The experiment results show that the mass of the raw coal, the mass of the coal soaked in FeSO4 solution, and the mass of the coal soaked in the chelating wetting agent were reduced by 30.01%, 34.62% and 19.00%, respectively. The amount of the carbon–carbon bond and carbon–hydrogen bond decrease and the amount of carbon–oxygen bond increase in the chelating wetting agent soaking coal were less than in the water soaking coal and FeSO4 solution soaking coal. After soaking in the chelating wetting agent, the mechanical properties of the coal were changed, and the uniaxial compressive strength was reduced by 52.55%. The fractal dimension of the coal surface increased from 1.8448 to 1.8575, the average pore diameter in the coal was increased, the specific surface area was reduced, and the number of mesopores also increased. The above results can provide an important theoretical basis for the integrated prevention and control of rock burst-spontaneous combustion compound disaster.
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spelling doaj.art-827d676254fe484188633a58066943252023-02-21T05:11:07ZengElsevierEnergy Reports2352-48472022-11-01848994912Study of effect and mechanism of flame retardation-bursting liability reduction based on chelating water injection wetting agent in coal seamLianman Xu0Hao Wei1Xinyue Kang2Yajing Li3Fengshuo Yang4Wenxin Li5Jianxin Kou6Xinyang Bao7Hui Fu8School of environment, Liaoning University, Liaoning 110036, ChinaSchool of environment, Liaoning University, Liaoning 110036, China; Corresponding authors.School of environment, Liaoning University, Liaoning 110036, ChinaSchool of environment, Liaoning University, Liaoning 110036, ChinaSchool of environment, Liaoning University, Liaoning 110036, ChinaKey Laboratory of Mining Disaster Prevention and Control, Qingdao 266590, China; Corresponding authors.China Pingmei Shenma Energy and Chemical Industry Group Co., Ltd, ChinaHongyang No. 3 Coal Mine of Shenyang Coking Coal Co., Ltd., ChinaChina Pingmei Shenma Energy and Chemical Industry Group Co., Ltd, ChinaAs coal mines continue to deepen high-intensity mining, the two disasters of coal seam rock burst and spontaneous combustion obviously have a trend of compound occurrence. How to achieve the integrated prevention and control of the two disasters is an important guarantee to realize coal mine safety. As a result, it is very important to select a coal seam water injection additive that can not only reduce the bursting liability, but also prolong the spontaneous combustion period of coal. In this paper, the chelating wetting agent was chosen to soak the coal, and the mass changed and carbon-containing functional groups during the coal oxidation process were studied by thermogravimetric and X-ray photoelectron spectroscopy, and tested the strength of coal by uniaxial compression experiment, and the scanning electron microscopy and low-temperature N2 adsorption were used to analyze the pore structure of coal. The experiment results show that the mass of the raw coal, the mass of the coal soaked in FeSO4 solution, and the mass of the coal soaked in the chelating wetting agent were reduced by 30.01%, 34.62% and 19.00%, respectively. The amount of the carbon–carbon bond and carbon–hydrogen bond decrease and the amount of carbon–oxygen bond increase in the chelating wetting agent soaking coal were less than in the water soaking coal and FeSO4 solution soaking coal. After soaking in the chelating wetting agent, the mechanical properties of the coal were changed, and the uniaxial compressive strength was reduced by 52.55%. The fractal dimension of the coal surface increased from 1.8448 to 1.8575, the average pore diameter in the coal was increased, the specific surface area was reduced, and the number of mesopores also increased. The above results can provide an important theoretical basis for the integrated prevention and control of rock burst-spontaneous combustion compound disaster.http://www.sciencedirect.com/science/article/pii/S2352484722007430Rock burstSpontaneous combustionChelating wetting agentFlame retardationBursting liability reduction
spellingShingle Lianman Xu
Hao Wei
Xinyue Kang
Yajing Li
Fengshuo Yang
Wenxin Li
Jianxin Kou
Xinyang Bao
Hui Fu
Study of effect and mechanism of flame retardation-bursting liability reduction based on chelating water injection wetting agent in coal seam
Energy Reports
Rock burst
Spontaneous combustion
Chelating wetting agent
Flame retardation
Bursting liability reduction
title Study of effect and mechanism of flame retardation-bursting liability reduction based on chelating water injection wetting agent in coal seam
title_full Study of effect and mechanism of flame retardation-bursting liability reduction based on chelating water injection wetting agent in coal seam
title_fullStr Study of effect and mechanism of flame retardation-bursting liability reduction based on chelating water injection wetting agent in coal seam
title_full_unstemmed Study of effect and mechanism of flame retardation-bursting liability reduction based on chelating water injection wetting agent in coal seam
title_short Study of effect and mechanism of flame retardation-bursting liability reduction based on chelating water injection wetting agent in coal seam
title_sort study of effect and mechanism of flame retardation bursting liability reduction based on chelating water injection wetting agent in coal seam
topic Rock burst
Spontaneous combustion
Chelating wetting agent
Flame retardation
Bursting liability reduction
url http://www.sciencedirect.com/science/article/pii/S2352484722007430
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