4.7 Article

Physico-chemical characteristics of pulverized coals and their interrelations-a spontaneous combustion and explosion perspective

期刊

ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH
卷 29, 期 17, 页码 24849-24862

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s11356-021-17626-9

关键词

Pulverized coal; Bulk density; Particle size; Specific surface area; Spontaneous combustion; Explosion

资金

  1. Science and Engineering Research Board (SERB) [EMR/2016/004210]

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The study focuses on the physico-chemical characteristics of coal and their interrelations, specifically analyzing the effects of particle size on bulk density, specific surface area, and N-2 adsorption capacity of pulverized coals. As particle size decreases, bulk density decreases while specific surface area increases. Furthermore, correlations between bulk density, specific surface area, and particle size are established.
Characteristics of pulverized coals have significant influence on the spontaneous combustion and explosion processes. This paper presents an experimental and theoretical framework on physico-chemical characteristics of coal and their interrelations from spontaneous combustion and explosion perspectives. The chemical properties, morphology, bulk density, particle size, and specific surface area of pulverized coals from nine different coal subsidiaries of India are vividly investigated in five distinct sizes. Moreover, the effects of particle size on bulk density, specific surface area, and N-2 adsorption capacity of pulverized coals are critically analyzed. With decrease in particle size, the bulk density of pulverized coals decreased, and the specific surface area and N-2 adsorption capacity increased. The relationships of bulk density and specific surface area of pulverized coals with particle size are established. Moreover, the specific surface areas determined by both the particle sizing and BET methods are compared, and correlation factors between them are determined. This study generated insightful coal characteristic data, which can be useful for furthering research on spontaneous combustion and explosion involving pulverized coals.

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