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Assessment of Spontaneous Heating Susceptibility of Some Indian Coals using Experimental Techniques

机译:利用实验技术评估一些印度煤的自发热敏感性

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摘要

Coal mine fire is a major problem worldwide and has been a great concern both for the industry and researchers in this field. Majority of fires existing today in different coalfields are mainly due to spontaneous combustion of coal. Most mine fires start very small and gradually expand in size, thereby, causing loss of natural property, serious environmental pollution of land, water and air and considerable economic losses to the organisation. Although much research has been done on the subject, a proper assessment of the spontaneous heating susceptibility of coal needs to be done so that mine operators are notified well in advance and plan the working properly. Therefore, the determination of susceptibility of coals to spontaneous heating and their classification is essential to plan the production activities and optimise coal mine production within the incubation period. ududEXPERIMENTAL INVESTIGATIONududTo carry out this study, coal samples were collected from the field using channel sampling. Samples from many seams from different coal mines were collected, sealed in air tight containers and carefully brought to the laboratory for further preparation. The collected samples were subject to coning, quartering and grinding. They were then screened to a size of -212 micron and placed inside small air-tight bags. Various field visits were also made to know about the actual conditions that exist in the working conditions and which could be included in the study, during the analyses.udThe Proximate analysis for determination of ash, volatile matter and moisture Content was performed to determine the intrinsic properties of coal. Gross calorific values of coals were found out using Bomb Calorimeter. The results of proximate analysis and calorific value are as presented in Table1. The spontaneous heating susceptibility tendency of the coal samples were determined using crossing point temperature (CPT), differential thermal analysis (DTA) and wet oxidation potential difference. The results of these analyses are presented in Table 2. Correlation between the intrinsic properties and susceptibility indices were also carried out.
机译:煤矿火灾是世界范围内的主要问题,一直是该行业和该领域研究人员的关注重点。如今,不同煤田中存在的大多数火灾主要是由于煤炭自燃所致。大多数地雷起火很小,并逐渐扩大,从而造成自然财产损失,土地,水和空气的严重环境污染,并给组织造成可观的经济损失。尽管已对该主题进行了大量研究,但仍需要对煤的自发热敏感性进行适当的评估,以便提前通知矿山经营者并适当地计划工作。因此,确定煤对自热的敏感性及其分类对于在潜伏期内计划生产活动和优化煤矿产量至关重要。 ud ud实验研究 ud ud为了进行这项研究,我们使用渠道采样从田间收集了煤样品。收集了来自不同煤矿的许多煤层的样品,将其密封在气密容器中,并小心地带到实验室进行进一步准备。将收集的样品进行锥化,四等分和研磨。然后将它们筛分至-212微米大小,并放入小型气密袋中。在分析过程中,还进行了各种现场访问,以了解工作条件中存在的实际条件,并且可以将其包括在研究中。 ud进行了灰分,挥发性物质和水分含量测定的近距离分析以确定煤炭的内在特性。使用炸弹量热仪发现了煤的总热值。表1列出了近似分析和热值的结果。利用交点温度(CPT),差热分析(​​DTA)和湿式氧化电位差确定了煤样品的自发热敏感性趋势。这些分析的结果列于表2。内在性质与磁化率指标之间也进行了相关。

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    Bagchi Anujit;

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