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浅埋综采面采空区遗煤CO产生规律实验研究
作者姓名:杨小彬  聂朝刚  张子鹏  熊紫琛  裴艳宇
作者单位:中国矿业大学(北京)应急管理与安全工程学院,北京 100083;中国矿业大学(北京)应急管理与安全工程学院,北京 100083;中国矿业大学(北京)应急管理与安全工程学院,北京 100083;中国矿业大学(北京)应急管理与安全工程学院,北京 100083;中国矿业大学(北京)应急管理与安全工程学院,北京 100083
基金项目:国家自然科学基金51274207国家自然科学基金青年基金50904071
摘    要:为探究浅埋综采面采空区遗煤氧化过程中的CO产生规律,本文以高家梁矿浅埋煤层为研究对象,与阳泉矿深埋煤层相对比,利用油浴升温氧化系统对高家梁矿不同煤层的综采工作面煤样和阳泉矿煤样进行了升温氧化实验.研究表明:高家梁矿浅埋深各煤样在低温40℃时消耗O2产生CO体积分数达到1×10-4;各煤样在氧化升温过程中的耗氧速率、CO...

关 键 词:采空区  浅埋  遗煤氧化  CO产生规律  油浴升温氧化  临界温度
收稿时间:2020-06-27

Experimental study on CO generation law of coal left in goaf in shallow-buried comprehensive and mechanized coal mining face
Affiliation:School of Emergency Management and Safety Engineering, China University of Mining & Technology-Beijing, Beijing 100083, China
Abstract:In order to explore the law of CO generation in the oxidation process of coal leftover in shallow-buried comprehensive and mechanized mining areas, This article takes the shallow coal seam Gaojialiang Mine as the research object, and compares it with the deep coal seam Yangquan mine. Using the oil bath temperature-raising oxidation system, a temperature-increasing oxidation test was carried out on the coal samples of the fully mechanized coal mining face in different coal seams of Gaojialiang Mine and Yangquan Mine. Research shows: Each coal sample in the shallow-buried Gaojialiang Mine consumes O2 at a low temperature of 40 ℃ to produce CO volume fraction of 1×10-4; The oxygen consumption rate, CO production rate and heat release intensity of each coal sample during the oxidation and heating process gradually increase with the increase of temperature; The coal sample of the shallow-buried Gaojialiang Mine produced two critical temperatures of 40 ℃ and 130 ℃, corresponding to the starting point of accelerated oxidation reaction and the starting point of violent oxidation reaction, respectively. However, the Yangquan coal sample in the deep-buried coal seam has only one insignificant critical temperature, and relatively lagging behind, reaching 100 ℃~120 ℃. At the same coal temperature, the CO production and production rate of each coal seam in the shallow-buried Gaojialiang Mine, and the consumption and consumption rate of O2 in each coal seam are significantly greater than those of the deep-buried coal seam in Yangquan Mine. The coal seams of the shallow-buried Gaojialiang Mine enter the accelerated oxidation stage earlier than Yangquan coal seams, and the required temperature is lower. The shallower the coal seam is buried, the faster the coal's oxygen consumption rate and CO production rate during heating oxidation., The increase in temperature promotes the oxidation exotherm of coal samples at shallow depths more strongly.
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