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Experimental study on thermo-responsive inhibitors inhibiting coal spontaneous combustion

机译:热响应抑制剂抑制煤自燃的实验研究

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Due to its strong fluidity and easy evaporation characteristic, high water-cut physical inhibitors (HWPIs) cause the decrease in moisture content of coal, so that its inhibitory effect on coal spontaneous combustion weakens or even fails. Aiming at solving the problem, this paper proposes to inhibit coal spontaneous combustion using thermo-responsive inhibitors (TRIs). These inhibitors are sensitive to specific temperatures and can retain their effects as long as the temperatures have not been reached. Besides, when the temperatures are reached, they are able to absorb heat and undergo physical and chemical changes to release H2O and inert gases (defined as gases that are not involved into the coal oxidation reaction in this paper) such as NH3 and CO2, so as to inhibit the low temperature oxidation of coal. Based on the temperature-programmed experiment of coal spontaneous combustion, this paper analyzed the effects of types and amounts of TRIs on coal spontaneous combustion by using differential scanning calorimetry (DSC), scanning electron microscope (SEM), thermogravimetry-derivative thermogravimetric analysis-differential scanning calorimetry (TG-DTG-DSC) and nitrogen adsorption test methods. The results show that CaCl2 center dot 6H(2)O achieves the most stable inhibitory effect, as its inhibiting rate rises steadily in the heating process to reach a maximum value of 79.9% at 200 degrees C.
机译:由于其强大的流动性和易蒸发特性,高耐水性物理抑制剂(HWPI)导致煤的水分含量降低,从而其对煤炭自燃的抑制作用削弱甚至失败。旨在解决该问题,本文提出使用热响应抑制剂(TRIS)抑制煤自燃。这些抑制剂对特定温度敏感,只要尚未达到温度,就可以保持其效果。此外,当达到温度时,它们能够吸收热量并经历物理和化学变化,以释放H2O和惰性气体(定义为在本文中没有参与煤氧化反应的气体),例如NH 3和CO2,因此为了抑制煤的低温氧化。基于煤炭自燃的温度编程实验,本文通过使用差示扫描量热法(DSC),扫描电子显微镜(SEM),热重率 - 衍生物热重分析 - 差分分析了TRIS对煤自燃的影响扫描量热法(TG-DTG-DSC)和氮吸附试验方法。结果表明,CaCl2中心点6H(2)O达到最稳定的抑制作用,因为其抑制率在加热过程中稳定上升,以达到200℃的最大值为79.9%。

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