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Investigation of the swelling pressure development during slow pyrolysis of thermoplastic coals

机译:热塑性煤缓慢热解过程中溶胀压力发展的研究

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Excessive pressure generated during heating and swelling of coals in coke ovens is one of the major safety concerns for the coke and steel producers. Large pressures against coke oven walls can seriously damage the ovens and reduce their life span. In the work presented here, a laboratory scale method is used to investigate swelling pressures during slow pyrolysis of thermoplastic coals with an aim in detecting the parameters which most influence this phenomenon. One of the coals chosen for this study had dangerous swelling properties with capabilities of developing excessive pressures. Results showed significant difference in the thermal behaviour of this coal when compared with the low swelling pressure coal in the temperature region of contraction of the semi-coke. Both, the high and low swelling pressure coals, were thermally investigated using series of gas analysis and long distance microscopic techniques. Results showed similarities in the amount of gas release between the two coals, especially for lower molecular weight volatiles; however, the prime difference was in their tar evolution rates and temperatures. For this purpose, the tars were collected for both coals and their blends and further analysed using matrix assisted laser desorption ionisation mass spectrometry (MALDI). Furthermore, a long distance microscopic analysis was performed on single particles under pyrolytic heating conditions revealing significant differences in the transient structural changes between both coals, which were caused by viscosity of the plastic phase and their consequent tar content.
机译:在焦炉中加热和溶胀煤期间产生的过大压力是焦炭和钢铁生产商的主要安全隐患之一。焦炉壁上的巨大压力会严重损坏烤箱并缩短其使用寿命。在此处介绍的工作中,实验室规模的方法用于研究热塑性煤缓慢热解过程中的溶胀压力,目的是检测对这种现象影响最大的参数。本研究中选择的一种煤具有危险的膨胀特性,具有产生过大压力的能力。结果表明,在半焦炭收缩的温度范围内,与低溶胀压力煤相比,该煤的热行为存在显着差异。使用一系列气体分析和长距离显微技术对高膨胀压煤和低膨胀压煤进行了热研究。结果表明,两种煤之间的气体释放量相似,尤其是对于较低分子量的挥发物。然而,主要区别在于它们的焦油释放速率和温度。为此,收集了煤及其混合物的焦油,并使用基质辅助激光解吸电离质谱(MALDI)进行了进一步分析。此外,在热解加热条件下对单个颗粒进行了长距离显微镜分析,发现两种煤之间的瞬时结构变化存在显着差异,这是由塑性相的粘度及其随后的焦油含量引起的。

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