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Experimental studies of single particle combustion in air and different oxy-fuel atmospheres

机译:在空气和不同含氧燃料气氛中单颗粒燃烧的实验研究

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In this work, direct observation of char and coal single particle combustion in different gases mixtures has been performed. Investigation focused on the influence of atmosphere composition on combustion process and especially on the comparison between combustion in air-like versus oxy-fuel dry and oxy-fuel wet conditions. For these tests, particles from Pittsburgh coal and South African Coal were prepared manually to cubical shape (approximately 2 mm and 4 mg). To investigate fuel type influence on oxy-fuel combustion, some tests were also conducted for Polish lignite coal from Turow mine. Experiments were carried out in a laboratory setup consisted of an electrically heated horizontal tube operated at 1223 K with observation windows for high speed video recording (1000 frames per second). During the experiments, particle internal temperature was measured to obtain comprehensive temperature-time history profile. Results revealed that particles burned at higher temperatures in high water vapour content mixtures than in dry O_2/CO_2 mixture. This behaviour was attributed to lower molar specific heat of water than of CO_2 and four times higher reaction rate for char-H_2O gasification reaction than char - CO_2 reaction. Also visible dynamic of combustion process recorded with the high speed camera differs for experiments carried with water vapour addition.
机译:在这项工作中,已经对不同气体混合物中的炭和煤单颗粒燃烧进行了直接观察。研究集中在大气成分对燃烧过程的影响上,尤其是在空气状燃料燃烧与含氧燃料干燥和含氧燃料湿润条件下燃烧之间的比较。对于这些测试,将匹兹堡煤炭和南非煤炭的颗粒手动制备为立方形状(约2毫米和4毫克)。为了研究燃料类型对氧燃料燃烧的影响,还对Turow矿的波兰褐煤进行了一些测试。实验是在实验室设置中进行的,该设备包括在1223 K下运行的电加热水平管,带有观察窗,用于高速视频记录(每秒1000帧)。在实验期间,测量颗粒内部温度以获得全面的温度-时间历史曲线。结果显示,在高水蒸气含量的混合物中,颗粒在比在干燥的O_2 / CO_2混合物中更高的温度下燃烧。该行为归因于水的摩尔比热低于CO_2,并且char-H_2O气化反应的反应速率是char-CO_2反应的四倍。对于添加水蒸气进行的实验,用高速摄像机记录的燃烧过程的可见动态也有所不同。

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