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Observation of the Coal Thermoplastic Layer Using μ-focus X-ray CT and Sole-heated Oven

机译:μ聚焦X射线CT和单独加热的烤箱观察煤的热塑性层

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The pore structure of coke is one of the factors governing coke strength. As a step toward technology development to control the coke pore structure, we observed the behavior of coal thermoplastic layers in which coke pores are formed using our newly developed technique with sole-heated oven and μ -focus X-ray CT.Coal packed bed was heated in the sole-heated oven, and then cooled rapidly after the sample temperature reached 350°C at the top and 550°C at the bottom. Next, many cross-section images of the coal and coke layers were observed nondestructively and continuously by the μ -focus X-ray CT. As a result, the following knowledge was obtained.The thermoplastic layer of coal goes through the following four processes: 1) initial process of pore formation, 2) initial softening process whereby the growth of pores, expansion of coal, filling of voids between coal particles, and decrease in porosity occur, 3) intermediate softening process whereby the porosity becomes maximum, and 4) final softening process (resolidification process) whereby the pore size and porosity decrease.With a given type of coal, firstly pores are formed inside the particles over 1 mm in diameter, while the pore formation inside the particles less than 1 mm occurs at approximately 10°C temperature higher than the temperature at which pore formation inside large particles.
机译:焦炭的孔结构是控制焦炭强度的因素之一。作为控制焦炭孔结构的技术发展的一步,我们观察了采用我们最新开发的技术,采用单独加热的烤箱和 X射线X射线CT技术形成的炭孔的煤热塑性塑料层的行为。将填充床在单独加热的烤箱中加热,然后在样品温度顶部达到350°C和底部达到550°C之后迅速冷却。接下来,通过μ-焦点X射线CT无损且连续地观察到煤和焦炭层的许多横截面图像。结果,获得了以下知识。煤的热塑性层经历以下四个过程:1)孔隙形成的初始过程,2)孔隙的增长,煤的膨胀,煤之间空隙的填充的初始软化过程。 3)中间软化过程使孔隙率达到最大; 4)最终软化过程(再凝固过程)使孔径和孔隙率降低。对于给定类型的煤,首先在煤的内部形成孔隙直径大于1毫米的颗粒,而小于1毫米的颗粒内部的孔形成发生在比大颗粒内部的孔形成温度高约10℃的温度下。

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