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Sinterability enhancement in semicokes obtained by controlled pyrolysis of a petroleum residue

机译:通过控制石油残渣热解获得的半焦的烧结性增强

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Self-sintering semicokes were prepared by pyrolysis of an aromatic petroleum residue at 460-480 ℃ and pressures of 0.1-1.0 MPa. The evolution of gases and thermoplasticity from resultant semicokes were monitored by TGA and TMA, respectively. Sintering behaviour of the semicokes is extremely sensitive to pyrolysis conditions which determine contents of volatile matter and binder phase. Semicokes produced at 1.0 MPa have high volatile contents with excessive plasticity. Changes of temperature and soak time, used to reduce volatile matter contents induce reductions to the plasticity and sintering. A lower pyrolysis pressure has a similar effect. Although the operational window is narrow, heat-treated compacts (2500 ℃) can be made with high density (1.9 g cm~(-3)) and bending strengths > 75 MPa. Using high-temperature pyrolysis (460 ℃) with a post-treatment at 350-400 ℃ eliminates light components, without decreasing sintering properties. Compacts from these powders also exhibit high density (1.9 g cm~(-3)) with higher bending strengths > 90 MPa, comparable or superior to mesocarbon microbeads (MCMB) obtained from the same precursor.
机译:通过在460-480℃和0.1-1.0 MPa的压力下热解芳族石油残留物来制备自烧结半焦。分别通过TGA和TMA监测所得半焦中气体的逸出和热塑性。半焦的烧结行为对热解条件极为敏感,热解条件决定了挥发性物质和粘合剂相的含量。在1.0 MPa压力下生产的半焦具有较高的挥发物含量,且具有过多的可塑性。用于减少挥发物含量的温度和保温时间的变化会导致塑性和烧结性降低。较低的热解压力具有相似的作用。尽管操作窗口狭窄,但可以制成高密度(1.9 g cm〜(-3))且抗弯强度> 75 MPa的热处理压坯(2500℃)。使用高温热解(460℃)并在350-400℃下进行后处理可以消除轻组分,而不会降低烧结性能。由这些粉末制成的压粉还表现出高密度(1.9 g cm〜(-3))和更高的抗弯强度> 90 MPa,与从相同前体获得的中碳微珠(MCMB)相当或更好。

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