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Heat Treatment of Anthracene Oil under Pressure

机译:加压下蒽油的热处理

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The heat treatment of the anthracene fraction of coal tar under pressure is investigated. In the production of synthetic pitch, the temperature is varied in the range 400-480°C. The duration of the process is 5 h, and the pressure is 3-5 MPa. After treatment at temperatures below 480°C, the pitch produced lacks the quinoline-insoluble fraction. Chemical analysis shows that increasing the treatment temperature results in consumption of cata-condensed aromatic hydrocarbons, with simultaneous accumulation of peri-condensed aromatic hydrocarbons. NMR and IR spectroscopy indicates simultaneous increase in the aromatic index and the degree of condensation of samples with increase in the treatment temperature, as the result of deal -kylation and condensation. Optical analysis shows clearly expressed mesogenic properties of the synthetic pitch. Pitch produced by low-temperature synthesis forms needle coke, with a greater anisotropy and greater real density than coke obtained from pitch produced by high-temperature synthesis. With increase in pressure in the course of coking, the anisotropy and the real density decline for low-temperature pitch, but increase for high-temperature pitch.
机译:研究了煤焦油蒽馏分在压力下的热处理。在合成沥青的生产中,温度在400-480℃的范围内变化。该过程的持续时间为5 h,压力为3-5 MPa。在低于480℃的温度下处理后,产生的沥青缺乏喹啉不溶级分。化学分析表明,提高处理温度会导致催化缩合的芳烃的消耗,同时会同时聚集周边缩合的芳烃。 NMR和IR光谱表明,由于脱烷基化和缩合,芳族指数和样品的缩合度随处理温度的升高而同时增加。光学分析显示了合成沥青的介晶性质。由低温合成产生的沥青形成的针状焦炭,与从高温合成产生的沥青获得的焦炭相比,具有更大的各向异性和更高的实际密度。在焦化过程中,随着压力的增加,各向异性和各向异性密度对于低温沥青而言降低,但对于高温沥青而言则升高。

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