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Experimental Investigation on Coking Characteristics of China RP-3 Kerosene under High Temperature and Long-duration Conditions

机译:高温和长期条件下中国RP-3煤油焦化特性的实验研究

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Coking characteristics of China RP-3 under high temperature (above 650°C) and long-duration (20 minutes) conditions, especially the effects of temperature, pressure, and inner diameter of cooling channels on coking amount were experimentally investigated. Temperature of kerosene in experiments varied from 650°C to 730°C, pressure varied from 1.8 MPa to 3.5 MPa, and the mass flow rate was approximately 120 g/min. Results showed that temperature has a significant influence on coking amount. Even a small increment of temperature induces remarkable coke formation. However, pressure and inner diameter of the tube has a relatively little effect on it. The coking amount increases as pressure and inner diameter increase, but the increasing rate is decreasing. It is considered that inner diameter mainly affects residence time. When residence time increases to some extent, coking amount begins to grow slowly even stop increasing. This is resulted from two reasons. Firstly, the cracking conversion percentage reaches an upper limit when residence time is adequately long; secondly, coke gradually covers the inner wall of the tube, leading to isolation of kerosene from the metal surface to form coking.
机译:中国RP-3在高温(高于650°C)和长期(20分钟)条件下的焦化特性,特别是实验研究了焦化量的温度,压力和内径的影响。实验中的煤油温度从650℃变化至730℃,压力从1.8MPa变化至3.5MPa,质量流速约为120克/分钟。结果表明,温度对焦化量产生了重大影响。即使是温度的小增量也会引起显着的焦炭形成。然而,管的压力和内径对其具有相对较小的影响。焦化量随着压力和内径增加而增加,但增加的速度降低。认为内径主要影响停留时间。当停留时间在某种程度上增加时,焦化量开始缓慢增长,甚至停止增加。这是由两个原因产生的。首先,当停留时间很长时间,裂化转换百分比达到上限;其次,焦炭逐渐覆盖管的内壁,从而从金属表面分离煤油以形成焦化。

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