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Crude Oil Fouling in a Pilot-Scale Parallel Tube Apparatus

机译:中试平行管装置中的原油结垢

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Maya crude oil fouling reveals a seemingly straightforward dependency of initial fouling rate on surface temperature, but a maximum is found in the initial fouling rate-velocity relationship, which mirrors that found in a model chemical system of styrene polymerization. The linear dependency of the logarithm of the pre-exponential factor on apparent activation energy for the crude oil is also found in the styrene system. The apparent activation energy for the crude oil ranged from 26.4 kJ/mol at 1.0 m/s to 245 kJ/mol at 4.0 m/s. Such strong dependencies of apparent activation energy on velocity, even at high velocity, are consistent with Epstein's mass transfer reaction attachment model. Surface temperatures at which the fouling rate becomes velocity independent are 274℃ and 77℃ for Maya crude oil and styrene, respectively. For surface temperatures in excess of this isokinetic temperature, an increase in velocity would lead to an increase in the rate of fouling.
机译:玛雅原油结垢揭示了表面结垢率与表面温度的直接关系,但在初始结垢率-速度关系中发现了最大值,这与苯乙烯聚合的化学模型系统中的情况类似。在苯乙烯体系中还发现了指数前因数对数对原油表观活化能的线性依赖性。原油的表观活化能为1.0 m / s时的26.4 kJ / mol至4.0 m / s时的245 kJ / mol。表观活化能对速度的如此强的依赖性,即使在高速下,也与爱泼斯坦的传质反应附着模型相一致。对于玛雅原油和苯乙烯,结垢速率与速度无关的表面温度分别为274℃和77℃。对于超过该等速温度的表面温度,速度的增加将导致结垢速率的增加。

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