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Optimization and lumped kinetic model study of coal-based aerospace kerosene hydrogenation process

机译:煤基航空煤油氢化工艺优化与集体动力学模型研究

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The effects of various factors on the hydrodegumming (HDG) of oil during the deep hydrogenation of coal-based aerospace kerosenee (CBAK) were studied by single factor experiment and response surface methodology (RSM) analysis on a fixed-bed hydrogenation unit with the existent gum content as the observation value. The results show that in order to achieve better HDG effect of CBAK, it must be carried out at high reaction temperature (T), high reaction pressure (P) and low liquid hourly space velocity (LHSV). The influence of various factors on the gum content of hydrogenated oil was analyzed by using the Design Expert software. The influence degree order was as follows:LHSV > P > T. At the same time, the process conditions of deep hydrogenation were optimized by simulation:P = 11.91 MPa,LHSV = 1.60 h(-1),V(H-2)/V(Oil) = 800,T = 619.84 K, under which the expected gum content was 0.26 mg (100 mL)(-1). On this basis, according to the speed of CBAK-HDG reactivity, the existent gum in the raw material were divided into three lumps, which are high reactivity, medium reactivity, and slow reactivity, then the three lumped kinetic model of CBAK-HDG was established. The kinetic parameters of the model were calculated by Levenberg-Marquardt method, and the model was verified by the measured data. The experimental results show that the average relative error of the model is 8.28%, the predicted value is reliable and the extrapolation is quite good. The calculation results of the model parameters correspond to the results of RSM, which is consistent with the hydrogenation reaction law. The results of this study are expected to provide some theoretical basis and reference for the further study of coal-based space kerosene hydrofining process and the optimization of operation conditions of industrial units.
机译:通过存在的单一因素实验和响应表面方法(RSM)分析,研究了煤基航空航天kerosheryee(CBAK)深层氢化期间油的含量对油的含量(HDG)的影响胶含量作为观察值。结果表明,为了实现CBAK的更好的HDG效应,必须在高反应温度(T),高反应压力(P)和低液体时空速(LHSV)下进行。通过使用设计专家软件分析了各种因素对氢化油胶含量的影响。影响程度顺序如下:LHSV> P> T.同时,通过模拟优化了深氢化的过程条件:P = 11.91MPa,LHSV = 1.60h(-1),V(H-2) / v(油)= 800,t = 619.84 k,预期的胶含量为0.26mg(100mL)( - 1)。在此基础上,根据CBAK-HDG反应性的速度,原料中的存在的胶被分成三块,这是高反应性,中等反应性和慢反应性,然后CBAK-HDG的三块集成动力学模型是已确立的。通过Levenberg-Marquardt方法计算模型的动力学参数,通过测量数据验证模型。实验结果表明,模型的平均相对误差为8.28%,预测值可靠,外推是相当不错的。模型参数的计算结果对应于RSM的结果,这与氢化反应法一致。预计本研究的结果将为进一步研究煤基空间煤油加氢化过程和工业单位操作条件的优化提供一些理论基础和参考。

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