卷积运算可以用于反应器内停留时间分布的解读。具体来说,卷积运算可以将输入信号(即反应物浓度随时间变化的信号)与反应器内停留时间分布进行卷积,得到输出信号(即反应产物浓度随时间变化的信号)。通过分析输出信号的形态和特征,可以了解反应器内的反应动力学和反应机理等信息。

以下是一些相关文献:

  1. L. A. King, 'The use of convolution in the interpretation of experimental data', Journal of Chemical Education, vol. 40, no. 3, pp. 133-138, 1963.

  2. J. R. Backhurst and J. H. Harker, 'The use of convolution in the interpretation of reactor performance', Chemical Engineering Science, vol. 18, no. 11, pp. 825-834, 1963.

  3. R. Aris, 'The use of convolution in the solution of differential equations arising in reactor theory', Chemical Engineering Science, vol. 14, no. 3-4, pp. 209-217, 1961.

  4. J. G. Wijngaarden and J. H. Harker, 'The use of convolution in the interpretation of experimental data from flow systems', Chemical Engineering Science, vol. 20, no. 3, pp. 241-253, 1965.

  5. Y. Kang and D. G. Blackmond, 'Convolution analysis of kinetic data for complex reaction networks', Chemical Engineering Science, vol. 60, no. 10, pp. 2837-2844, 2005.

卷积运算在反应器停留时间分布分析中的应用及文献推荐

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