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Semi-empirical modeling of carbonator with the physico-chemical characteristics of sorbent activity parameterized by the partial least squares method

机译:用偏最小二乘法参数化吸附剂活性的理化特性的碳酸化器的半经验模型

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摘要

We developed an evaluation module to calculate the carbon capture efficiency of a fluidized bed carbonator via the semi-empirical modeling of the solvent activity of lime particles. Since the solvent activity is affected by regeneration cycle number, reactor temperature, and particle size, two design parameters for the particle activity model, i.e., the characteristic time (t~*) and the maximum conversion of particles (X_N), were determined as functions of the carbonator operating conditions by applying the partial least square (PLS) method to experimental data reported in the literature. The validity of the proposed approach was shown, and the effects of reactor design factors on the carbonator performance are discussed by means of appropriate simulation studies.
机译:我们开发了一个评估模块,用于通过石灰颗粒溶剂活性的半经验模型来计算流化床碳酸化器的碳捕获效率。由于溶剂活性受再生周期数,反应器温度和粒径的影响,因此确定了颗粒活性模型的两个设计参数,即特征时间(t〜*)和最大颗粒转化率(X_N)为偏最小二乘(PLS)方法应用于文献报道的实验数据,可以实现碳酸化器运行条件的功能。证明了所提方法的有效性,并通过适当的模拟研究讨论了反应器设计因素对碳酸化器性能的影响。

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