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DISCUSSION OF THE INVESTIGATION METHOD ON THE REACTION KINETICS OF METALLURGICAL REACTION ENGINEERING

机译:冶金反应工程反应动力学研究的探讨

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Reaction kinetics of metallurgical physical chemistry which was successfully applied in metallurgy (as ferrous metallurgy, non-ferrous metallurgy) became an important theoretical foundation for subject system of traditional metallurgy. Not only the research methods were very perfect, but also the independent structures and systems of it had been formed. One of the important tasks of metallurgical reaction engineering was the simulation of metallurgical process. And then, the mechanism of reaction process and the conversion time points of different control links should be obtained accurately. Therefore, the research methods and results of reaction kinetics in metallurgical physical chemistry were not very suitable for metallurgical reaction engineering. In order to provide the definite conditions of transmission, reaction kinetics parameters and the conversion time points of different control links for solving the transmission and reaction equations in metallurgical reaction engineering, a new method for researching kinetics mechanisms in metallurgical reaction engineering was proposed,which was named stepwise attempt method. Then the comparison of results between the two methods and the further development of stepwise attempt method were discussed in this paper. As a new research method for reaction kinetics in metallurgical reaction engineering, stepwise attempt method could not only satisfy the development of metallurgical reaction engineering, but also provide necessary guarantees for establishing its independent subject system.
机译:冶金物理化学的反应动力学成功应用于冶金(作为铁冶金,有色金属冶金)成为传统冶金科目系统的重要理论基础。不仅研究方法非常完美,而且还形成了它的独立结构和系统。冶金反应工程的重要任务之一是冶金工艺的模拟。然后,应准确地获得反应过程的机制和不同控制链路的转换时间点。因此,冶金物理化学中反应动力学的研究方法和结果并不适用于冶金反应工程。为了提供明确的透射条件,反应动力学参数和不同控制链路的转换时间点,用于解决冶金反应工程中的传输和反应方程,提出了一种研究冶金反应工程中动力学机制的新方法,是命名为逐步尝试方法。然后在本文中讨论了两种方法与逐步尝试方法的进一步发展的结果的比较。作为冶金反应工程中的反应动力学的新研究方法,逐步尝试方法不仅可以满足冶金反应工程的发展,而且还提供了建立其独立主体系统的必要保证。

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