Development of the Method for Forecasting and Calculating the Operation of Sorption Systems for Purifying the Generator Gas Based on Dolomite Use. Part I

IF 0.3 Q4 ENERGY & FUELS Problemele Energeticii Regionale Pub Date : 2021-08-01 DOI:10.52254/1857-0070.2021.3-51.07
M. Malko, S. Vasilevich, A. Mitrofanov, E. MizonovVadim
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Abstract

A trend towards energy diversification creates the expansion of small energy facilities that involve the production of solid fuel generator gas, rather than its direct combustion. The economic indicators of such facilities significantly depend on the efficiency of the generator gas purification. A promising sorbent for the purification of the generator gas is dolomite. When working as a sorbent, dolomite particles usually form a layer, through which the generator gas that is heating them is filtered. The objective of the study is to determine kinetic parameters of the thermal decomposition of dolomite, depending on the size of the sample. It was achieved using the thermogravimetric study of the thermal decomposition of single dolomite particles under static conditions at various temperatures. The most significant scientific result was that a dependence of the kinetic parameters of the gross reaction on the size of the initial particle is revealed, and a regression equation was proposed for its quantitative assessment. In addition, since the heat treatment process of the material was fairly long lasting, and the sizes of the particles allowed them to be referred to thermally thin bodies, it was inferred that the effect of a grain size on the reaction kinetics should be explained through the description of the evacuation process of gaseous reaction products from the material. The significance of the results of the study lies in the fact that a particle size must be considered as a factor that affects the progress of the technological process, which increases the reliability of the calculation of sorption-catalytic systems based on the use of dolomite.
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开发基于白云石使用的净化发电机气体的吸附系统运行预测和计算方法。第一部分
能源多样化的趋势导致小型能源设施的扩张,这些设施涉及固体燃料发电气体的生产,而不是直接燃烧。这种设施的经济指标在很大程度上取决于发电机气体净化的效率。白云石是一种很有前途的净化发生器气体的吸附剂。当作为吸附剂工作时,白云石颗粒通常会形成一层,加热它们的发生器气体通过该层被过滤。本研究的目的是根据样品的大小确定白云石热分解的动力学参数。它是通过热重分析法研究单一白云石颗粒在不同温度下在静态条件下的热分解而实现的。最重要的科学结果是,揭示了粗反应的动力学参数与初始颗粒大小的相关性,并提出了一个回归方程用于定量评估。此外,由于材料的热处理过程相当持久,并且颗粒的尺寸使它们可以被称为热薄体,因此可以推断,晶粒尺寸对反应动力学的影响应该通过描述气体反应产物从材料中排出的过程来解释。该研究结果的重要意义在于,必须将颗粒尺寸视为影响工艺过程进展的因素,这提高了基于白云石的吸附催化系统计算的可靠性。
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来源期刊
CiteScore
0.70
自引率
33.30%
发文量
38
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