Development of the Method for Predicting and Calculating the Operation of Sorption Systems for Cleaning the Generator Gas based on Dolomite Use. Part II

IF 0.3 Q4 ENERGY & FUELS
M. Malko, S. Vasilevich, A. Mitrofanov, V. Mizonov
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Abstract

At present, instead of a direct combustion of solid fuel, its thermochemical conversion is exten-sively used to produce a generator gas. The use of this technology is connected with the need for gas purification. One of the promising and widely spread sorbents for the purification of the generator gas is dolomite, whose particles compose the active component of the bed filters. Forecasting the technological characteristics of the functioning of the bed filters of a various de-sign is an extremely urgent task. The objective of the study is to develop a method for forecast-ing and calculating the operation of sorption systems for purification of the generator gas based on dolomite. It is achieved by constructing and verifying a mathematical model of the function-ing of the bed sorption filter with a radial-axial flow pattern of the generator gas through the do-lomite filling. The Markov chains theory of a mathematical apparatus is used to design the one-dimensional mathematical model of the process with discrete space and time. The main recurrent balance ratio is formed at each calculation step taking into account the current characteristics of the process, which makes the model nonlinear. The significance of the research is that an approach to the problem of increasing the reliability of the description and reliability of forecasting technological processes in a bed filter was proposed based on the construction of mathematical models of these processes, in which the filter is considered as a system with distributed characteristics, and the calculation was based on local exchange potentials between particles and gas.
基于白云石利用的煤气净化吸附系统运行预测与计算方法的发展。第二部分
目前,它的热化学转化被广泛用于生产发生器气体,而不是固体燃料的直接燃烧。这种技术的使用与气体净化的需要有关。白云石是净化发生器气体的一种有前途且广泛应用的吸收剂,其颗粒构成了床层过滤器的活性成分。预测各种设计的床式过滤器的技术特性是一项极其紧迫的任务。本研究的目的是开发一种预测和计算基于白云石的发生器气体净化吸附系统运行的方法。它是通过构建和验证床吸附过滤器的数学模型来实现的,该数学模型具有发生器气体通过多孔填料的径向-轴向流动模式。利用数学仪器的马尔可夫链理论设计了离散时空过程的一维数学模型。考虑到过程的当前特性,在每个计算步骤形成主要的经常性余额比率,这使得模型具有非线性。本研究的意义在于,在建立床层过滤工艺过程数学模型的基础上,提出了一种提高床层过滤技术过程描述可靠性和预测可靠性的方法,并且该计算基于颗粒和气体之间的局部交换电势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.70
自引率
33.30%
发文量
38
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