DEVELOPMENT OF THERMAL TECHNOLOGY FOR DISPERSED MATERIALS PROCESSING

K. Kostohryz, Yu.I. Hvastuhin, V. Orlyk, V. Sobchenko, O. Maksymuk
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Abstract

The article contains information on the work of the department of thermal heterogeneous processes of the Institute of Gas of the NAS of Ukraine over the past ten years, devoted to the development of scientific and technological foundations for the thermal treatment of dispersed materials. The problem of the efficient use of natural resources in connection with the reduction of fossil energy resources while increasing their demand to meet the growing needs of production is discussed. The results of mathematical modeling of the heat treatment of dispersed materials are presented — a detailed study of the co-combustion of wood particles with natural gas is carried out taking into account the main stages of the process, a methodology for the qualitative and quantitative analysis of the process of dioxin formation during high-temperature processing of chlorine-containing waste is described. The possibilities of using carbonate sorbents for trapping sulfur compounds are evaluated. A detailed mathematical description of the endothermic process of calcining limestone particles during its passage through the high-temperature zone of the heated inert particles of the fluidized bed is carried out. The technology of three-stage processing of material in fluidized-bed apparatuses and the design of a reverting furnace combined with a recuperator, which is an element of energy conservation, have been developed. Created and implemented technologies in production of heat-insulating materials from hydrosilicates, perlite, mineral wool products. Schemes, dependencies of technological parameters, technical characteristics and general view of the implemented developments are given. Ref. 27, Fig. 10, Tab. 2.
分散材料加工热技术的发展
这篇文章包含了乌克兰国家科学院天然气研究所热异构过程部门在过去十年中的工作信息,致力于发展分散材料热处理的科学和技术基础。讨论了在减少矿物能源的同时增加对矿物能源的需求以满足日益增长的生产需要的情况下有效利用自然资源的问题。本文介绍了分散材料热处理数学模型的结果,详细研究了木材颗粒与天然气的共燃烧过程,考虑了该过程的主要阶段,描述了一种定性和定量分析含氯废物高温处理过程中二恶英形成过程的方法。评价了利用碳酸盐吸附剂捕获含硫化合物的可能性。对石灰石煅烧颗粒通过流化床加热惰性颗粒的高温区时的吸热过程进行了详细的数学描述。在流化床装置中发展了物料的三级处理技术,并设计了一种节能的还原炉与回热器相结合的装置。创建并实施了从氢硅酸盐,珍珠岩,矿棉产品中生产隔热材料的技术。给出了方案、技术参数的依赖关系、技术特性和实施发展的总体看法。参考文献27,图10,表2。
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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