城市生活垃圾处理炉设计的发展及其运行方式的研究

O. Kolibaba, D. Dolinin, R. Gabitov, M.M. Chizhikova
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引用次数: 0

摘要

背景。热解是一种很有前途的环保热处理城市生活垃圾的方法。通过改变过程的操作参数,热解可以获得不同比例的固体、液体和气体产品的组合。城市生活垃圾的热处理是在专门的炉、热反应釜中进行的。目前,Purox、Torrax Noell等热解技术的工艺是在各种设计的热反应釜中进行的,这些设计各有优缺点。加热炉的设计是为了满足生产率高、运行效率高、保证工艺规定的工艺条件等几个要求。设计的炉是为了满足现代科学技术在传热传质理论、流体力学和技术美学方面的要求。材料和方法。采用物理建模和数学建模的方法,利用ANSYS软件包进行有限元分析。结果。根据物理和数值研究的结果,得到了在5、10和15 оС/min的速度下,热解炉的效率值。根据实验结果,选择了加热速率为10 оС/min的合理运行模式。结论。与传统焚烧相比,使用热解技术进行废物处理将减少17%的二氧化碳排放。提出了一种用于处理预制备废物的热解炉设计,有助于提高该工艺的能源效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of furnace design to dispose municipal solid waste and study of its operation modes
Background. Pyrolysis is a promising environmentally friendly thermal method to process municipal solid waste (MSW). Pyrolysis makes it possible to obtain a combination of solid, liquid, and gaseous products in various proportions by changing the operating parameters of the process. Thermal processing of MSW is carried out in special furnaces, thermal reactors. At present, the processes of the pyrolysis technology Purox, Torrax Noell and others are carried out in thermal reactors of various designs that have their own advantages and disadvantages. The design of a furnace is to meet several requirements, such as high productivity, efficiency of operation, ensuring the specified technological conditions of the process, etc. The designed furnace is to meet modern requirements of science and technology in the field of heat and mass transfer theory, hydrodynamics, and technical aesthetics. Materials and methods. The studies have been carried out using the methods of physical and mathematical modeling, the ANSYS software package of finite element analysis. Results. Based on the results of physical and numerical studies, the values of the efficiency of the pyrolysis furnace have been obtained when MSW is heated at speeds of 5, 10 and 15 оС/min. Based on the results a rational operating mode of the installation has been chosen with a heating rate of 10 оС/min. Conclusions. The use of pyrolysis technology for waste disposal will reduce CO2 emissions by 17 % compared to traditional incineration. The proposed design of a pyrolysis furnace for the disposal of pre-prepared waste contributes to energy efficiency improvement of the process.
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