用于实现高温工艺过程的电热流化床技术(综述)

K. Simeiko, B. Ilienko, M. Sidorenko
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引用次数: 1

摘要

当实施一些向反应区提供热量的高温过程(异热过程)时,燃烧化石燃料来达到所需的温度水平是不可能的或在经济上是不合适的。考虑了通过使用电热流化床(ETFB)技术实现这些过程的可能性。这些过程包括,例如,通过碳氢化合物气体的热解生产氢,碳化硅和其他碳化物的生产,人造石墨的生产和天然石墨的热净化,气体和气体混合物的高温加热。这些过程可以在600-3000°С的温度范围内使用精细分散的材料或直接在气相中使用ETFB进行。在许多工艺中,ETFB技术可以作为高温气体生产的来源,用于实施该工艺过程,或用于确保工艺或热工设备的运行。还考虑了设备的主要结构特征,以确保ETPS过程的实施。Bibl。37。
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ELECTROTHERMAL FLUIDIZED BED TECHNIQUE USING FOR REALIZATION OF HIGH-TEMPERATURE TECHNOLOGICAL PROCESSES (REVIEW)
When implementing a number of high-temperature processes with heat supply to the reaction zone (allothermic processes), it is impossible or economically inexpedient the burning of fossil fuels to achieve the required temperature level. The possibilities of these processes implementation through the use of electrothermal fluidized bed (ETFB) techniques are considered. Such processes include, for example, the production of hydrogen by the pyrolysis of hydrocarbon gases, the production of silicon carbide and other carbides, the production of artificial graphite and the thermal purification of natural graphite, the high-temperature heating of gases and gas mixtures. These processes can be carried out in the temperature range of 600–3000 °С using fine-dispersed materials or directly in the gas phase using ETFB. In a number of processes ETFB technology can be applied as a source of high temperature gas production, used either for the implementation of this technological process, or for ensuring the operation of technological or heat engineering equipment. Also considered the main structural characteristics of the equipment that ensure the implementation of processes in the ETPS. Bibl. 37.
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