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热解条件对燃烧行为和焦炭结构演变的影响研究

Study on the Effect of Pyrolysis Conditions on the Combustion Behavior and Char Structure Evolution.

作者信息

Zhang Xinfu, Wang Wenhuan, Guo Rui-Tang, Pan Wei-Guo, Li Xiao-Jiang

机构信息

College of Energy Source and Mechanical Engineering, Shanghai University of Electric Power, Shanghai 200090, People's Republic of China.

Shanghai Engineering Research Center of Power Generation Environment Protection, Shanghai 200090, People's Republic of China.

出版信息

ACS Omega. 2022 Jun 29;7(27):23634-23642. doi: 10.1021/acsomega.2c02231. eCollection 2022 Jul 12.

Abstract

Pyrolysis polygeneration technology has been widely applied due to its wide adaptability to coal types and mild reaction conditions. In this paper, the in situ process test combining pyrolysis and combustion of Pingshuo coal was carried out using a thermogravimetric analyzer and a fluidized-bed reactor. The influence of pyrolysis conditions on the combustion behavior and char structure was studied. The reduction of the pyrolysis temperature and the increase in pyrolysis residence time resulted in a lower burnout temperature of char, thereby improving the combustion characteristics of char. Furthermore, the maximum CO release rate reached 2.8 mg/(g·s) during the combustion process. The decrease in the pyrolysis temperature was conducive to the increase of CO release mass, suggesting a more complete burning of char. The char combustion process was mainly controlled by the chemical reaction according to the reaction kinetics study. The apparent rate constant of the combustion process increased gradually with the decrease in the pyrolysis temperature of char, and the rate of the combustion reaction increased, which contributed to the enhancement of the combustion performance of the char within the range of 850-950 °C. Meanwhile, the crystal structure inside the char changed significantly after different pyrolysis conditions. However, it had little influence on the molar content of carbon structure, which suggested that the amount of CO released was mainly caused by the different resistances of oxygen diffusion to the reaction interface.

摘要

热解多联产技术因其对煤种的广泛适应性和温和的反应条件而得到广泛应用。本文利用热重分析仪和流化床反应器对平朔煤进行了热解与燃烧相结合的原位过程试验。研究了热解条件对燃烧行为和半焦结构的影响。热解温度的降低和热解停留时间的增加导致半焦的燃尽温度降低,从而改善了半焦的燃烧特性。此外,燃烧过程中CO的最大释放速率达到2.8mg/(g·s)。热解温度的降低有利于CO释放量的增加,表明半焦燃烧更完全。根据反应动力学研究,半焦燃烧过程主要受化学反应控制。燃烧过程的表观速率常数随着半焦热解温度的降低而逐渐增大,燃烧反应速率增大,在850-950℃范围内有助于提高半焦的燃烧性能。同时,不同热解条件后半焦内部的晶体结构发生了显著变化。然而,它对碳结构的摩尔含量影响很小,这表明CO的释放量主要是由氧扩散到反应界面的不同阻力引起的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d65/9280964/736ec83318de/ao2c02231_0002.jpg

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