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Analysis of energy consumption for lump coal degradation in melting gasifier

机译:熔融气化炉中块煤降解的能耗分析

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摘要

The volume hypothesis, a theory about the energy scale of comminution, was adopted to analyze the degradation behavior of lump coal under different heating time.The breakage energy of chars was de-termined by a compression test, and the results show that the ultimate strength of chars decreased at the early stage during the heating process, resulting in a decrease of the char breakage energy.At the late stage during the heating process, the char breakage energy increased with the increase of heating time.The power consumption coefficients C K of different chars were determined by a drum experi-ment, and then the char degradation behavior under different power consumptions was predicted.In addition, a gasification experiment was conducted to determine the gasification activation energy (with CO2 ) of lump coal heated for different time.The results show that the gasification activation energy increased greatly at the early stage during the heating process, which showed opposite change to the breakage energy of chars.Furthermore, the internal temperature and heat changes of the bonded coal briquette were calculated by using an unsteady heat conduction equation.The large differ-ence between the surface and the center temperatures of coal and the large amount of heat absorption at the early stage during the heating process may have a negative effect on the breakage energy of chars.
机译:采用体积假说作为粉碎能级的理论,分析了块煤在不同加热时间下的降解行为,通过压缩试验确定了炭的破坏能,结果表明其极限强度在加热过程的早期,焦炭的减少量减少了,从而导致了破损能量的减少。在加热过程的后期,焦炭的破坏能量随着加热时间的增加而增加了。通过转鼓实验确定焦炭,然后预测了不同功耗下的焦炭降解行为;此外,还进行了气化实验,以确定在不同时间加热的块煤的气化活化能(含CO2)。结果表明,在加热过程的早期,气化活化能大大增加,与加热过程相反。此外,利用非稳态热传导方程计算了结合煤球的内部温度和热变化。煤的表面温度与中心温度之间的差异较大,并且吸收了大量的热量在加热过程的早期阶段,可能会对炭的破碎能产生负面影响。

著录项

  • 来源
    《钢铁研究学报(英文版)》 |2017年第8期|770-777|共8页
  • 作者单位

    School of Metallurgical Engineering,Xi′an University of Architecture and Technology,Xi′an 710055,Shaanxi,China;

    School of Metallurgical Engineering,Xi′an University of Architecture and Technology,Xi′an 710055,Shaanxi,China;

    School of Metallurgical Engineering,Xi′an University of Architecture and Technology,Xi′an 710055,Shaanxi,China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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