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Thermal-behavior study of chlorine released from composite refuse derived fuel

机译:复合垃圾衍生燃料释放的氯的热行为研究

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摘要

In order to reduce secondary pollution during the incineration of composite refuse derived fuel (CRDF), the combustion features and the emission behavior of chlorine in CRDF containing coal were analyzed. The former was analyzed using thermo-gravimetric and the latter by gas chromatography-mass spec-trometry. The release rate of inorganic chlorine during combustion reached 90 mass% at temperature between 773.15 and 873.15 K. On the other hand, approximately 84 mass% release rates was resulting from pyrolysis at 723.15 K. When temperature reached above 1073.15 K, it was noticed that higher concentration of organic chlorine in different organic compounds were produced in the processing of pyrolysis compared with those released from the combustion processing. From the thermo-gravimetric analysis using a self-designed system, three distinct phases were detected in the thermal process of CRDF. The first phase occurred at temperature between 473 and 573 K and its mass loss was about 38.50%. The second phase between temperature regions of 673-773 K with a mass loss of 20.35%. The third phase was observed at the temperature between 873 and 1073 K with 22.25% mass loss.
机译:为了减少焚烧复合垃圾衍生燃料(CRDF)期间的二次污染,分析了含CRDF的煤中氯的燃烧特性和排放行为。前者用热重分析,后者用气相色谱-质谱法分析。在773.15和873.15 K之间的温度下,燃烧过程中无机氯的释放率达到90质量%。另一方面,在723.15 K时,热解产生的无机氯释放率约为84质量%。当温度达到1073.15 K以上时,注意到与从燃烧过程中释放出的氯相比,在热解过程中会产生更高浓度的不同有机化合物中的有机氯。通过使用自行设计的系统进行的热重分析,在CRDF的热过程中检测到三个不同的相。第一阶段发生在473和573 K之间的温度下,其质量损失约为38.50%。在673-773 K的温度区域之间的第二相的质量损失为20.35%。在873和1073 K之间的温度下观察到第三相,质量损失为22.25%。

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  • 来源
    《Waste Management》 |2009年第8期|2298-2305|共8页
  • 作者单位

    School of Resource and Environment Engineering, Heilongjiang Institute of Science and Technology, Harbin 150027, China;

    School of Resource and Environment Engineering, Heilongjiang Institute of Science and Technology, Harbin 150027, China;

    School of Resource and Environment Engineering, Heilongjiang Institute of Science and Technology, Harbin 150027, China;

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