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污水污泥与煤粉混合的燃烧行为和动力学:有无催化剂。

Combustion behaviors and kinetics of sewage sludge blended with pulverized coal: With and without catalysts.

机构信息

Department of Environmental Engineering, University of Science and Technology Beijing, Beijing 100083, China; Beijing Key Laboratory of Resource-oriented Treatment of Industrial Pollutants, University of Science and Technology Beijing, Beijing 100083, China.

Department of Environmental Engineering, University of Science and Technology Beijing, Beijing 100083, China; Beijing Key Laboratory of Resource-oriented Treatment of Industrial Pollutants, University of Science and Technology Beijing, Beijing 100083, China.

出版信息

Waste Manag. 2018 Apr;74:288-296. doi: 10.1016/j.wasman.2018.01.002. Epub 2018 Jan 6.

Abstract

The combustion behaviors of sewage sludge (SS), pulverized coal (PC), and their blends were studied using a thermogravimetric analyzer. The effect of the mass ratio of SS to PC on the co-combustion characteristics was analyzed. The experiments showed that the ignition performance of the blends improved significantly as the mass percentage of SS increased, but its combustion intensity decreased. The burnout temperature (T) and comprehensive combustibility index (S) of the blends were almost unchanged when the mass percentage of SS was less than 10%. However, a high mass percentage of SS (>10%) resulted in a great increase in T and a notable decrease in S. Subsequently, the effects of different catalysts (CaO, CeO, MnO, and FeO) on the combustion characteristics and activation energy of the SS/PC blend were investigated. The four catalysts promoted the release and combustion of volatile matters in the blended fuels and shifted their combustion profiles to a low temperature. In addition, their peak separating tendencies were obvious at 350-550 C, resulting in high peak widths. All the catalysts improved combustion activity of the blended fuel and accelerated fixed carbon combustion, which decreased the ignition temperature and burnout temperature of the fuels. CeO had the best catalytic effects in terms of the comprehensive combustion performance and activation energy, followed closely by FeO. However, the rare-earth compounds are expensive to be applied in the catalytic combustion process of SS/PC blend at present. Based on both catalytic effects and economy, FeO was potentially an optimal option for catalytic combustion among the tested catalysts.

摘要

采用热重分析仪研究了污水污泥(SS)、煤粉(PC)及其混合物的燃烧行为。分析了 SS 与 PC 的质量比对共燃烧特性的影响。实验表明,随着 SS 质量百分比的增加,混合物的点火性能显著提高,但燃烧强度降低。当 SS 质量百分比小于 10%时,混合物的燃尽温度(T)和综合燃烧指数(S)几乎不变。然而,高 SS 质量百分比(>10%)会导致 T 显著增加和 S 明显降低。随后,研究了不同催化剂(CaO、CeO、MnO 和 FeO)对 SS/PC 混合物燃烧特性和活化能的影响。四种催化剂促进了混合燃料中挥发分的释放和燃烧,并将其燃烧曲线转移到低温区。此外,它们的峰分离趋势在 350-550°C 时很明显,导致峰宽较高。所有催化剂都提高了混合燃料的燃烧活性,加速了固定碳的燃烧,降低了燃料的点火温度和燃尽温度。CeO 在综合燃烧性能和活化能方面表现出最好的催化效果,其次是 FeO。然而,目前在 SS/PC 混合物的催化燃烧过程中,稀土化合物的成本很高。基于催化效果和经济性,FeO 是测试催化剂中催化燃烧的一种潜在最佳选择。

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