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TG-FTIR 联用对低阶煤半焦与油泥共燃特性的实验研究。

Experimental study on co-combustion of low rank coal semicoke and oil sludge by TG-FTIR.

机构信息

Key Laboratory of Biofuels, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao 266101, China.

Key Laboratory of Biofuels, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao 266101, China.

出版信息

Waste Manag. 2020 Oct;116:91-99. doi: 10.1016/j.wasman.2020.08.007. Epub 2020 Aug 12.

Abstract

Co-combustion was proposed as an effective and complementary means for the co-treatment of low rank coal semicoke (LRCS) and oil sludge. The combustion, kinetics and gaseous pollutants emission characteristics during co-combustion of LRCS and oil sludge were investigated by thermogravimetric analyzer coupled with Fourier transform infrared spectrometer (TG-FTIR). Results showed oil sludge had more complex weight loss characteristics than LRCS. Proper addition of oil sludge could effectively improve the ignition, burnout and comprehensive combustion performance of blends and 60% was a recommended oil sludge blend ratio. High heating rates could also enhance the combustion performance of blends. The activation energy determined by Coats-Redfern method gradually decreased with the increase of oil sludge blend ratio. DAEM kinetic analysis results showed the maximum activation energy of 113.4 kJ/mol was obtained when conversion rate was 0.4 due to the poor ignition performance of LRCS. All of the CO, CO, NOx and SO emission gradually decreased with the increasing oil sludge blend ratio. LRCS had suppression effect on NOx emission during co-combustion while oil sludge was just the opposite. The low sulfur release rate of oil sludge resulted in the decreasing SO emission of blends although oil sludge had promotion effect on SO emission.

摘要

共燃被提议为一种有效且互补的方法,用于同时处理低阶煤半焦(LRCS)和油泥。通过热重分析仪与傅里叶变换红外光谱仪(TG-FTIR)联用,研究了 LRCS 和油泥共燃过程中的燃烧、动力学和气态污染物排放特性。结果表明,油泥的失重特性比 LRCS 更为复杂。适当添加油泥可以有效提高混合物的着火、燃尽和综合燃烧性能,推荐的油泥掺混比例为 60%。高加热速率也可以提高混合物的燃烧性能。由 Coats-Redfern 法确定的活化能随油泥掺混比例的增加而逐渐降低。DAEM 动力学分析结果表明,当转化率为 0.4 时,由于 LRCS 点火性能较差,获得了最大活化能 113.4 kJ/mol。随着油泥掺混比例的增加,CO、CO、NOx 和 SO 排放逐渐减少。LRCS 在共燃过程中对 NOx 排放具有抑制作用,而油泥则相反。油泥的低硫释放率导致混合物中 SO 排放减少,尽管油泥对 SO 排放有促进作用。

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