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二氧化碳中生物质与煤共气化协同作用中燃料来源的影响。

Effect of fuel origin on synergy during co-gasification of biomass and coal in CO2.

机构信息

School of Energy and Power Engineering, Dalian University of Technology, No. 2 Linggong Road, Ganjingzi District, Dalian City 116024, China.

School of Energy and Power Engineering, Dalian University of Technology, No. 2 Linggong Road, Ganjingzi District, Dalian City 116024, China.

出版信息

Bioresour Technol. 2016 Jan;200:789-94. doi: 10.1016/j.biortech.2015.10.076. Epub 2015 Oct 30.

Abstract

The effect of fuel origin on synergy in coal/biomass blends during co-gasification has been assessed using a congruent-mass thermogravimetry analysis (TGA) method. Results revealed that synergy occurs when ash residuals are formed, followed by an almost complete gasification of biomass. Potassium species in biomass ash play a catalytic role in promoting gasification reactivity of coal char, which is a direct consequence of synergy during co-gasification. The SEM-EDS spectra provided conclusive evidence that the transfer of potassium from biomass to the surface of coal char occurs during co-pyrolysis/gasification. Biomass ash rich in silica eliminated synergy in coal/biomass blends but not to the extent of inhibiting the reaction rate of the blended chars to make it slower than that of separated ones. The best result in terms of synergy was concluded to be the combination of low-ash coal and K-rich biomass.

摘要

采用等质量热重分析(TGA)方法评估了燃料来源对煤/生物质共气化过程中协同作用的影响。结果表明,当形成灰渣残留物时会发生协同作用,随后生物质几乎完全气化。生物质灰中的钾物种在促进煤焦的气化反应性方面发挥了催化作用,这是共气化过程中协同作用的直接结果。SEM-EDS 谱图提供了确凿的证据,表明在共热解/气化过程中,钾从生物质转移到煤焦表面。富含二氧化硅的生物质灰消除了煤/生物质混合物中的协同作用,但并没有抑制混合焦的反应速率,使其比单独的焦慢。从协同作用的角度来看,最好的结果是低灰分煤和富钾生物质的组合。

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