首页> 外文期刊>Wood and Fiber Science >INVESTIGATING SYNERGISTIC INTERACTION OF BAMBOO AND TORREFIED BAMBOO WITH COAL DURING COCOMBUSTION
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INVESTIGATING SYNERGISTIC INTERACTION OF BAMBOO AND TORREFIED BAMBOO WITH COAL DURING COCOMBUSTION

机译:Cocbambustion煤炭与竹子与竹子竹子的协同相互作用

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摘要

To investigate if there is synergistic interaction between bamboo with coal, or between torrefied bamboo with coal during cocombustion, bamboo and torrefied bamboo separately were respectively uniformly mixed with coal and the weight percentage of bamboo or torrefied bamboo in the mixture were 10%, 20%, 30%, and 40%. The combustion behaviors of blends were characterized using thermogravimentric analyzer at heating rates of 10(omicron)C/min, 20(omicron)C/min, 30(omicron)C/min, and 40(omicron)C/min. Results showed that the combustion process of bamboo and coal combustion was separated during cocombustion, and the higher temperature zone corresponding to coal combustion had a higher activation energy. Cocombustion of torrefied bamboo and coal had a combustion zone. Combustion characteristics gradually increased with increase in heating rates and decrease in mixing ratios. Theoretical combustion characteristics obviously shifted to higher temperatures, indicating synergistic interactions between bamboo/torrefied bamboo and coal. Cocombustion of torrefied bamboo and coal was more feasible with a stabler combustion process. The results might be helpful to promote bamboo resources as a blend fuel for co-firing application with coal.
机译:调查如果竹子与煤炭之间的协同相互作用,或者在团块中与煤中的竹子之间,竹子和烘焙竹子分别均匀地与煤混合,混合物中竹子或鸡竹的重量百分比为10%,20% 30%和40%。使用热再生分析仪以10(OMICRON)C / MIN,20(OMICRON)C / MIN,30(OMICRON)C / MIN和40(OMICRON)C / MIN的热速率分析仪以热度分析仪为特征。结果表明,竹子和煤燃烧的燃烧过程在团体期间分离,对应于煤燃烧的较高温度区具有更高的激活能量。烘焙竹子和煤炭的角膜具有燃烧区。随着加热速率的增加和混合比率降低,燃烧特性逐渐增加。理论燃烧特性明显转移到较高温度,表明竹/炎竹和煤炭之间的协同相互作用。烘焙竹子和煤的角膜更加可行,具有稳定的燃烧过程。结果可能有助于促进竹资源作为与煤炭共同施用的混合燃料。

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