刘 翔, 陈梅倩, 余 冬, 卢太金. 草本类生物质与烟煤混烧特性及其影响因素分析[J]. 农业工程学报, 2012, 28(21): 200-207.
    引用本文: 刘 翔, 陈梅倩, 余 冬, 卢太金. 草本类生物质与烟煤混烧特性及其影响因素分析[J]. 农业工程学报, 2012, 28(21): 200-207.
    Liu Xiang, Chen Meiqian, Yu Dong, Lu Taijin. Analysis of influence factors on co-combustion characteristics of bituminous coal with herbal biomass[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2012, 28(21): 200-207.
    Citation: Liu Xiang, Chen Meiqian, Yu Dong, Lu Taijin. Analysis of influence factors on co-combustion characteristics of bituminous coal with herbal biomass[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2012, 28(21): 200-207.

    草本类生物质与烟煤混烧特性及其影响因素分析

    Analysis of influence factors on co-combustion characteristics of bituminous coal with herbal biomass

    • 摘要: 为了研究草本类生物质与烟煤的混烧特性,在空气气氛下分别对甜菜根、柳枝稷与烟煤的混烧特性进行热重试验,分析升温速率和质量配比对混烧特征参数的影响,并与纯烟煤的燃烧特征进行比较。结果表明:混合样品的着火温度远低于烟煤,但略高于纯生物质的着火温度,随着升温速率的提高,混合燃料着火温度逐渐提高。当生物质质量比例大于20%时,提高升温速率才能有效提高混烧样品的挥发分释放性能和综合特性指数,升温速率一定,生物质质量比例越大,混烧样品的挥发分释放特性指数和综合特性指数也越大,生物质质量比例为80%,升温速率为50℃/min时,混合样品有较好的燃烧性能。在10~90℃/min的升温速率范围内,柳枝稷混烧样品的燃烧特征参数均大于甜菜根混烧样品。研究结果可以为生物质与烟煤混合燃料的高效燃烧提供参考。

       

      Abstract: For investigating the co-combustion characteristics of herbal biomasses with bituminous coal, the co-combustion characteristics of beet and switchgrass, with bituminous coal were studied by thermogravimetric experiments. The influences of samples kinds, heating rates and blend ratios on the co-combustion characteristics under air atmosphere were analyzed and compared with those of bituminous coal and biomasses. The results showed that the initial release temperatures of volatile for all samples decreased with the increase of blend ratio and heating rates. The ignition temperatures of blend fuels were much lower than that of bituminous coal, but slightly higher than that of pure biomasses. The heating rates and blend ratios had little influence on ignition temperature. Volatile matter release index and comprehensive characteristic index of samples only above mass percentage of 20% for biomasses presented an upward trend with the increasing of heating rates, and these indexes improved as blend ratio increased. The better co-combustion characteristics can be obtained at mass percentage of 80% for biomass with heating rate of 50℃/min. These indexes for blend fuels of switchgrass with bituminous coal were higher than that for blend fuels of beet and bituminous coal between heating rates of 10 to 90℃/min. The research can provide a reference for efficient utilization of biomass.

       

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