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Effect of co-combustion on the burnout of lignite/biomass blends: A Turkish case study

机译:共燃对褐煤/生物质混合物燃尽的影响:土耳其案例研究

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摘要

Co-combustion of Turkish Elbistan lignite and woody shells of hazelnut was performed in a TGA up to 1173 K with a heating rate of 20 K/min. SEM images of each fuel revealed the differences in their physical appearances. Hazelnut shell was blended with lignite in the range of 2-20 wt% to observe the co-combustion properties. Maximum burning rates (R_(max)), temperatures of the maximum burning rates (T_(R-max)), and the final burnout values of the parent samples and the blends were compared. The results were interpreted considering lignite properties and the major biomass ingredients such as cellulosics, hemicellulosics, and lignin. Deviations between the theoretical and experimental burnout values were evaluated at various temperatures. Burnout characteristics of the blends up to 10 wt% were concluded to have a synergistic effect so the addition of hazelnut shell up to 8 wt% provided higher burnouts than the expected theoretical ones, whereas addition of as much as 10 wt% led to a decrease in the burnout. However, the additive effects were more favorable for the blend having a biomass content of 20 wt%. Apparent activation energy, R_(max) and T_(R-max), were found to follow the additive behavior for the blend samples.
机译:土耳其Elbistan褐煤和榛子木壳的共燃烧是在高达1173 K的TGA中进行的,升温速率为20 K / min。每种燃料的SEM图像揭示了其物理外观的差异。榛子壳与2-20 wt%范围的褐煤共混以观察共燃性能。比较了最大燃烧速率(R_(max)),最大燃烧速率的温度(T_(R-max))以及母体样品和混合物的最终燃尽值。考虑到褐煤的性质以及主要的生物质成分(如纤维素,半纤维素和木质素)来解释结果。在不同温度下评估了理论和实验倦怠值之间的偏差。得出结论,最多10 wt%的掺混物的燃尽特性具有协同作用,因此添加最多8 wt%的榛子壳可提供比预期的理论值更高的燃尽,而最多添加10 wt%则导致减少在倦怠中。但是,对于具有20重量%的生物质含量的共混物,加合效果更有利。发现表观活化能R_(max)和T_(R-max)遵循掺合物样品的累加行为。

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