The Effect of Drying Temperature on the Composition of Biomass

被引:0
作者
Tracy P. Houghton
Daniel M. Stevens
Peter A. Pryfogle
Christopher T. Wright
Corey W. Radtke
机构
[1] Idaho National Engineering and Environmental Laboratory,
来源
Applied Biochemistry and Biotechnology | 2009年 / 153卷
关键词
NIR; Biomass; Drying; PCA;
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学科分类号
摘要
The compositional quality of different lignocellulosic feedstocks influences their performance and potential demand at a biorefinery. Many analytical protocols for determining the composition or performance characteristics of biomass involve a drying step, where the drying temperature can vary depending on the specific protocol. To get reliable data, it is important to determine the correct drying temperature to vaporize the water without negatively impacting the compositional quality of the biomass. A comparison of drying temperatures between 45 °C and 100 °C was performed using wheat straw and corn stover. Near-infrared (NIR) spectra were taken of the dried samples and compared using principal component analysis (PCA). Carbohydrates were analyzed using quantitative saccharification to determine sugar degradation. Analysis of variance was used to determine if there was a significant difference between drying at different temperatures. PCA showed an obvious separation in samples dried at different temperatures due to sample water content. However, quantitative saccharification data shows, within a 95% confidence interval, that there is no significant difference in sugar content for drying temperatures up to 100 °C for wheat straw and corn stover.
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页码:4 / 10
页数:6
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