Title of article
Influence of variable species composition on the saccharification of AFEX™ pretreated biomass from unmanaged fields in comparison to corn stover
Author/Authors
Garlock، نويسنده , , Rebecca J. and Bals، نويسنده , , Bryan and Jasrotia، نويسنده , , Poonam and Balan، نويسنده , , Venkatesh and Dale، نويسنده , , Bruce E.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2012
Pages
11
From page
49
To page
59
Abstract
From the perspective of the biorefinery, the inherent heterogeneity of mixed-species feedstocks increases the apparent risk associated with their use due to the difficulty in predicting processing characteristics, potential yields and digestibility. These materials often contain species from different botanical classifications, which could affect pretreatment efficiency and Saccharification yields. For this study, we evaluated the impact of ammonia fiber expansion (AFEX™1) pretreatment conditions on hydrolysis sugar yields for five early successional old-field treatment replicates, each comprised of a different mixture of annual forb and grass species. Yields from these samples were also compared to a late successional old field sample and to corn stover that had been pretreated at the same conditions. Relatively high sugar yields were obtained for four of the five early successional feedstocks when pretreated at the same conditions: 2.0 g NH3:g DM; 0.5 g H2O:g DM; 100 °C; 30 min. It was found that glucan digestibility was strongly inversely correlated to the total lignin content; however this was not true of the xylan digestibility. The mixed-species feedstocks that had a higher grass content tended to also have a higher structural sugar content and were more digestible than forb-dominated feedstocks, thereby resulting in higher saccharification yields. Also, the grass-dominated mixed-species feedstocks were as digestible as corn stover (∼80% total sugar yields). However, due to its higher structural sugar content, corn stover had higher total glucose and xylose yields (580 g/kg biomass) compared to the mixed-species feedstocks, which ranged from 290 to 470 g/kg biomass.
Keywords
Cellulosic biofuel , Botanical classification , Enzymatic hydrolysis , Mixed-species feedstock , Old field , Ammonia fiber expansion (AFEX™)
Journal title
Biomass and Bioenergy
Serial Year
2012
Journal title
Biomass and Bioenergy
Record number
1915700
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