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Differential effects of mineral and organic acids on the kinetics of arabinose degradation under lignocellulose pretreatment conditions

机译:矿物和有机酸对木质纤维素预处理条件下阿拉伯糖降解动力学的影响

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摘要

Sugar degradation occurs during acid-catalyzed pretreatment of lignocellulosic biomass at elevated temperatures,resulting in degradation products that inhibit microbial fermentation in the ethanol production process.Arabinose,the second most abundant pentose in grasses like corn stover and wheat straw,degrades into furfural.This paper focuses on the first-order rate constants of arabinose(5 g/L)degradation to furfural at 150 and 170°C in the presence of sulfuric,fumaric,and maleic acid and water alone.The calculated degradation rate constants(k_d)showed a correlation with the acid dissociation constant(pK_a),meaning that the stronger the acid,the higher the arabinose degradation rate.However,de-ionized water alone showed a catalytic power exceeding that of 50 mM fumaric acid and equaling that of 50 mM maleic acid.This cannot be explained by specific acid catalysis and the shift in pK_w of water at elevated temperatures.These results suggest application of maleic and fumaric acid in the pretreatment of lignocellulosic plant biomass may be preferred over sulfuric acid.Lastly,the degradation rate constants found in this study suggest that arabinose is somewhat more stable than its stereoisomer xylose under the tested conditions.
机译:糖降解过程是在高温下对木质纤维素生物质进行酸催化预处理时产生的,其降解产物会抑制乙醇生产过程中的微生物发酵。阿拉伯糖是玉米秸秆和小麦秸秆等草中第二高含量的戊糖,会降解为糠醛。本文重点研究了仅在硫酸,富马酸,马来酸和水存在下,阿拉伯糖(5 g / L)在150和170℃下降解为糠醛的一级速率常数。计算出的降解速率常数(k_d)显示与酸解离常数(pK_a)相关,这意味着酸越强,阿拉伯糖的降解率越高。但是,仅去离子水的催化能力超过富马酸50 mM,而马来酸50 mM。这不能用特定的酸催化作用和升高的温度下水的pK_w的变化来解释,这些结果表明马来酸和富马酸在有机酸中的应用。木质纤维素植物生物量的预处理可能优于硫酸。最后,这项研究中发现的降解速率常数表明,在测试条件下,阿拉伯糖比其立体异构体木糖更稳定。

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