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Hydrolysis of sweet sorghum bagasse and eucalyptus wood chips with liquid hot water

机译:液态热水水解甜高粱甘蔗渣和桉木片

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摘要

The chemical composition, hydrolysis products, and kinetics during liquid hot water pretreatment of sweet sorghum bagasse (SSB) and eucalyptus wood chips (EWC) were investigated. Under optimal conditions, a total xylose recovery of 79.6% and 55.6% for SSB and of 74.9% and 84.4% for EWC was achieved after pretreatments in a step-change flow rate reactor (184 °C, 20. ml/min, 8. min, and 10. ml/min, 10. min) and batch stirred reactor (184 °C, 5%. w/v, 18. min), respectively. More than 90% of the xylose was recovered as oligomers from SSB, independent of the type of reactor employed. The activation energies of xylan decomposition of SSB in the step-change flow rate reactor was 6.5-fold greater than that of EWC in the batch stirred reactor due to accumulation of acidic products. These findings show that sugar recovery is dependent on the reactor configuration for specific substrates.
机译:研究了甜高粱渣(SSB)和桉木片(EWC)的液体热水预处理过程中的化学组成,水解产物和动力学。在最佳条件下,在逐步改变流速的反应器(184°C,20 ml / min,8)中进行预处理后,SSB的总木糖回收率为79.6%和55.6%,EWC的为74.9%和84.4%。搅拌器和分批搅拌的反应器(184℃,5%w / v,18分钟)分别为10分钟和10ml / min,10分钟)。不依赖于所用反应器的类型,从SSB中以多聚物的形式回收了超过90%的木糖。由于酸性产物的积累,在逐步变化流速反应器中SSB的木聚糖分解的活化能比在间歇搅拌反应器中的EWC的活化能高6.5倍。这些发现表明糖的回收取决于特定底物的反应器配置。

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