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One-step pretreatment of yellow poplar biomass using peracetic acid to enhance enzymatic digestibility

机译:使用过乙酸一步一步预处理黄杨生物量以提高酶消化率

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摘要

Pretreatment of biomass with dilute acid requires high temperatures of >160 °C to remove xylan and does not remove lignin. Here we report that the addition of peracetic acid, a strong oxidant, to mild dilute acid pretreatment reduces the temperature requirement to only 120 °C. Pretreatment of yellow poplar with peracetic acid (300 mM, 2.3 wt%) and dilute sulfuric acid (100 mM, 1.0 wt%) at 120 °C for 5 min removed 85.7% of the xylan and 90.4% of the lignin leaving a solid consisting of 75.6% glucan, 6.0% xylan and 4.7% lignin. Low enzyme loadings of 5 FPU/g glucan and 10 pNPGU/g glucan converted this solid to glucose with an 84.0% yield. This amount of glucose was 2.5 times higher than with dilute acid-pretreated solid and 13.8 times higher than with untreated yellow poplar. Thus, the addition of peracetic acid, easily generated from acetic acid and hydrogen peroxide, dramatically increases the effectiveness of dilute acid pretreatment of biomass.
机译:用稀酸预处理生物质需要> 160°C的高温才能去除木聚糖,而不能去除木质素。在这里,我们报告说,在温和的稀酸预处理中添加强氧化剂过氧乙酸可以将温度要求降低到仅120°C。在120°C下用过氧乙酸(300 mM,2.3 diwt%)和稀硫酸(100 mM,1.0 wt%)预处理黄杨5min,去除了85.7%的木聚糖和90.4%的木质素,形成固体75.6%的葡聚糖,6.0%的木聚糖和4.7%的木质素。 5 FPU / g葡聚糖和10 pNPGU / g葡聚糖的低酶含量将固体转化为葡萄糖,产率为84.0%。该葡萄糖的量是用稀酸预处理的固体的2.5倍,是未处理的黄杨的13.8倍。因此,添加容易由乙酸和过氧化氢产生的过氧乙酸极大地提高了生物质稀酸预处理的有效性。

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