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Cellulase Adsorption and an Evaluation of Enzyme Recycle During Hydrolysis of Steam-Exploded Softwood Residues

机译:蒸爆软木残渣水解过程中纤维素酶的吸附和酶循环的评估

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摘要

The sugar yield and enzyme adsorption profile obtained during the hydrolysis of SO_2-catalyzed steam-exploded Douglas-fir and posttreated steam-exploded Douglas-fir substrates were determined. After hot alkali peroxide posttreatment, the rates and yield of hydrolysis attained from the posttreated Douglas-fir were significantly higher, even at lower enzyme loadings, than those obtained with the corresponding steam-exploded Douglas-fir. The enzymatic adsorption profiles observed during hydrolysis of two substrates were significantly different. Ultrafiltration was employed hydrlysis reactions with added, fresh substrate. These recycle findings suggested that the enzyme remained relatively active for three rounds of recycle. It is likely that enzyme recovery and reuse during the hydrolysis of posttreated softwood substrates could lead reductions in the need for the addition of fresh enzyme during softwood-based bioconversion processes.
机译:确定了在SO_2催化的蒸汽爆炸的道格拉斯冷杉和后处理的蒸汽爆炸的道格拉斯冷杉底物水解过程中获得的糖产量和酶吸附特性。经过热碱过氧化物后处理后,即使在较低的酶负载下,从后处理的道格拉斯冷杉获得的水解速率和水解产率也明显高于用相应的蒸汽爆炸道格拉斯冷杉获得的水解速率和产率。在两种底物的水解过程中观察到的酶吸附曲线有显着差异。采用超滤与添加的新鲜底物进行水解反应。这些回收发现表明该酶在三轮回收中仍保持相对活性。在后处理的软木底物水解过程中,酶的回收和再利用很可能导致基于软木的生物转化过程中对添加新鲜酶的需求减少。

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