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The effect of agitation speed, enzyme loading and substrate concentration on enzymatic hydrolysis of cellulose from brewer's spent grain

机译:搅拌速度,酶含量和底物浓度对啤酒糟中纤维素酶解的影响

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摘要

Brewer's spent grain components (cellulose, hemicellulose and lignin) were fractionated in a two-step chemical pretreatment process using dilute sulfuric acid and sodium hydroxide solutions. The cellulose pulp produced was hydrolyzed with a cellulolytic complex, Celluclast 1.5 L, at 45 degrees C to convert the cellulose into glucose. Several conditions were examined: agitation speed (100, 150 and 200 rpm), enzyme loading (5, 25 and 45 FPU/g substrate), and substrate concentration (2, 5 and 8% w/v), according to a 2(3) full factorial design aiming to maximize the glucose yield. The obtained results were interpreted by analysis of variance and response surface methodology. The optimal conditions for enzymatic hydrolysis of brewer's spent grain were identified as 100 rpm, 45 FPU/g and 2% w/v substrate. Under these conditions, a glucose yield of 93.1% and a cellulose conversion (into glucose and cellobiose) of 99.4% was achieved. The easiness of glucose release from BSG makes this substrate a raw material with great potential to be used in bioconversion processes.
机译:啤酒厂的废谷物成分(纤维素,半纤维素和木质素)使用稀硫酸和氢氧化钠溶液分两步进行化学预处理。将产生的纤维素纸浆在45℃下用纤维素分解复合物Celluclast 1.5L水解以将纤维素转化为葡萄糖。检查了以下几个条件:搅拌速度(100、150和200 rpm),酶负载(5、25和45 FPU / g底物)和底物浓度(2、5和8%w / v),根据2 3)全析因设计,旨在最大程度地提高葡萄糖产量。通过方差分析和响应面方法对获得的结果进行解释。啤酒糟的酶促水解的最佳条件确定为100 rpm,45 FPU / g和2%w / v底物。在这些条件下,葡萄糖产率为93.1%,纤维素转化率(转化为葡萄糖和纤维二糖)为99.4%。从BSG释放葡萄糖的简便性使该底物成为具有巨大潜力的原料,可用于生物转化过程。

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