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Simultaneous saccharification and viscosity reduction of cassava pulp using a multi-component starch- and cell-wall degrading enzyme for bioethanol production

机译:使用多组分淀粉和细胞壁降解酶同时生产生物乙醇的木薯浆同时糖化和降低粘度

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摘要

In this study, an efficient ethanol production process using simultaneous saccharification and viscosity reduction of raw cassava pulp with no prior high temperature pre-gelatinization/liquefaction step was developed using a crude starch- and cell wall-degrading enzyme preparation from Aspergillus aculeatus BCC17849. Proteomic analysis revealed that the enzyme comprised a complex mixture of endo- and exo-acting amylases, cellulases, xylanases, and pectina ses belonging to various glycosyl hydrolase families. Enzymatic hydrolysis efficiency was dependent on the initial solid loading in the reaction. Reduction in mixture viscosity was observed with a rapid decrease in complex viscosity from 3785 to 0.45 Pa s with the enzyme dosage of 2.19 mg/g on a dried weight basis within the first 2 h, which resulted from partial destruction of the plant cell wall fiber and degradation of the released starch granules by the enzymes as shown by scanning electron microscopy. Saccharification of cassava pulp at an initial solid of 16% (w/v) in a bench-scale bioreactor resulted in 736.4 mg glucose/g, which is equivalent to 82.92% glucose yield based on the total starch and glucan in the substrate, after 96 h at 40 °C. Simultaneous saccharification and fermentation of cassava pulp by Saccharomyces cerevisiae with the uncooked enzymatic process led to a final ethanol concentration of 6.98% w/v, equivalent to 96.7% theoretical yield based on the total starch and cellulose content. The results demonstrated potential of the enzyme for low-energy processing of cassava pulp in biofuel industry.
机译:在这项研究中,开发了一种有效的乙醇生产工艺,该工艺使用粗糖淀粉和细胞壁降解酶制剂(来自曲霉BCC17849),同时进行糖化和木薯原浆粘度降低,而无需事先进行高温预糊化/液化步骤。蛋白质组学分析表明,该酶包含内切和外切作用淀粉酶,纤维素酶,木聚糖酶和果胶酶的复杂混合物,属于各种糖基水解酶家族。酶促水解效率取决于反应中的初始固体载量。在最初的2小时内,以干重计,酶的剂量为2.19 mg / g,观察到混合物粘度降低,复数粘度从3785迅速降低到0.45 Pas,这是由于植物细胞壁纤维的部分破坏所致如通过扫描电子显微镜所观察到的,通过酶降解释放的淀粉颗粒。在台式规模的生物反应器中以木薯浆初始固体含量为16%(w / v)进行糖化可产生736.4 mg葡萄糖/ g,相当于基于底物中淀粉和葡聚糖的总糖量的82.92%葡萄糖产量,在40°C下96小时。通过未发酵的酶过程,通过酿酒酵母同时糖化和发酵木薯纸浆,最终乙醇浓度为6.98%w / v,基于总淀粉和纤维素含量,相当于理论收率的96.7%。结果证明了该酶在生物燃料工业中用于木薯纸浆低能耗加工的潜力。

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