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Augmented hydrolysis of acid pretreated sugarcane bagasse by PEG 6000 addition: a case study of Cellic CTec2 with recycling and reuse

机译:加入PEG 6000增强酸预处理的甘蔗渣的水解作用:以回收和再利用为例的Cellic CTec2案例研究

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In an integrated lignocellulosic biorefinery, the cost associated with the "cellulases" and "longer duration of cellulose hydrolysis" represents the two most important bottlenecks. Thus, to overcome these barriers, the present study aimed towards augmented hydrolysis of acid pretreated sugarcane bagasse within a short span of 16 h using Cellic CTec2 by addition of PEG 6000. Addition of this surfactant not only enhanced glucose release by twofold within stipulated time, but aided in recovery of Cellic CTec2 which was further recycled and reused for second round of saccharification. During first round of hydrolysis, when Cellic CTec2 was loaded at 25 mg protein/g cellulose content, it resulted in 76.24 +/- 2.18% saccharification with a protein recovery of 58.4 +/- 1.09%. Filtration through 50KDa PES membrane retained similar to 89% protein in 4.5-fold concentrated form and leads to simultaneous fractionation of similar to 70% glucose in the permeate. Later, the saccharification potential of recycled Cellic CTec2 was assessed for the second round of saccharification using two different approaches. Unfortified enzyme effectively hydrolysed 67% cellulose, whereas 72% glucose release was observed with Cellic CTec2 fortified with 25% fresh protein top-up. Incorporating the use of the recycled enzyme in two-stage hydrolysis could effectively reduce the Cellic CTec2 loading from 25 to 16.8 mg protein/g cellulose. Furthermore, 80% ethanol conversion efficiencies were achieved when glucose-rich permeate obtained after the first and second rounds of saccharification were evaluated using Saccharomyces cerevisiae MTCC 180.
机译:在一个完整的木质纤维素生物精炼厂中,与“纤维素酶”和“纤维素水解时间更长”相关的成本是两个最重要的瓶颈。因此,为克​​服这些障碍,本研究旨在通过添加PEG 6000使用Cellic CTec2在短短16小时内增强酸预处理的甘蔗渣的水解。添加这种表面活性剂不仅可以在规定的时间内将葡萄糖释放提高两倍,但有助于回收Cellic CTec2,并将其进一步回收再利用以进行第二轮糖化。在第一轮水解过程中,当Cellic CTec2以25 mg蛋白质/ g纤维素的含量上样时,糖化度为76.24 +/- 2.18%,蛋白质回收率为58.4 +/- 1.09%。通过50KDa PES膜进行过滤时,以4.5倍浓缩的形式保留了约89%的蛋白质,并导致在渗透物中同时分离出约70%的葡萄糖。后来,使用两种不同方法对第二轮糖化过程评估了回收的Cellic CTec2的糖化潜力。未强化的酶有效地水解了67%的纤维素,而在Cellic CTec2中添加了25%的新鲜蛋白质,观察到72%的葡萄糖释放。在两步水解过程中结合使用循环酶可以有效地将Cellic CTec2的负载量从25毫克/克纤维素降低到16.8毫克。此外,使用酿酒酵母MTCC 180评估第一轮和第二轮糖化后获得的富含葡萄糖的渗透液时,乙醇转化效率达到80%。

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