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从腰果苹果渣中生产乙醇:微波辅助碱预处理提高酶水解效率。

Ethanol production from cashew apple bagasse: improvement of enzymatic hydrolysis by microwave-assisted alkali pretreatment.

机构信息

Departamento de Engenharia Química, Campus do Pici, Universidade Federal do Ceará, Bloco 709, 60455-760 Fortaleza, CE, Brazil.

出版信息

Appl Biochem Biotechnol. 2011 Jul;164(6):929-43. doi: 10.1007/s12010-011-9185-3. Epub 2011 Feb 8.

Abstract

In this work, the potential of microwave-assisted alkali pretreatment in order to improve the rupture of the recalcitrant structures of the cashew able bagasse (CAB), lignocellulosic by-product in Brazil with no commercial value, is obtained from cashew apple process to juice production, was studied. First, biomass composition of CAB was determined, and the percentage of glucan and lignin was 20.54 ± 0.70% and 33.80 ± 1.30%, respectively. CAB content in terms of cellulose, hemicelluloses, and lignin, 19.21 ± 0.35%, 12.05 ± 0.37%, and 38.11 ± 0.08%, respectively, was also determined. Results showed that, after enzymatic hydrolysis, alkali concentration exerted influence on glucose formation, after pretreatment with 0.2 and 1.0 mo L(-1) of NaOH (372 ± 12 and 355 ± 37 mg g(glucan)(-1) ) when 2% (w/v) of cashew apple bagasse pretreated by microwave-assisted alkali pretreatment (CAB-M) was used. On the other hand, pretreatment time (15-30 min) and microwave power (600-900 W) exerted no significant effect on hydrolysis. On enzymatic hydrolysis step, improvement on solid percentage (16% w/v) and enzyme load (30 FPU g (CAB-M) (-1) ) increased glucose concentration to 15 g L(-1). The fermentation of the hydrolyzate by Saccharomyces cerevesiae resulted in ethanol concentration and productivity of 5.6 g L(-1) and 1.41 g L(-1) h(-1), respectively.

摘要

本工作研究了微波辅助碱预处理提高巴西腰果加工副产物——无商业价值的坚果壳纤维(CAB)的木质纤维素中抗性结构破裂的潜力。CAB 的生物质组成先被确定,其中葡聚糖和木质素的含量分别为 20.54±0.70%和 33.80±1.30%。CAB 中纤维素、半纤维素和木质素的含量分别为 19.21±0.35%、12.05±0.37%和 38.11±0.08%。结果表明,在酶解过程中,碱浓度对葡萄糖的生成有影响,用 0.2 和 1.0 mol/L 的 NaOH 预处理(CAB-M)后,分别得到 372±12 和 355±37 mg g(葡聚糖)(-1)。另一方面,预处理时间(15-30 分钟)和微波功率(600-900 W)对水解没有显著影响。在酶解步骤中,提高固含量(16%w/v)和酶用量(30 FPU g(CAB-M)(-1))将葡萄糖浓度提高到 15 g/L。用酿酒酵母发酵水解液得到 5.6 g/L 的乙醇浓度和 1.41 g/L h(-1)的乙醇产率。

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