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Consolidated Bioprocess for Bioethanol Production from Raw Flour of Brosimum alicastrum Seeds Using the Native Strain of Trametes hirsuta Bm-2

机译:使用Trametes Hirsuta BM-2的原生菌株从大型亚利亚斯族种子的原始粉生物粉生产的生物替代生物过程

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摘要

Consolidated bioprocessing (CBP), which integrates biological pretreatment, enzyme production, saccharification, and fermentation, is a promising operational strategy for cost-effective ethanol production from biomass. In this study, the use of a native strain of Trametes hirsuta (Bm-2) was evaluated for bioethanol production from Brosimum alicastrum in a CBP. The raw seed flour obtained from the ramon tree contained 61% of starch, indicating its potential as a raw material for bioethanol production. Quantitative assays revealed that the Bm-2 strain produced the amylase enzyme with activity of 193.85 U/mL. The Bm-2 strain showed high tolerance to ethanol stress and was capable of directly producing ethanol from raw flour at a concentration of 13 g/L, with a production yield of 123.4 mL/kg flour. This study demonstrates the potential of T. hirsuta Bm-2 for starch-based ethanol production in a consolidated bioprocess to be implemented in the biofuel industry. The residual biomass after fermentation showed an average protein content of 22.5%, suggesting that it could also be considered as a valuable biorefinery co-product for animal feeding.
机译:联合生物加工(CBP),它集成了生物预处理,酶生产,糖化和发酵,是用于从生物质成本有效的乙醇生产一个有前途的操作策略。在这项研究中,使用毛栓菌(BM-2)的天然菌株的评价从以CBP Brosimum alicastrum生物乙醇生产。从拉曼树获得的原始种子粉所含的淀粉61%,表明其潜在的作为原料用于生产生物乙醇。定量测定表明,BM-2菌株产生具有193.85 U /毫升的活性的淀粉酶。的Bm-2菌株表现出较高的耐受性乙醇应力和是能够以13克/ L的浓度直接制备自生面粉乙醇中,用123.4毫升/千克面粉的产量。这项研究表明T的潜力在生物燃料产业要实现一个统一的生物过程毛BM-2淀粉为原料的乙醇生产。发酵后的残余生物质显示出22.5%的平均蛋白含量,这表明它也可以被认为是一种有价值的生物精炼副产物用于动物饲养。

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