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Chemical and Biological Pretreatments on Sugarcane Bagasse to Enhance its Enzymatic Hydrolysis.

机译:在甘蔗渣拿到的化学和生物学预处理以增强其酶水解。

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Alkaline and biological lignocellulose pre-treatments are commonly used to enhance enzymatic hydrolysis and improve ethanol production. In this study, ~(13)C CPMASNMR spectroscopy was used to describe changes in sugarcane bagasse (SCB) pretreated with NaOH, Ca(OH)2 and with Pycnoporus sanguineus. Changes in the contents of alkyl C, Carboxyl C, Aromatic C (tertiary, quaternary and p-hydroxyphenyl C), O-alkyl C, amino acids, ergosterol and chitin, as well as in the crystallinity index of cellulose were observed. Through a multivariate analysis, relations between changes in the chemical composition of SCB and enzymatic hydrolysis were established. P. sanguineus promotes better lignin decay, glucose release and hydrolysis yields than chemical pre-treatments, and increases the amount of amino acids and ergosterol in SCB, while NaOH increases the cellulose crystallinity index. The hydrolysates were fermented with Saccharomyces cerevisiae for 96 h, and analysed through HPLC. The initial composition of the hydrolysates [mg.ml~1] and biomass production (cells.ml~1) were then related to the ethanol production and fermentation yields. We found that ethanol production and fermentation yields were negatively correlated with cell growth in Saccharomyces, but positively correlated with glucose consumption in the P. sanguineus pretreatment. We conclude that the biological pre-treatment using P. sanguineus in the conditions hereby described, has a potential to increase ethanol productivity.
机译:碱性和生物木质纤维素预处理通常用于增强酶水解并改善乙醇的产生。在这项研究中,使用〜(13)C cpmasnmr光谱法描述了用NaOH,CA(OH)2和Pycnoporus sanguineus预处理的甘蔗渣(SCB)的变化。观察到观察到观察到烷基C,羧基C,芳香族C(第三纪,Quaternary和P-羟基苯基C),O-烷基C,氨基酸,麦芽素和几丁质以及纤维素的结晶度指数的变化。通过多元分析,建立了SCB化学成分与酶水解的变化之间的关系。 P. sanguineus比化学预处理可促进更好的木质素衰减,葡萄糖释放和水解产量,并增加SCB中氨基酸和麦角固醇的量,而NaOH则增加了纤维素结晶度指数。将水解剂用酿酒酵母发酵96小时,并通过HPLC进行分析。然后,水解物[mg.ml〜1]和生物量产生(Cells.ml〜1)的初始组成与乙醇的产生和发酵屈服有关。我们发现,乙醇的产生和发酵产率与糖疗中的细胞生长呈负相关,但与海毒菌预处理预处理中的葡萄糖消耗呈正相关。我们得出的结论是,在特此描述的条件下,使用Sanguineus的生物学预处理具有提高乙醇生产力的潜力。

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