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Study on the Effect of Fractionation Pretreatment Process on the enzymatic hydrolysis of Switch Grass for Bioenergy and Biorefinery

机译:分馏预处理方法对生物能源和生物术语酶促水解的分馏预处理方法

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Lignocellulosic biomass is the world's most abundant renewable resource. Conversion of lignocellulosic biomass to bioenergy, such as the second generation bioethanol or biobutanol is viable because of its broad availability. Switch grass was developed as a pioneer energy crop in USA with great industrial proipect. It contains about 60% sugars and 18% lignin. An intergrated pretreatment process was developed to fractionate cellulose, hemicellulose and lignin from switch grass, consisting of dilute acid pretreatment (DAP) coupled with organic solvent (organosolv) pretreatment of water/ethanol (OWEP). In the coupled dilute acid -organosolv process, hemicellulose sugars were recovered in the first residual liquid while a varied amount of cellulose was retained in the residual solid and the lignin fraction was obtained by simply adjusting the pH from the second liquid. The optimal two-stage process consisted of the first stage DAP at 428K for 7min with 0.8% sulfuric acid, resulting in 79.82% glucose recovery yield and 98.74% sylose removal and the second stage OWE? at 468K for 20min in 45%(v/v) ethanol with 0.4% NaOH, resulting in 62% total glucose yield 99% xylose and 80% lignin removal. After enzymatic hydrolysis, the glucose yield was up to 92.6%, compared with 16% yield from untreated switch. grass. The intergrated process has great promising.
机译:木质纤维素生物量是世界上最丰富的可再生资源。使木质纤维素生物质转化为生物能量,例如第二代生物乙醇或生物丁醇是可行的,因为其可用性广泛。开关草被开发为美国的先驱能源作物,具有伟大的工业职业工程。它含有约60%的糖和18%木质素。开发了嵌入的预处理方法以将纤维素,半纤维素和木质素从开关草分离,由稀酸预处理(DAP)与有机溶剂(有机溶胶)进行水/乙醇(OWEP)组成。在偶偶稀酸-OralOSolv方法中,在第一种残留液体中回收半纤维素糖,同时在残留的固体中保留多种量的纤维素,通过简单地从第二液体调节pH来获得木质素级分。最佳的两阶段方法由428K的第一阶段DAP组成,7分钟,硫酸0.8%,导致79.82%的葡萄糖回收率和98.74%的Sylose去除和第二阶段欠款?在468K 20分钟在45%(V / V)乙醇用0.4%的NaOH,得到62%的总葡萄糖产量99%木糖,80%的木质素的去除。在酶水解后,葡萄糖产率高达92.6%,而来自未处理开关的16%产率为16%。草。整合过程具有很大的承诺。

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