首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Evaluation of alkaline pretreatment temperature on a multi-product basis for the co-production of glucose and hemicellulose based films from lignocellulosic biomass
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Evaluation of alkaline pretreatment temperature on a multi-product basis for the co-production of glucose and hemicellulose based films from lignocellulosic biomass

机译:基于木质纤维素生物质联产葡萄糖和半纤维素基薄膜的多种产品评估碱性预处理温度

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Cotton stalks were subjected to alkaline pretreatment for the co-production of glucose and hemicellulose based films with a multi-product approach. Three pretreatment temperatures (25, 60 and 90°C) were evaluated for their effects both on the glucose yield and on the properties of hemicellulose based films. Compared to untreated cotton stalks, the glucose yields were enhanced 3.9, 4.1 and 4.2 times for pretreatments conducted at 25, 60 and 90°C, respectively. The pretreatment temperature of 90°C was detrimental in terms of film formation. Tensile energy to break values of the films obtained after pretreatments conducted at 25, 60 and 90°C were 1.1, 0.8, and 0.4MJ/m~3, respectively. The hemicellulosic part of the process, which considers the production of hemicellulose based films, should govern the pretreatment temperature since it was more responsive to the changes in the pretreatment temperature compared to the cellulosic part that accounts for glucose production.
机译:棉秸秆经过碱预处理,可通过多种产品方法共同生产葡萄糖和半纤维素基薄膜。评估了三种预处理温度(25、60和90°C)对葡萄糖产量和半纤维素膜性能的影响。与未处理的棉梗相比,在25、60和90°C下进行预处理的葡萄糖产量分别提高了3.9、4.1和4.2倍。就成膜而言,90℃的预处理温度是有害的。在25、60和90℃下进行预处理后得到的薄膜的拉伸能断裂值分别为1.1、0.8和0.4MJ / m〜3。考虑到基于半纤维素膜的生产的方法的半纤维素部分应控制预处理温度,因为与占葡萄糖产生的纤维素部分相比,它对预处理温度的变化更敏感。

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