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Conversion of Paper Waste to Bioethanol Using Selected Enzyme Combination (Cellulase and Cellobiase) through Simultaneous Saccharification and Fermentation

机译:通过同时糖化和发酵将纸废料转化为生物乙醇用所选酶组合(纤维素酶和Cellobia)

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One of the relatively inexpensive alternative energy sources in terms of production and relatively environment friendly was the development of bioethanol from urban wastes that contain many lignocellulose such as paper waste. This study characterizes the composition of cellulose, hemicellulose and lignin in blank HVS paper, inked HVS and newspaper. The results showed the predominate cellulose (49-60 %) while the lignin concentration was very low due to the removal of colors (lignin) in the manufacturing process. The experiments continued with synthesis of bioethanol through Simultaneous Saccharification and Fermentation (SSF) process. A combination of enzymes (Cellulase + Cellobiase) in 1:1 weight ratio and Saccharomyces cerevisiae was used for hydrolysis and fermentation in the SSF process. Paper waste from newspapers, inked HVS, and empty HVS papers were used as raw materials. The initial pH of SSF in the column was at pH 5. Variation of enzyme concentration was carried at 0.2, 0.3 and 0.5 g. The SSF process was carried out at incubation time of 6,12, 24, 36, 48, 72, and 96 hours. The ink affected the concentration of bioethanol produced. In this study, the best bioethanol content was produced by inked HVS and Newspapers at 0.5 grams of enzyme with a concentration of 1531 and 1111 ppm, respectively.
机译:其中一个相对廉价的替代能源生产的条件和相对环保的生物乙醇是从包含许多木质纤维素,例如废纸城市垃圾的发展。本研究表征了纤维素,半纤维素和木质素的组成,在空白的HVS纸中,墨水HVS和报纸。结果表明,由于在制造过程中除去颜色(木质素),木质素浓度非常低的纤维素(49-60%)。通过同时糖化和发酵(SSF)方法,继续进行生物乙醇的合成。酶(纤维素酶+ CellobiaSe)在1:1重量比和酿酒酵母中的组合用于SSF过程中的水解和发酵。从报纸,墨水的HV和空的HVS纸上造纸用作原料。柱中SSF的初始pH在pH5中。酶浓度的变化在0.2,0.3和0.5g时携带。 SSF方法在6,12,24,36,48,72和96小时的孵育时间进行。墨水影响了产生的生物乙醇浓度。在该研究中,通过浓度为1531和1111ppm的0.5克酶的墨水的HV和报纸生产最佳的生物乙醇含量。

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