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Utilization of pineapple stem juice to enhance enzyme-hydrolytic efficiency for sugarcane bagasse after an optimized pre-treatment with alkaline peroxide

机译:经过优化的碱性过氧化物预处理后,利用菠萝干汁提高甘蔗渣的酶水解效率

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摘要

The enzymatic hydrolysis of sugarcane bagasse was investigated by treating a peroxide-alkaline bagasse with a pineapple stem juice, xylanase and cellulase. Pre-treatment procedures of sugarcane bagasse with alkaline hydrogen peroxide were evaluated and compared. Analyses were performed using 24 factorial designs, with pre-treatment time, temperature, magnesium sulfate and hydrogen peroxide concentration as factors. The responses evaluated were the yield of cellobiose and glucose released from pretreated bagasse after enzymatic hydrolysis. The results show that the highest enzymatic conversion was obtained for bagasse using 2% hydrogen peroxide at 60 °C for 16 h in the presence of 0.5% magnesium sulfate. Bagasse (5%) was treated with pineapple stem extract, which contains mixtures of protease and esterase, in combination with xylanase and cellulase. It was observed that the amount of glucose and cellobiose released from bagasse increased with the mixture of enzymes. It is believed that the enzymes present in pineapple extracts are capable of hydrolyze specific linkages that would facilitate the action of digesting plant cell walls enzymes. This increases the amount of glucose and other hexoses that are released during the enzymatic treatment and also reduces the amount of cellulase necessary in a typical hydrolysis.;Department of Biotechnology, School of Engineering of Lorena, University of Sao Paulo - USP Estrada Municipal do Campinho, so - CP 1/6, 12602-810 Lorena, SP, Brazil; ;The enzymatic hydrolysis of sugarcane bagasse was investigated by treating a peroxide-alkaline bagasse with a pineapple stem juice, xylanase and cellulase. Pre-treatment procedures of sugarcane bagasse with alkaline hydrogen peroxide were evaluated and compared. Analyses were performed using 24 factorial designs, with pre-treatment time, temperature, magnesium sulfate and hydrogen peroxide concentration as factors. The responses evaluated were the yield of cellobiose and glucose released from pretreated bagasse after enzymatic hydrolysis. The results show that the highest enzymatic conversion was obtained for bagasse using 2% hydrogen peroxide at 60 °C for 16 h in the presence of 0.5% magnesium sulfate. Bagasse (5%) was treated with pineapple stem extract, which contains mixtures of protease and esterase, in combination with xylanase and cellulase. It was observed that the amount of glucose and cellobiose released from bagasse increased with the mixture of enzymes. It is believed that the enzymes present in pineapple extracts are capable of hydrolyze specific linkages that would facilitate the action of digesting plant cell walls enzymes. This increases the amount of glucose and other hexoses that are released during the enzymatic treatment and also reduces the amount of cellulase necessary in a typical hydrolysis.;Department of Biotechnology, School of Engineering of Lorena, University of Sao Paulo - USP Estrada Municipal do Campinho, so - CP 1/6, 12602-810 Lorena, SP, Brazil; ;The enzymatic hydrolysis of sugarcane bagasse was investigated by treating a peroxide-alkaline bagasse with a pineapple stem juice, xylanase and cellulase. Pre-treatment procedures of sugarcane bagasse with alkaline hydrogen peroxide were evaluated and compared. Analyses were performed using 24 factorial designs, with pre-treatment time, temperature, magnesium sulfate and hydrogen peroxide concentration as factors. The responses evaluated were the yield of cellobiose and glucose released from pretreated bagasse after enzymatic hydrolysis. The results show that the highest enzymatic conversion was obtained for bagasse using 2% hydrogen peroxide at 60 °C for 16 h in the presence of 0.5% magnesium sulfate. Bagasse (5%) was treated with pineapple stem extract, which contains mixtures of protease and esterase, in combination with xylanase and cellulase. It was observed that the amount of glucose and cellobiose released from bagasse increased with the mixture of enzymes. It is believed that the enzymes present in pineapple extracts are capable of hydrolyze specific linkages that would facilitate the action of digesting plant cell walls enzymes. This increases the amount of glucose and other hexoses that are released during the enzymatic treatment and also reduces the amount of cellulase necessary in a typical hydrolysis.
机译:通过用菠萝干汁,木聚糖酶和纤维素酶处理过氧化物碱性蔗渣来研究甘蔗渣的酶促水解。评价和比较了用碱性过氧化氢对甘蔗渣进行预处理的程序。使用24阶乘设计进行分析,并以预处理时间,温度,硫酸镁和过氧化氢浓度为因素。评估的响应是酶水解后从预处理的蔗渣中释放的纤维二糖和葡萄糖的产量。结果表明,在0.5%硫酸镁存在下,在60°C下使用2%过氧化氢处理16小时,可以使蔗渣获得最高的酶转化率。用菠萝干提取物处理甘蔗渣(5%),菠萝干提取物包含蛋白酶和酯酶的混合物以及木聚糖酶和纤维素酶。观察到,从蔗渣中释放的葡萄糖和纤维二糖的量随着酶的混合物而增加。据信存在于菠萝提取物中的酶能够水解特定的键,这将有助于消化植物细胞壁酶的作用。这增加了酶处理过程中释放的葡萄糖和其他己糖的量,并且还减少了典型水解中必需的纤维素酶的量。;圣保罗大学洛雷纳工程学院生物技术系-USP Estrada Municipal do Campinho ,s / no-CP 1/6,12602-810 Lorena,SP,Brazil; ;通过用菠萝干汁,木聚糖酶和纤维素酶处理过氧化物碱性蔗渣来研究甘蔗渣的酶促水解。评价和比较了用碱性过氧化氢对甘蔗渣进行预处理的程序。使用24阶乘设计进行分析,并以预处理时间,温度,硫酸镁和过氧化氢浓度为因素。评估的响应是酶水解后从预处理的蔗渣中释放的纤维二糖和葡萄糖的产量。结果表明,在0.5%硫酸镁存在下,在60°C下使用2%过氧化氢处理16小时,可以使蔗渣获得最高的酶转化率。用菠萝干提取物处理甘蔗渣(5%),菠萝干提取物包含蛋白酶和酯酶的混合物以及木聚糖酶和纤维素酶。观察到,从蔗渣中释放的葡萄糖和纤维二糖的量随着酶的混合物而增加。据信存在于菠萝提取物中的酶能够水解特定的键,这将有助于消化植物细胞壁酶的作用。这增加了酶处理过程中释放的葡萄糖和其他己糖的量,并且还减少了典型水解中必需的纤维素酶的量。;圣保罗大学洛雷纳工程学院生物技术系-USP Estrada Municipal do Campinho ,s / no-CP 1/6,12602-810 Lorena,SP,Brazil; ;通过用菠萝干汁,木聚糖酶和纤维素酶处理过氧化物碱性蔗渣来研究甘蔗渣的酶促水解。评价和比较了用碱性过氧化氢对甘蔗渣进行预处理的程序。使用24阶乘设计进行分析,并以预处理时间,温度,硫酸镁和过氧化氢浓度为因素。评估的响应是酶水解后从预处理的蔗渣中释放的纤维二糖和葡萄糖的产量。结果表明,在0.5%硫酸镁存在下,在60°C下使用2%过氧化氢处理16小时,可以使蔗渣获得最高的酶转化率。用菠萝干提取物处理甘蔗渣(5%),菠萝干提取物包含蛋白酶和酯酶的混合物以及木聚糖酶和纤维素酶。观察到,从蔗渣中释放的葡萄糖和纤维二糖的量随着酶的混合物而增加。据信存在于菠萝提取物中的酶能够水解特定的键,这将有助于消化植物细胞壁酶的作用。这增加了在酶处理期间释放的葡萄糖和其他己糖的量,并且还减少了典型水解中必需的纤维素酶的量。

著录项

  • 来源
    《Applied Energy》 |2011年第1期|p.403-408|共6页
  • 作者单位

    Department of Biotechnology, School of Engineering of Lorena, University of Sao Paulo - USP Estrada Municipal do Campinho, so - CP 1/6, 12602-810 Lorena, SP, Brazil;

    rn Department of Biotechnology, School of Engineering of Lorena, University of Sao Paulo - USP Estrada Municipal do Campinho, so - CP 1/6, 12602-810 Lorena, SP, Brazil;

    Department of Biotechnology, School of Engineering of Lorena, University of Sao Paulo - USP Estrada Municipal do Campinho, so - CP 1/6, 12602-810 Lorena, SP, Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    alkaline peroxide; cellulase; esterase; sugarcane bagasse; xylanase; enzymatic hydrolysis;

    机译:碱性过氧化物;纤维素酶;酯酶;蔗糖蔗渣;木聚糖酶;酶水解;
  • 入库时间 2022-08-18 00:10:04

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