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A novel process intensification strategy for second-generation ethanol production from sugarcane bagasse in fluidized bed reactor

机译:流化床反应器中甘蔗渣生产第二代乙醇的新工艺强化策略

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摘要

Due to forthcoming scarcity of fossil fuels and serious environmental concerns, concerted efforts are required to develop the intensified and robust ethanol production from renewable sources. Currently, lignocellulosic materials are among the main available renewable carbon source in the world. Within this context, we present a novel proposal of intensification of the process for second generation (2G) ethanol production from sugarcane bagasse (SCB) employing fluidized bed reactor. Successive steps of SCB i.e. alkaline pre-treatment, saccharification and fermentation to ethanol were carried out in a same column reactor without opening it during the entire process. In the alkaline pretreatment process, a 22full factorial design of experiments was designed and executed to evaluate the effect of NaOH concentration (from 0.1 to 0.5 M) and time (from 1 to 4 h) on the enzymatic digestibility of pretreated biomass. Enzymatic hydrolysis yielded glucose and xylose of around 87% and 43%, were achieved, respectively, in saccharification step, when used alkaline pre-treated biomass conducted in process by using variables in high level. Thus, Simultaneous saccharification and co-fermentation (SSCF) were performed by using the wild xylose and glucose fermenting yeastScheffersomyces shehataeUFMG-HM 52.2, verifying ethanol yield and productivity of 0.34 g/g and 0.18 g L/h, respectively. Results showed the potential of using fluidized bed reactor for ethanol production under different process conditions, reducing equipments and process costs with mass transference.
机译:由于化石燃料的稀缺和严重的环境问题,需要齐心协力,以发展可再生资源的集约化和强劲的乙醇生产。当前,木质纤维素材料是世界上可用的主要可再生碳源之一。在此背景下,我们提出了采用流化床反应器强化从甘蔗渣(SCB)生产第二代(2G)乙醇的新提议。 SCB的连续步骤,即碱预处理,糖化和发酵为乙醇在同一塔式反应器中进行,而在整个过程中不打开它。在碱性预处理过程中,设计并执行了22个完整的因子设计实验,以评估NaOH浓度(0.1至0.5M)和时间(1至4h)对预处理生物质的酶消化率的影响。在糖化步骤中,当通过使用高水平的变量在过程中使用碱性预处理生物质进行酶促水解时,分别获得了约87%和43%的葡萄糖和木糖。因此,使用野生木糖和葡萄糖发酵酵母Scheffersomyces shehataeUFMG-HM 52.2进行了同时糖化和共发酵(SSCF),验证了乙醇产量和生产率分别为0.34 g / g和0.18 g L / h。结果表明在不同工艺条件下使用流化床反应器生产乙醇的潜力,通过传质降低设备和工艺成本。

著录项

  • 来源
    《Renewable energy》 |2018年第8期|189-196|共8页
  • 作者单位

    Department of Biotechnology, Engineering School of Lorena, University of São Paulo;

    Department of Biotechnology, Engineering School of Lorena, University of São Paulo;

    Department of Biotechnology, Engineering School of Lorena, University of São Paulo;

    Department of Biotechnology, Engineering School of Lorena, University of São Paulo;

    Department of Biotechnology, Engineering School of Lorena, University of São Paulo;

    Department of Biotechnology, Engineering School of Lorena, University of São Paulo;

    Department of Biotechnology, Engineering School of Lorena, University of São Paulo;

    Department of Biotechnology, Engineering School of Lorena, University of São Paulo;

    Department of Biotechnology, Engineering School of Lorena, University of São Paulo;

    Department of Biotechnology, Engineering School of Lorena, University of São Paulo;

  • 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

    Sugarcane bagasse; Intensification process; Biomass pretreatment; Fluidized bed reactor; Ethanol 2G production;

    机译:甘蔗渣;强化工艺;生物质预处理;流化床反应器;乙醇2G生产;

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