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Surfactant mediated enhanced glycerol uptake and hydrogen production from biodiesel waste using co-culture of Enterobacter aerogenes and Clostridium butyricum

机译:通过使用产气肠杆菌和丁酸梭菌的共培养,表面活性剂介导的生物柴油废物中甘油的摄取和产氢的增加

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摘要

In the present study, Tween 80, a non-ionic surfactant, has been used for enhanced hydrogen production by crude glycerol bioconversion using co-culture of Enterobacter aerogenes and Clostridium butyricum. The purpose of introducing the surfactant was to decrease the crude glycerol viscosity, so that apparent solubility and bioavailability of glycerol could be improved at the expenses of pretreatment steps. Experiments were planned using central composite design (CCD); crude glycerol and Tween 80 concentrations were optimized whereas, hydrogen production, glycerol utilization and viscosity of the media were considered as responses. The response surface for quadratic model showed, Tween 80 concentration had significant effect (p < 0.05) on all the three responses. Using the optimized conditions at 17.5 g/L crude glycerol and 15 mg/L Tween 80, hydrogen production reached a maximum of 32.1 +/- 0.03 mmol/L of medium. The increase in hydrogen production was around 1.25-fold in presence of Tween 80 in comparison to its absence with 25.56 +/- 0.91 mmol/L production. Selected optimum conditions were also validated against absence of crude glycerol (4.69 +/- 0.76), with pretreated crude glycerol (20.06 +/- 0.51) and across mono-culture system (15.43 +/- 0.79 to 22.14 +/- 0.94). Introduction of Tween 80 to the fermentation medium improved the glycerol utilization rate, resulting in increased hydrogen production and eliminated pretreatment steps. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本研究中,非离子表面活性剂Tween 80已用于通过产气肠杆菌和丁酸梭菌的共培养来通过粗制甘油的生物转化来提高产氢量。引入表面活性剂的目的是降低粗制甘油的粘度,从而可以以预处理步骤为代价来改善甘油的表观溶解度和生物利用度。使用中央复合设计(CCD)计划了实验;优化了粗甘油和吐温80的浓度,而将产氢,甘油利用率和介质粘度视为响应。二次模型的响应面显示,吐温80浓度对所有三个响应均具有显着影响(p <0.05)。在17.5 g / L粗甘油和15 mg / L Tween 80的优化条件下,制氢量最高达到32.1 +/- 0.03 mmol / L培养基。在吐温80存在下,与不存在25.56 +/- 0.91 mmol / L的情况相比,氢气的产生量增加了约1.25倍。所选的最佳条件也针对不存在粗甘油(4.69 +/- 0.76),预处理过的粗甘油(20.06 +/- 0.51)和跨单一培养系统(15.43 +/- 0.79至22.14 +/- 0.94)进行了验证。将Tween 80引入发酵培养基可提高甘油利用率,从而增加氢气产量并消除预处理步骤。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Renewable energy》 |2016年第9期|542-551|共10页
  • 作者单位

    Inst Natl Rech Sci, Ctr Eau Terre Environm, 490 Rue Couronne, Quebec City, PQ G1K 9A9, Canada;

    Inst Natl Rech Sci, Ctr Eau Terre Environm, 490 Rue Couronne, Quebec City, PQ G1K 9A9, Canada;

    Inst Natl Rech Sci, Ctr Eau Terre Environm, 490 Rue Couronne, Quebec City, PQ G1K 9A9, Canada;

    Ctr Rech Ind Quebec, Quebec City, PQ, Canada;

    Ctr Rech Ind Quebec, Quebec City, PQ, Canada;

    CO2 Solut Inc, 2300 Rue Jean Perrin, Quebec City, PQ G2C 1T9, Canada;

  • 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

    Co-culture; Crude glycerol; Hydrogen; Tween 80; Viscosity;

    机译:共培养;粗制甘油;氢;吐温80;粘度;

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