...
首页> 外文期刊>Energy Conversion & Management >Same-vessel enzymatic saccharification and fermentation of organosolv/ H_2O_2 pretreated oil palm (Elaeis guineensis Jacq.) fronds for bioethanol production: Optimization of process parameters
【24h】

Same-vessel enzymatic saccharification and fermentation of organosolv/ H_2O_2 pretreated oil palm (Elaeis guineensis Jacq.) fronds for bioethanol production: Optimization of process parameters

机译:用于有机乙醇生产的有机溶剂/ H_2O_2预处理油棕(Elaeis guineensis Jacq。)的同壁酶促糖化和发酵:工艺参数的优化

获取原文
获取原文并翻译 | 示例
           

摘要

Based on optimized pretreatment process, oil palm fronds (OPFs) were sequentially pretreated with 1.4% (w/v) aq. NaOH in 80% ethanol with ultrasound assistance (at 75 ℃ for 30 min) and 3% (v/v) aq. H_2O_2. Using the Box-Behnken design (BBD) of response surface methodology (RSM), bioethanol production from the sono-assisted organosolv/H_2O_2 OPFs were optimized using same-vessel enzymatic saccharification and fermentation (SVSF) where both the hydrolysis and fermentation processes were carried out in one vessel simultaneously. Throughout the SVSF process, the incubation time and enzyme loading were kept at 72 h and 15 filter paper unit (FPU)/g substrate respectively. The other SVSF parameters which affect bioethanol yield such as temperature (X_1: 30-50 ℃), solid loading (X_2: 5.0-10.0% w/v), yeast concentration (X_3: 5.0-20 g/1) and pH (X_4: 4.0-7.0) were optimized. Well fitted regression equations (R~2 > 0.97) obtained were able to predict reliable optimum bioethanol concentration and yield. The predicted optimum bioethanol concentration (i.e., 20.61 g/1) and yield (i.e., 84.60%) were attained at 36.94 ℃ (~37℃), 7.57% w/v solid loading (~8.0% w/v), 13.97 g/1 yeast concentration (~14.0g/l) and pH of 5.29 (~5.30). Validated results indicated a maximum ethanol concentration and yield of 21.96 g/1 and 84.65% respectively, which were closer to the predicted optimum responses. Using the optimum conditions, the highest bioethanol productivity of 0.76g/l/h was observed at 12 h of SVSF process.
机译:基于优化的预处理工艺,依次用1.4%(w / v)的aq。水溶液预处理油棕叶(OPF)。在超声辅助下于80%乙醇中的NaOH(在75℃下持续30分钟)和3%(v / v)水溶液H_2O_2。使用响应表面方法(RSM)的Box-Behnken设计(BBD),使用相同容器的酶促糖化和发酵(SVSF)优化了声波辅助有机溶剂/ H_2O_2 OPF的生物乙醇生产,其中进行了水解和发酵过程同时在一艘船上。在整个SVSF过程中,孵育时间和酶负荷分别保持在72 h和15滤纸单位(FPU)/ g底物。影响生物乙醇产率的其他SVSF参数,例如温度(X_1:30-50℃),固体载量(X_2:5.0-10.0%w / v),酵母浓度(X_3:5.0-20 g / 1)和pH(X_4) :4.0-7.0)。获得的拟合良好的回归方程(R〜2> 0.97)能够预测可靠的最佳生物乙醇浓度和产量。在36.94℃(〜37℃),固体含量7.57%w / v(〜8.0%w / v),13.97 g的条件下达到了预测的最佳生物乙醇浓度(即20.61 g / 1)和产率(即84.60%)。 / 1酵母浓度(〜14.0g / l),pH为5.29(〜5.30)。验证的结果表明最大乙醇浓度和产量分别为21.96 g / 1和84.65%,这更接近于预测的最佳响应。使用最佳条件,在SVSF工艺处理12 h时,观察到最高的生物乙醇生产率为0.76g / l / h。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号