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Efficient production of ethanol from waste paper and the biochemical methane potential of stillage eluted from ethanol fermentation

机译:从废纸中高效生产乙醇和乙醇发酵洗脱的釜馏物的生化甲烷潜力

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摘要

Waste paper can serve as a feedstock for ethanol production due to being rich in cellulose and not requiring energy-intensive thermophysical pretreatment. In this study, an efficient process was developed to convert waste paper to ethanol. To accelerate enzymatic saccharification, pH of waste paper slurry was adjusted to 4.5-5.0 with H_2SO_4. Presaccharification and simultaneous saccharification and fermentation (PSSF) with enzyme loading of 40 FPU/g waste paper achieved an ethanol yield of 91.8% and productivity of 0.53 g/(L h) with an ethanol concentration of 32 g/L. Fed-batch PSSF was used to decrease enzyme loading to 13 FPU/g waste paper by feeding two separate batches of waste paper slurry. Feeding with 20% w/w waste paper slurry increased ethanol concentration to 41.8 g/L while ethanol yield decreased to 83.8%. To improve the ethanol yield, presaccharification was done prior to feeding and resulted in a higher ethanol concentration of 45.3 g/L, a yield of 90.8%, and productivity of 0.54 g/(L h). Ethanol fermentation recovered 33.2% of the energy in waste paper as ethanol. The biochemical methane potential of the stiilage eluted from ethanot fermentation was 270.5 mL/g VTS and 73.0% of the energy in the stillage was recovered as methane. Integrating ethanol fermentation with methane fermentation, recovered a total of 80.4% of the energy in waste paper as ethanol and methane.
机译:废纸由于富含纤维素并且不需要耗能的热物理预处理,因此可以用作生产乙醇的原料。在这项研究中,开发了一种将废纸转化为乙醇的有效方法。为了加速酶促糖化作用,用H_2SO_4将废纸浆的pH值调节到4.5-5.0。酶负荷为40 FPU / g废纸的预糖化和同时糖化与发酵(PSSF)在乙醇浓度为32 g / L的情况下实现了91.8%的乙醇产率和0.53 g /(L h)的生产率。补料分批补料PSSF通过进料两批废纸浆将酶负载降低到13 FPU / g废纸。进料20%w / w的废纸浆会增加乙醇浓度至41.8 g / L,而乙醇收率下降至83.8%。为了提高乙醇的收率,在进料前进行了预糖化,结果乙醇浓度更高,为45.3 g / L,产率为90.8%,生产率为0.54 g /(L h)。乙醇发酵可回收废纸中33.2%的能量作为乙醇。从乙醇发酵中洗脱出的刺激物的生化甲烷潜力为270.5 mL / g VTS,并且回收了蒸馏物中73.0%的能量作为甲烷。乙醇发酵与甲烷发酵相结合,在废纸中回收了总计80.4%的能量,如乙醇和甲烷。

著录项

  • 来源
    《Waste Management》 |2016年第2期|644-651|共8页
  • 作者单位

    Graduate School of Science and Technology, Kumamoto University, 2-39-1 Kurokami, Kumamoto 860-8555, Japan;

    College of Architecture and Environment, Sichuan University, No. 24 South Section 1, First Ring Road, Chengdu 610065, China;

    College of Architecture and Environment, Sichuan University, No. 24 South Section 1, First Ring Road, Chengdu 610065, China;

    College of Architecture and Environment, Sichuan University, No. 24 South Section 1, First Ring Road, Chengdu 610065, China;

    Graduate School of Science and Technology, Kumamoto University, 2-39-1 Kurokami, Kumamoto 860-8555, Japan,College of Architecture and Environment, Sichuan University, No. 24 South Section 1, First Ring Road, Chengdu 610065, China;

    Graduate School of Science and Technology, Kumamoto University, 2-39-1 Kurokami, Kumamoto 860-8555, Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ethanol; Presaccharification; Simultaneous saccharification and fermentation (SSF); Methane fermentation;

    机译:乙醇;预糖化;同时糖化和发酵(SSF);甲烷发酵;

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