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Ethanol production from syngas by Clostridium strain P11 using corn steep liquor as a nutrient replacement.

机译:梭状芽胞杆菌菌株P11使用玉米浆作为营养替代品,从合成气中生产乙醇。

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摘要

Scope and Method of Study. The objective of this research is to evaluate corn steep liquor (CSL) as an inexpensive nutrient and substitute to yeast extract (YE) used in the conversion of synthesis gas (syngas) to ethanol. Syngas is primarily a mixture of CO, CO2, and H2 . CSL is rich in carbohydrates, vitamins, minerals, and trace metals and is much lower in cost compared to YE. Yeast extract was employed at a concentration of 1 g/L, while two CSL concentrations (10 g/L and 20 g/L) were investigated. Initially, growth and product profiles of Clostridium strain P11 in YE and CSL media were followed during fermentation in 250-mL serum bottles fed with syngas every 24 h at 239 kPa (absolute). In subsequent runs, the syngas fermentation was scaled-up to 7.5-L fermentor, in which growth, product profile and redox potential were closely monitored during the fermentation process.Findings and Conclusions. After 600 h of fermentation, ethanol concentrations in 250-mL serum bottles with 1 g/L YE, 10 g/L and 20 g/L CSL were 1.3 g/L, 1.5 g/L, and 2.7 g/L, respectively. Ethanol yields in these media after 336 h were 72%, 79% and 142% of the theoretical values based on CO consumed, respectively. The maximum ethanol concentrations after 360 h of fermentation in 7.5-L fermentor with 10 g/L and 20 g/L CSL media were 8.6 g/L and 9.6 g/L, respectively, which represent 57% and 60% of the theoretical ethanol yields. Only about 6.1 g/L of ethanol was obtained in the medium with 1 g/L YE after 360 h, which represents 53% of the theoretical ethanol yield.These results showed that CSL can be used as a substitute for YE in syngas fermentation. In addition, CSL can enhance ethanol production and provide substantial savings by reducing the cost of the medium, which is an important factor in large scale ethanol production.
机译:研究范围和方法。这项研究的目的是评估玉米浆(CSL)作为一种廉价的营养物质,并替代合成气(合成气)转化为乙醇时使用的酵母提取物(YE)。合成气主要是CO,CO2和H2的混合物。 CSL富含碳水化合物,维生素,矿物质和微量金属,与YE相比,其成本要低得多。酵母提取物的浓度为1 g / L,同时研究了两种CSL浓度(10 g / L和20 g / L)。最初,在239 kPa(绝对值)下每24小时向合成气供入的250 mL血清瓶中发酵期间,跟踪YE和CSL培养基中梭状芽胞杆菌菌株P11的生长和产物概况。在随后的运行中,将合成气发酵扩大到7.5 L发酵罐,其中在发酵过程中对其生长,产物特征和氧化还原电位进行了密切监测。发酵600小时后,在250 mL含1 g / L YE,10 g / L和20 g / L CSL的血清瓶中的乙醇浓度分别为1.3 g / L,1.5 g / L和2.7 g / L。在336小时后,这些介质中的乙醇收率分别为基于消耗的CO的理论值的72%,79%和142%。在具有10 g / L和20 g / L CSL培养基的7.5 L发酵罐中发酵360小时后,最大乙醇浓度分别为8.6 g / L和9.6 g / L,分别占理论乙醇的57%和60%产量。在360 h后,仅以1 g / L YE的培养基中仅获得约6.1 g / L乙醇,这代表理论乙醇产量的53%。这些结果表明CSL可作为合成气发酵中YE的替代品。另外,CSL可以通过降低培养基成本来提高乙醇产量并提供大量节省,这是大规模乙醇生产的重要因素。

著录项

  • 作者

    Maddipati, Prasanth.;

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Alternative Energy.Engineering Chemical.Engineering Agricultural.
  • 学位 M.S.
  • 年度 2010
  • 页码 182 p.
  • 总页数 182
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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