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一种新型循环回路生物反应器,其中细胞固定在丝瓜(圆筒丝瓜)海绵中,用于将生木薯淀粉生物转化为乙醇。

A novel circulating loop bioreactor with cells immobilized in loofa ( Luffa cylindrica) sponge for the bioconversion of raw cassava starch to ethanol.

作者信息

Roble N D, Ogbonna J C, Tanaka H

机构信息

Institute of Applied Biochemistry, University of Tsukuba,1-1-1 Tennodai, Tsukuba, Ibaraki 305, Japan.

出版信息

Appl Microbiol Biotechnol. 2003 Feb;60(6):671-8. doi: 10.1007/s00253-002-1119-0. Epub 2002 Dec 19.

Abstract

A circulating loop bioreactor (CLB) with cells immobilized in loofa sponge was constructed for simultaneous aerobic and anaerobic processes. The CLB consists of an aerated riser and a non-aerated downcomer column connected at the top and bottom by cylindrical pipes. Ethanol production from raw cassava starch was investigated in the CLB. Aspergillus awamori IAM 2389 and Saccharomyces cerevisiae IR2 immobilized on loofa sponge were placed, respectively, in the aerated riser column and non-aerated downcomer column. Both alpha-amylase and glucoamylase activities increased as the aeration rate was increased. Ethanol yield and productivity increased with an increase in the aeration rate up to 0.5 vvm, but decreased at higher aeration rates. The CLB was operated at an aeration rate of 0.5 vvm for more than 600 h, resulting in an average ethanol productivity and yield from raw cassava starch of 0.5 g-ethanol l(-1) x h(-1) and 0.45 g ethanol/g starch, respectively. In order to increase ethanol productivity, it was necessary to increase the dissolved oxygen (DO) concentration in the riser column and decrease the DO concentration in the downcomer column. However, increasing the aeration rate resulted in increases in the DO concentration in both the riser and the downcomer columns. At high aeration rate, there was no significant difference in the DO concentration in the riser and downcomer columns. The aeration rate was therefore uncoupled from the liquid circulation by attaching a time-controlled valve in the upper connecting pipe. By optimizing the time and frequency of valve opening, and operation at high aeration rate, it was possible to maintain a very high DO concentration in the riser column and a low DO concentration in the downcomer column. Under these conditions, ethanol productivity increased by more than 100%, to 1.17 g l(-1) x h(-1).

摘要

构建了一种将细胞固定在丝瓜海绵中的循环回路生物反应器(CLB),用于同时进行好氧和厌氧过程。CLB由一个曝气上升管和一个非曝气下降管柱组成,二者通过圆柱形管道在顶部和底部相连。研究了CLB中由生木薯淀粉生产乙醇的情况。固定在丝瓜海绵上的泡盛曲霉IAM 2389和酿酒酵母IR2分别放置在曝气上升管柱和非曝气下降管柱中。随着曝气速率的增加,α-淀粉酶和糖化酶的活性均有所提高。乙醇产量和生产率随着曝气速率增加至0.5 vvm而提高,但在更高的曝气速率下则下降。CLB在0.5 vvm的曝气速率下运行超过600小时,生木薯淀粉的平均乙醇生产率和产量分别为0.5 g乙醇·L⁻¹·h⁻¹和0.45 g乙醇/g淀粉。为了提高乙醇生产率,有必要提高上升管柱中的溶解氧(DO)浓度并降低下降管柱中的DO浓度。然而,增加曝气速率会导致上升管柱和下降管柱中的DO浓度均增加。在高曝气速率下,上升管柱和下降管柱中的DO浓度没有显著差异。因此,通过在上部连接管中安装一个时间控制阀门,使曝气速率与液体循环解耦。通过优化阀门开启的时间和频率,并在高曝气速率下运行,可以在上升管柱中维持非常高的DO浓度,在下降管柱中维持低DO浓度。在这些条件下,乙醇生产率提高了100%以上,达到1.17 g·L⁻¹·h⁻¹。

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