4.4 Article

Influence of Forced Internal Air Circulation on Airflow Distribution and Heat Transfer in a Gas Double-dynamic Solid-state Fermentation Bioreactor

期刊

APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY
卷 172, 期 4, 页码 2218-2226

出版社

HUMANA PRESS INC
DOI: 10.1007/s12010-013-0670-8

关键词

Forced internal air circulation; Air distribution plate; Solid-state fermentation; Heat transfer; Cellulase

资金

  1. National Basic Research Program of China (973 Project) [2011CB707401]
  2. National High Technology Research and Development Program (863 Program) [SS2012AA022502]
  3. National Key Project of Scientific and Technical Supporting Program of China [2011BAD22B02]

向作者/读者索取更多资源

Internal air circulation affects the temperature field distribution in a gas double-dynamic solid-state fermentation bioreactor (GDSFB). To enhance heat transfer through strengthening internal air circulation in a GDSFB, we put an air distribution plate (ADP) into the bioreactor and studied the effects of forced internal air circulation on airflow, heat transfer, and cellulase activity of Trichoderma viride L3. Results showed that ADP could help form a steady and uniform airflow distribution, and with gas-guide tubes, air reversal was formed inside the bioreactor, thus resulting in a smaller temperature difference between medium and air by enhancing convective heat transfer inside the bioreactor. Using an ADP of 5.35 % aperture ratio caused a 1 degrees C decrease in the average temperature difference during the solid-state fermentation process of T. viride L3. Meanwhile, the cellulase activity of T. viride L3 increased by 13.5 %. The best heat-transfer effect was attained when using an ADP of 5.35 % aperture ratio and setting the fan power to 125 V (4.81 W) in the gas double-dynamic solid-state fermentation (GDSF) process. An option of suitable aperture ratio and fan power may be conducive to ADPs' industrial amplification.

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