Department of Chemical and Biomolecular Engineering, KAIST, Daejeon 305-701, Korea.
J Microbiol Biotechnol. 2011 Oct;21(10):1081-7. doi: 10.4014/jmb.1103.03041.
An internally radiating photobioreactor was applied for the production of astaxanthin using the unicellular green alga Haematococcus pluvialis. The cellular morphology of H. pluvialis was significantly affected by the intensity of irradiance of the photobioreactor. Small green cells were widespread under lower light intensity, whereas big reddish cells were predominant under high light intensity. For these reasons, growth reflected by cell number or dry weight varied markedly with light conditions. Even under internal illumination of the photobioreactor, light penetration was significantly decreased as algal cells grew. Therefore, we employed a multistage process by gradually increasing the internal illuminations for astaxanthin production. Our results revealed that a multistage process might be essential to the successful operation of a photobioreactor for astaxnthin production using H. pluvialis.
采用内部辐射式光生物反应器,利用单细胞绿藻雨生红球藻生产虾青素。光生物反应器的辐照度强度对雨生红球藻的细胞形态有显著影响。在较低光强下,广泛分布着小的绿色细胞,而在高光强下,大的红色细胞占优势。由于这些原因,细胞数量或干重的生长情况随光照条件有明显变化。即使在光生物反应器的内部照明下,随着藻类细胞的生长,光的穿透也会显著降低。因此,我们采用了多级工艺,逐渐增加内部光照强度来生产虾青素。我们的结果表明,对于利用雨生红球藻生产虾青素的光生物反应器,多级工艺可能是成功运行的关键。