Wetsus, P.O. Box 1113, 8900 CC Leeuwarden, The Netherlands.
Bioresour Technol. 2012 Jan;104:565-70. doi: 10.1016/j.biortech.2011.10.048. Epub 2011 Oct 21.
The effect of partial oxygen pressure on growth of Neochloris oleoabundans was studied at sub-saturating light intensity in a fully-controlled stirred tank photobioreactor. At the three partial oxygen pressures tested (P(O)₂= 0.24; 0.63; 0.84 bar), the specific growth rate was 1.38; 1.36 and 1.06 day(-1), respectively. An increase of the P(CO)₂from 0.007 to 0.02 bar at P(O₂) of 0.84 bar resulted in an increase in the growth rate from 1.06 to 1.36 day(-1). These results confirm that the reduction of algal growth at high oxygen concentrations at sub-saturating light conditions is mainly caused by competitive inhibition of Rubisco. This negative effect on growth can be overcome by restoring the O(2)/CO(2) ratio by an increase in the partial carbon dioxide pressure. In comparison to general practice (P(O(2)) = 0.42 bar), working at partial O(2) pressure of 0.84 bar could reduce the energy requirement for degassing by a factor of 3-4.
在全控制搅拌槽光生物反应器中,在亚饱和光强下研究了分压对 Neochloris oleoabundans 生长的影响。在测试的三个分压(P(O)₂=0.24;0.63;0.84 巴)下,比生长速率分别为 1.38;1.36 和 1.06 天(-1)。在 P(O₂)为 0.84 巴时,将 P(CO₂)从 0.007 增加到 0.02 巴,导致生长速率从 1.06 增加到 1.36 天(-1)。这些结果证实,在亚饱和光照条件下高氧浓度下藻类生长的降低主要是由于 Rubisco 的竞争抑制所致。通过增加部分二氧化碳压力来恢复 O(2)/CO(2)比,可以克服对生长的这种负面影响。与一般做法(P(O(2))=0.42 巴)相比,在 0.84 巴的分压下工作可以将脱气的能量需求降低 3-4 倍。