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Growth rate and biomass productivity of Chlorella as affected by culture depth and cell density in an open circular photobioreactor

机译:在开放式圆形光生物反应器中,小球藻的生长速率和生物量生产率受培养深度和细胞密度的影响

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The effects of culture depth (2-10 cm) and cell density on the growth rate and biomass productivity of Chlorella sp. XQ-200419 were investigated through the use of a selfdesigned open circular pond photobioreactor-imitation system. With increases in culture depths from 2 to 10 cm, the growth rate decreased significantly from 1.08 /d to 0.39 /d. However, the biomass productivity only increased slightly from 8.41 to 11.22 g/m~2/d. The biomass productivity (11.08 g/m~2/d) achieved in 4 cm culture with an initial OD540 of 0.95 was similar to that achieved in 10 cm culture with an initial OD540 of 0.5. In addition, the duration of maximal areal productivity at a 4 cm depth was prolonged from 1 to 4 days, a finding that was also similar to that of the culture at a 10 cm depth. In both cases, the initial areal biomass densities were identical. Based on these results and previous studies, it can be concluded that the influence of culture depth and cell density on areal biomass productivity is actually due to different areal biomass densities. Under suitable conditions, there are a range of optimal biomass densities, and areal biomass productivity reaches its maximum when the biomass density is within these optimal ranges. Otherwise, biomass productivity will decrease. Therefore, a key factor for high biomass productivity is to maintain an optimal biomass density.
机译:培养深度(2-10厘米)和细胞密度对小球藻生长速率和生物量生产力的影响。 XQ-200419通过使用自行设计的开放式圆形池塘光生物反应器模拟系统进行了研究。随着培养深度从2厘米增加到10厘米,生长速率从1.08 / d显着下降至0.39 / d。然而,生物量生产力仅从8.41增加到11.22 g / m〜2 / d。在4 cm培养中初始OD540为0.95时实现的生物量生产率(11.08 g / m〜2 / d)与在10 cm培养中初始OD540为0.5时获得的生物量生产率相似。此外,在4 cm深度处最大面生产率的持续时间从1天延长到4天,这一发现也与在10 cm深度处的培养物相似。在这两种情况下,初始区域生物量密度均相同。根据这些结果和先前的研究,可以得出结论,培养深度和细胞密度对面积生物量生产力的影响实际上是由于面积生物量密度不同所致。在合适的条件下,存在一定范围的最佳生物量密度,当生物量密度在这些最佳范围内时,区域生物量生产力达到最大值。否则,生物质生产率将下降。因此,高生物质生产率的关键因素是保持最佳生物质密度。

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