ALLMICROALGAE, Natural Products S.A., Avenida Eng° Duarte Pacheco, 19 - 9°, 1070-100, Lisboa, Portugal.
CCMAR - Centre of Marine Sciences, University of Algarve, Gambelas, 8005-139, Faro, Portugal.
Sci Rep. 2019 Sep 26;9(1):13935. doi: 10.1038/s41598-019-50206-z.
Industrial scale-up of microalgal cultures is often a protracted step prone to culture collapse and the occurrence of unwanted contaminants. To solve this problem, a two-stage scale-up process was developed - heterotrophically Chlorella vulgaris cells grown in fermenters (1 stage) were used to directly inoculate an outdoor industrial autotrophic microalgal production unit (2 stage). A preliminary pilot-scale trial revealed that C. vulgaris cells grown heterotrophically adapted readily to outdoor autotrophic growth conditions (1-m photobioreactors) without any measurable difference as compared to conventional autotrophic inocula. Biomass concentration of 174.5 g L, the highest value ever reported for this microalga, was achieved in a 5-L fermenter during scale-up using the heterotrophic route. Inocula grown in 0.2- and 5-m industrial fermenters with mean productivity of 27.54 ± 5.07 and 31.86 ± 2.87 g L d, respectively, were later used to seed several outdoor 100-m tubular photobioreactors. Overall, all photobioreactor cultures seeded from the heterotrophic route reached standard protein and chlorophyll contents of 52.18 ± 1.30% of DW and 23.98 ± 1.57 mg g DW, respectively. In addition to providing reproducible, high-quality inocula, this two-stage approach led to a 5-fold and 12-fold decrease in scale-up time and occupancy area used for industrial scale-up, respectively.
工业规模扩大的微藻培养通常是一个漫长的步骤,容易导致培养物崩溃和出现不需要的污染物。为了解决这个问题,开发了两阶段放大过程 - 在发酵罐中异养培养的普通小球藻细胞(1 阶段)被直接接种到户外工业自养微藻生产装置(2 阶段)。初步试点试验表明,与传统的自养接种物相比,异养生长的普通小球藻细胞很容易适应户外自养生长条件(1m 光生物反应器),没有任何可测量的差异。在使用异养途径放大时,在 5L 发酵罐中实现了 174.5 g/L 的生物量浓度,这是该微藻有史以来的最高值。在 0.2 和 5m 的工业发酵罐中生长的接种物的平均生产力分别为 27.54±5.07 和 31.86±2.87 g/L/d,随后用于接种几个户外 100m 管状光生物反应器。总体而言,所有从异养途径接种的光生物反应器培养物都达到了标准的蛋白质和叶绿素含量,分别为 DW 的 52.18±1.30%和 DW 的 23.98±1.57 mg/g。除了提供可重复、高质量的接种物外,这种两阶段方法还分别将放大时间和用于工业放大的占用面积减少了 5 倍和 12 倍。