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在中试规模下对加那利群岛室外培养的三种本地微藻进行采收时,使用化学絮凝剂和壳聚糖作为预浓缩步骤。

The Use of Chemical Flocculants and Chitosan as a Pre-Concentration Step in the Harvesting Process of Three Native Microalgae Species from the Canary Islands Cultivated Outdoors at the Pilot Scale.

作者信息

Figueira Garcia Laura, Gojkovic Zivan, Venuleo Marianna, Guidi Flavio, Portillo Eduardo

机构信息

Instituto Tecnológico de Canarias (ITC), Playa de Pozo Izquierdo, s/n, 35119 Santa Lucía de Tirajana, Gran Canaria, Spain.

出版信息

Microorganisms. 2024 Dec 13;12(12):2583. doi: 10.3390/microorganisms12122583.

Abstract

Biomass harvesting represents one of the main bottlenecks in microalgae large-scale production. Solid-liquid separation of the biomass accounts for 30% of the total production costs, which can be reduced by the use of flocculants as a pre-concentration step in the downstream process. The natural polymer chitosan and the two chemical flocculants FeCl and AlCl were tested on freshwater and two marine algae, and . A preliminary screening at the laboratory scale was performed to detect the most suitable doses of flocculants. On the basis of these results, selected doses were tested on the pilot scale, using the flocculants for a pre-concentration step and the centrifugation as a second step to confirm the effectiveness of flocculants in a realistic operational environment. The biomass recoveries (R, %) of 100 L cultures were as follows: (1) for , R = 94.6% for 0.08 g/L AlCl, 88.4% for 0.1 g/L FeCl, and 68.3% for 0.04 g/L chitosan; (2) for , R = 81.7% for 0.1 g/L AlCl, 87.9% for 0.2 g/L FeCl, and 81.6% for 0.1 g/L chitosan; and (3) for , R = 89.6% for 0.1 g/L AlCl, 98.6% for 0.2 g/L FeCl, and 68.3% for 0.1 g/L chitosan. Flocculation reduced the harvesting costs by 85.9 ± 4.5% using chemical flocculants. Excesses of aluminum and iron in the biomass could be solved by decreasing the pH in the biomass combined with washing. This is the first study, to the best of our knowledge, that investigates the pilot-scale flocculation of three native Canarian microalgal strains. A pilot-scale pre-concentration step before centrifugation can improve the yield and reduce costs in the microalgae harvesting process.

摘要

生物质收获是微藻大规模生产的主要瓶颈之一。生物质的固液分离占总生产成本的30%,通过在下游工艺中使用絮凝剂作为预浓缩步骤可以降低这一成本。对天然聚合物壳聚糖以及两种化学絮凝剂FeCl和AlCl在淡水藻和两种海洋藻([藻名1]、[藻名2])上进行了测试。在实验室规模进行了初步筛选以检测最合适的絮凝剂剂量。基于这些结果,在中试规模上测试选定的剂量,使用絮凝剂作为预浓缩步骤,并以离心作为第二步,以在实际操作环境中确认絮凝剂的有效性。100升培养物的生物质回收率(R,%)如下:(1)对于[藻名1],0.08克/升AlCl时R = 94.6%,0.1克/升FeCl时R = 88.4%,0.04克/升壳聚糖时R = 68.3%;(2)对于[藻名2],0.1克/升AlCl时R = 81.7%,0.2克/升FeCl时R = 87.9%,0.1克/升壳聚糖时R = 81.6%;(3)对于[藻名3],0.1克/升AlCl时R = 89.6%,0.2克/升FeCl时R = 98.6%,0.1克/升壳聚糖时R = 68.3%。使用化学絮凝剂时,絮凝使收获成本降低了85.9±4.5%。生物质中过量的铝和铁可以通过降低生物质的pH值并结合洗涤来解决。据我们所知,这是第一项研究加那利群岛三种本地微藻菌株中试规模絮凝的研究。离心前的中试规模预浓缩步骤可以提高微藻收获过程的产量并降低成本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e582/11677443/3cc8f78919bd/microorganisms-12-02583-g0A1.jpg

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