Shenzhen Engineering Laboratory of Microalgal Bioenergy, Harbin Institute of Technology (Shenzhen), 518055 Shenzhen, China.
Shenzhen Engineering Laboratory of Microalgal Bioenergy, Harbin Institute of Technology (Shenzhen), 518055 Shenzhen, China.
Bioresour Technol. 2019 Oct;290:121771. doi: 10.1016/j.biortech.2019.121771. Epub 2019 Jul 8.
In this work, a novel flocculation process by using nano-FeO coated with polyethyleneimine (FeO@PEI) as magnetic seeds was developed to harvest the microalgae cultivated in urban sewage. Experiment results indicated that the harvest efficiency of Chlorella pyrenoidosa (0.5 g/L) was 98.92 ± 0.41% under the optimal conditions of FeO@PEI dose of 20 mL/L, flocculation time of 20 min, and stirring speed of 800 rpm (3 min), while that of Scenedesmus obliquus (0.4 g/L) was 98.45 ± 0.35% under a FeO@PEI dose of 16 mL/L, flocculation time of 15 min, and stirring speed of 730 rpm (3 min). Moreover, the process did not reduce the lipid content of microalgae and quality of biodiesel. After microalgae harvest, FeO@PEI could be recovered by ultrasonication, re-wrapped with polyethyleneimine and reused to reduce operational cost.
在这项工作中,开发了一种新型的絮凝工艺,使用纳米 FeO 包裹聚乙烯亚胺(FeO@PEI)作为磁性种子来收获在城市污水中培养的微藻。实验结果表明,在最佳条件下(FeO@PEI 用量 20mL/L、絮凝时间 20min、搅拌速度 800rpm(3min)),对浓度为 0.5g/L 的蛋白核小球藻的收获效率为 98.92±0.41%,而对浓度为 0.4g/L 的斜生栅藻的收获效率为 98.45±0.35%,在 FeO@PEI 用量 16mL/L、絮凝时间 15min、搅拌速度 730rpm(3min)。此外,该过程不会降低微藻的脂质含量和生物柴油的质量。微藻收获后,FeO@PEI 可以通过超声处理回收,重新包裹聚乙烯亚胺并重复使用,以降低运营成本。