Investigation of microalgae culture by autoflocculation methodologies

Le Thi Van Anh, Tran Ngoc Anh Thu, Nguyen Thi Dong Phuong
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Abstract

Harvesting of microalgae from their different cultivation media has pointed out challenges in resolving the problems of flocculation. These challenges must be faced with a  suitable method for inducing flocculation that avoid or limit the microalgae’s contamination. This study developed the fundamental experiments with a support of chemicals and some bacteria strains inducing the flocculation of Chlorella vulgaris SAG 211-19.  Particularly, the determination of minimum content of Mg2+, Ca2+, E. coli ATCC 85922 and Bacillus subtilis MT300405 was effectuated with co-cultivation of microalgae and set up in batch culture in Bold’s Basal Medium. As a result, the adjustment in 25 minutes of 199.2 mg/L CaCl2.2H2O, 50 mg/L KH2PO4, and of 141 mg/L MgSO4.7H2O induced a microalgal settling efficiency of 81% and 70%, respectively. Meanwhile, the perfomance of microalgal removing reached up to 83.6% and 84% by the inoculation into microalgal culture media of a minimum initial cell density of 8.1 ´ 105 CFU/mL of Bacillus subtilis MT300405 and 12 ´ 105 CFU/mL of E. coli ATCC 85922, respectively. The flocculation of microalgal cells by bacterial inoculation did not require a high pH adjustment as in the case of salt addition.
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自絮凝法培养微藻的研究
从不同培养基中收获微藻,对解决絮凝问题提出了挑战。寻找一种合适的诱导絮凝方法来避免或限制微藻的污染,必须面对这些挑战。本研究以化学药剂和部分菌株为辅助条件,进行了诱导小球藻SAG 211-19絮凝的基础实验。其中,通过微藻共培养,并在Bold’s basic Medium中分批培养,实现了Mg2+、Ca2+、大肠杆菌ATCC 85922和枯草芽孢杆菌MT300405最低含量的测定。结果表明,当浓度为199.2 mg/L CaCl2.2H2O、50 mg/L KH2PO4和141 mg/L MgSO4.7H2O时,微藻沉降率分别为81%和70%。同时,在初始细胞密度最低为8.1´105 CFU/mL的枯草芽孢杆菌MT300405和12´105 CFU/mL的大肠杆菌ATCC 85922微藻培养基中接种微藻,微藻去除率分别达到83.6%和84%。细菌接种对微藻细胞的絮凝作用不需要像加盐那样高的pH调节。
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