用超滤海水培养微藻的可行性研究

C. Cordier, Killian Guyomard, C. Stavrakakis, P. Sauvade, Franz Coelho, P. Moulin
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引用次数: 65

摘要

微藻的培养对于双壳类的生产和维护是重要的。其中一个主要挑战是长期保持微藻觅食的可靠性。本工作的目的是使用超滤海水来培养它们。因此,在UF水中(膜孔径:20nm)和通常在Bouin(法国)的Ifremer软体动物实验平台上使用的海水中(预过滤、3次过滤和2次紫外线)监测300L体积的2种微藻Tetraselmis和T-isochrysis的培养物。主要结果是,与对各种对照培养物的分析不同,在所有提供超滤水的培养物中都没有寄生虫的情况下,确保了微湖培养物的安全。在T-等hrysis的情况下,4种培养物中的3种在超滤水中产生更高的微藻浓度,高达30%,从而对藻类密度带来好处。这些结论和回收水的容易性(与处理阶段的减少有关)允许技术转让。事实上,自2019年初以来,迄今为止在实验平台上进行的300L培养物现在都是在超滤水中生产的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Culture of Microalgae with Ultrafiltered Seawater: A Feasibility Study
The culture of microalgae is important for the production and maintenance of bivalves. One of the major challenges is to maintain the reliability of microalgae forages over the long term. The aim of this work is to use Ultrafiltered (UF) seawater to cultivate them. Thus, cultures in a volume of 300 L of 2 species of microalgae Tetraselmis and T-isochrysis, were monitored in UF water (membrane pore size: 20 nm) and in sea water usually used on the Ifremer mollusk experimental platform of Bouin (France) (Prefiltration, 3 filtrations and 2 UV). The major result is the securing of microlagae cultures with the absence of parasites in all cultures supplied with ultrafiltered water, unlike analyses of the various control cultures. In the case of T-isochrysis, 3 cultures out of 4 resulted in higher microalgae concentrations, up to 30%, in ultrafiltered water thus bringing a benefit on the algal density. These conclusions and the ease of recovering water (linked to the reduction in treatment stages) allowed a transfer of technology. In fact the 300 L cultures hitherto carried out on the experimental platform are now produced in ultrafiltered water since early 2019.
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