利用热可逆溶胶-凝胶转变培养和高效采集微藻。

Cultivation and energy efficient harvesting of microalgae using thermoreversible sol-gel transition.

机构信息

Department of Biomedical and Chemical Engineering, Syracuse University, Syracuse, New York 13244, USA.

Department of Civil and Environmental Engineering, Syracuse University, Syracuse, New York 13244, USA.

出版信息

Sci Rep. 2017 Jan 19;7:40725. doi: 10.1038/srep40725.

Abstract

Microalgae represent a promising source of renewable biomass for the production of biofuels and valuable chemicals. However, energy efficient cultivation and harvesting technologies are necessary to improve economic viability. A Tris-Acetate-Phosphate-Pluronic (TAPP) medium that undergoes a thermoreversible sol-gel transition is developed to efficiently culture and harvest microalgae without affecting the productivity as compared to that in traditional culture in a well-mixed suspension. After seeding microalgae in the TAPP medium in a solution phase at 15 °C, the temperature is increased by 7 °C to induce gelation. Within the gel, microalgae are observed to grow in large clusters rather than as isolated cells. The settling velocity of the microalgal clusters is approximately ten times larger than that of individual cells cultured in typical solution media. Such clusters are easily harvested gravimetrically by decreasing the temperature to bring the medium to a solution phase.

摘要

微藻是可再生生物量的有前途的来源,可用于生产生物燃料和有价值的化学品。然而,需要节能的培养和收获技术来提高经济可行性。开发了一种三乙酸盐-磷酸盐-聚氧乙烯-聚氧丙烯-聚氧乙烯(TAPP)培养基,它经历热可逆溶胶-凝胶转变,可以有效地培养和收获微藻,而不会影响与在传统的充分混合悬浮液中的培养相比的生产力。在 15°C 下将微藻种在 TAPP 介质的溶液相中,然后将温度升高 7°C 以诱导凝胶化。在凝胶中,观察到微藻在大簇中生长,而不是作为孤立的细胞。微藻簇的沉降速度大约是在典型的溶液培养基中培养的单个细胞的十倍。通过降低温度使介质处于溶液相,可以通过重力轻松地收获这样的簇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f31/5244363/110bb8c2c502/srep40725-f1.jpg

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