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固定化聚球藻处理米糠废水及其对盐藻培养的影响。

Rice vinasse treatment by immobilized Synechococcus pevalekii and its effect on Dunaliella salina cultivation.

机构信息

Postgraduate Program in Bioprocess Engineering and Biotechnology, Federal University of Paraná, Av. Cel. Francisco H. Dos Santos, 100, PO BOX 1901, Curitiba, 81531-990, Brazil.

Biochemistry and Molecular Biology Department, Federal University of Paraná, Av. Cel. Francisco H. Dos Santos, 100, PO BOX 19046, Curitiba, 81531-980, Brazil.

出版信息

Bioprocess Biosyst Eng. 2021 Jul;44(7):1477-1490. doi: 10.1007/s00449-021-02531-9. Epub 2021 Mar 7.

Abstract

The development of new strategies in microalgal studies represents an outstanding opportunity to mitigate environmental problems coupled with biomass production at a reduced cost. Here we present a combined bioprocess for the treatment of rice vinasse using immobilized cyanobacteria Synechococcus pevalekii in alginate beads followed by the use of the treated vinasse as a culture medium for Dunaliella salina biomass production. Cyanobacterial-alginate beads showed a chlorophyll a production of 0.68 × 10 mg bead and a total carotenoid production of 0.64 × 10 mg bead. The first step showed a decrease in nitrate (91%), total solids (29%), and ions. Addition of treated vinasse into D. salina cultivation resulted in a significant increase in cell replication of about 175% (optimized cultivation). The use of natural seawater drastically reduced the medium cost to US$4.75 per m and the addition of treated vinasse has the potential to reduce it even more (up to 69%). This study not only provides an insight on the use of cyanobacteria for rice vinasse treatment but also demonstrates a promising lower-cost medium for marine microalgal biomass production with biotechnological purposes.

摘要

在微藻研究中开发新策略代表了一个绝佳的机会,可以在降低成本的同时减轻环境问题并生产生物质。在这里,我们提出了一种使用固定化蓝藻 Synechococcus pevalekii 藻酸盐珠处理水稻酒糟的联合生物工艺,然后使用处理过的酒糟作为杜氏盐藻生物质生产的培养基。藻酸盐珠中的蓝藻显示出 0.68×10 mg 珠的叶绿素 a 产量和 0.64×10 mg 珠的总类胡萝卜素产量。第一步表明硝酸盐(91%)、总固体(29%)和离子减少。在 D. salina 培养中添加处理过的酒糟会导致细胞复制率显著增加约 175%(优化培养)。使用天然海水可将培养基成本大幅降低至每立方米 4.75 美元,而添加处理过的酒糟有可能进一步降低成本(最高可达 69%)。这项研究不仅提供了关于利用蓝藻处理水稻酒糟的见解,还展示了一种具有成本效益的新型培养基,可用于具有生物技术目的的海洋微藻生物质生产。

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