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首页> 外文期刊>Applied and Environmental Microbiology >Rapid Aggregation of Biofuel-Producing Algae by the Bacterium Bacillus sp. Strain RP1137
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Rapid Aggregation of Biofuel-Producing Algae by the Bacterium Bacillus sp. Strain RP1137

机译:细菌芽孢杆菌快速聚集生产生物燃料的藻类。菌株RP1137

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摘要

Algal biofuels represent one of the most promising means of sustainably replacing liquid fuels. However, significant challenges remain before alga-based fuels become competitive with fossil fuels. One of the largest challenges is the ability to harvest the algae in an economical and low-energy manner. In this article, we describe the isolation of a bacterial strain, Bacillus sp. strain RP1137, which can rapidly aggregate several algae that are candidates for biofuel production, including a Nannochloropsis sp. This bacterium aggregates algae in a pH-dependent and reversible manner and retains its aggregation ability after paraformaldehyde fixation, opening the possibility for reuse of the cells. The optimal ratio of bacteria to algae is described, as is the robustness of aggregation at different salinities and temperatures. Aggregation is dependent on the presence of calcium or magnesium ions. The efficiency of aggregation of Nannochloropsis oceanica IMET1 is between 70 and 95% and is comparable to that obtained by other means of harvest; however, the rate of harvest is fast, with aggregates forming in 30 s.
机译:藻类生物燃料是可持续替代液体燃料的最有希望的手段之一。然而,在藻类燃料与化石燃料竞争之前,仍然存在重大挑战。最大的挑战之一是以经济,低能耗的方式收获藻类的能力。在本文中,我们描述了细菌菌株芽孢杆菌的分离。菌株RP1137,可以快速聚集多种藻类,这些藻类是生产生物燃料的候选藻,包括Nannochloropsis sp。该细菌以pH依赖和可逆的方式聚集藻类,并在固定低聚甲醛后保留其聚集能力,从而为细胞的再利用打开了可能性。描述了细菌与藻类的最佳比例,以及在不同盐度和温度下聚集的稳健性。聚集取决于钙或镁离子的存在。拟南芥IMET1的聚集效率在70%至95%之间,可与通过其他收获方式获得的效率相媲美。但是,收获速度很快,在30 s内就会形成聚集体。

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