首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >A novel one-step method for oil-rich biomass production and harvesting by co-cultivating microalgae with filamentous fungi in molasses wastewater
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A novel one-step method for oil-rich biomass production and harvesting by co-cultivating microalgae with filamentous fungi in molasses wastewater

机译:一种新的一种新的富含石油生物质生产和收获的一种新型方法,通过糖蜜废水中的丝状真菌进行微藻凝血

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摘要

Aiming at simplifying the harvesting procedure, reducing the production cost, and improving the quality of microalgae-based biodiesel, herein, a novel one-step method for oil-rich biomass production and harvesting was proposed by growing Chlorella sp. with Aspergillus sp. in molasses wastewater. Lipid content and fatty acid profile were measured to assess the suitability of microalgal-fungal biomass for biodiesel production. The results showed that the highest biomass yield (4.215 g/L) was obtained when the inoculation ratio of fungi and microalgae was 100. Activities of fungi positive impacted the decolorization of wastewater and the removal of suspended solids. Thus, co-cultivation system had better performance than mono-system of microalgae in the removal of nutrients in wastewater. Analysis of biomass compositions showed that compared with mono-system of microalgae, co-cultivation system produced biomass with higher lipid content (35.2%) and yield microbial cell oil with lower unsaturation degree, potentially increasing the quality of microbial-cell-lipid based biodiesel.
机译:旨在简化收获程序,降低生产成本,提高基于微藻基生物柴油的质量,通过生长小球藻SP提出了一种新的一种新的石油生物量产生和收获方法。 aspergillus sp。在糖蜜废水中。测量脂质含量和脂肪酸谱,以评估微藻 - 真菌生物量用于生物柴油生产的适用性。结果表明,当真菌和微藻的接种比为100时,获得最高生物质产量(4.215g / L)。真菌积极的活性影响废水的脱色和去除悬浮固体。因此,共培养体系比微藻的单系统具有更好的性能,从而在废水中的营养物中除去。生物质组合物的分析表明,与微藻的单颗粒系统相比,共培养系统产生了具有较高脂质含量(35.2%)的生物质,并屈服微生物细胞油,较低的不复足度,潜在增加微生物 - 细胞 - 脂质基础的生物柴油质量。

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