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Cultivation of algal biofilm using different lignocellulosic materials as carriers

机译:使用不同的木质纤维素材料作为载体培养藻类生物膜

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BackgroundAlgal biofilm technology is recently supposed to be a promising method to produce algal biomass as the feedstock for the production of biofuels. However, the carrier materials currently used to form algal biofilm are either difficult to be obtained at a low price or undurable. Commercialization of the biofilm technology for algal biomass production extremely requires new and inexpensive materials as biofilm carriers with high biomass production performances. ResultsFour types of lignocellulosic materials were investigated to evaluate their performance of acting as carriers for algal cells attachment and the relevant effects on the algal biomass production in this study. The cultivation of algal biofilm was processed in a self-designed flat plate photo-bioreactor. The biofilm production and chemical composition of the harvested biomass were determined. The surface physics properties of the materials were examined through a confocal laser-scanning microscopy. Algal biomass production varied significantly with the variation of the carriers ( P ?2?day?1 after 16-day cultivation. In addition, 20.10–23.20% total lipid, 30.35–36.73% crude proteins, and 20.29–25.93% carbohydrate were achieved from the harvested biomasses. Biomass productivity increased linearly as the increase of surface roughness, and Wenzel’s roughness factor of the tested materials, and surface roughness might significantly affect the biomass production through the size of surface morphology and the area of surface ( P ConclusionsThe results showed that lignocellulosic materials can be efficient carriers for low-cost cultivation of algal biofilm and the enhancement of biomass productivity.
机译:背景技术近来,藻类生物膜技术被认为是生产藻类生物质作为生产生物燃料的原料的有前途的方法。然而,当前用于形成藻类生物膜的载体材料难以以低价获得或难以持久。用于藻类生物质生产的生物膜技术的商业化非常需要新型且廉价的材料作为具有高生物质生产性能的生物膜载体。结果本研究对四种类型的木质纤维素材料进行了研究,以评估其作为藻类细胞附着载体的性能以及对藻类生物量产生的相关影响。藻类生物膜的培养是在自行设计的平板光生物反应器中进行的。测定收获的生物质的生物膜产量和化学组成。通过共聚焦激光扫描显微镜检查了材料的表面物理性质。培养16天后,藻类生物量的产生随载体的变化而显着变化(P?2 ?day ?1 ),此外,总脂质的20.10–23.20%,30.35–36.73%从收获的生物质中获得粗蛋白和20.29–25.93%的碳水化合物,生物质生产率随着表面粗糙度的增加和被测材料的Wenzel粗糙度因子的增加而线性增加,表面粗糙度可能会通过表面大小显着影响生物量的产生结论表明,木质纤维素材料可以作为低成本培养藻类生物膜和提高生物量生产力的有效载体。

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