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DRYING CHARACTERISTICS OF A MICROALGAE CONSORTIUM DEVELOPED FOR BIOFUELS PRODUCTION

机译:用于生物燃料生产的微藻类物质的干燥特性

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Microalgae are a promising renewable biomass feedstock that can be used to produce a wide range of bioproducts and biofuels. Drying is a critical step in algal biomass production as it improves shelf life, facilitates easier transport and storage, and enhances the extraction efficiency of lipids and other value-added compounds. This article investigated the thin-layer drying characteristics of a robust consortium of green algae consisting of Scenedesmus bijuga, Chlamydomonas globosa, and Chlorella minutissima grown in an open raceway pond. The microalgae consortium samples were harvested with 20% solids content using a centrifuge and were used for conducting thin-layer drying experiments in a convective oven. The change in moisture with time at each selected drying temperature (30 degrees C, 50 degrees C, 70 degrees C, and 90 degrees C) was recorded until the sample reached equilibrium moisture content. A typical drying curve for a microalgae consortium indicated that microalgae drying occurred at a falling rate, and the rate of drying was limited by diffusion. Three thin-layer drying models (Newton, Page, and Henderson-Pabis) were used to fit the microalgae drying data. The Page model fitted well with the drying data with high R-2 (0.99) and low RMSE (0.02) values. Effective diffiisivity of moisture from the microalgae was determined using the Henderson-Pabis model and increased from 1.94 X 10(-10) to 1.74 x 10(-9) m(2) s(-1) with increase in drying temperature from 30 degrees C to 90 degrees C. The low value of moisture diffusion rate from the microalgae samples may be attributed to shrinkage and case hardening of algae cells at the top drying surface. Both the effective diffusivity and the drying constant had significant dependence on drying temperature and were related with Arrhenius-type relationships. Biochemical compositions and fuel characteristics of the dried microalgae consortium were determined, and the dried microalgae can be an attractive feedstock for biofuel production.
机译:微藻是一种有前途的可再生生物质原料,可用于生产各种生物产品和生物燃料。干燥是藻类生物质生产中的关键步骤,因为它可以延长货架寿命,便于运输和存储,并提高脂质和其他增值化合物的提取效率。本文研究了一个健壮的绿藻财团的薄层干燥特性,该财团由在一个开放的水道池塘中生长的美人鱼,红衣藻和小球藻组成。使用离心机收获微藻财团样品,其固含量为20%,并用于在对流烘箱中进行薄层干燥实验。记录在每个选定的干燥温度(30摄氏度,50摄氏度,70摄氏度和90摄氏度)下水分随时间的变化,直到样品达到平衡水分含量。微藻财团的典型干燥曲线表明,微藻干燥以下降速率发生,并且干燥速率受扩散限制。三种薄层干燥模型(Newton,Page和Henderson-Pabis)用于拟合微藻干燥数据。 Page模型非常适合高R-2(0.99)和低RMSE(0.02)的干燥数据。使用Henderson-Pabis模型确定微藻中水分的有效扩散系数,并随着干燥温度从30度的增加从1.94 X 10(-10)增加到1.74 x 10(-9)m(2)s(-1) C到90摄氏度。来自微藻样品的水分扩散率值较低,可能归因于顶部干燥表面藻类细胞的收缩和表面硬化。有效扩散率和干燥常数均与干燥温度显着相关,并且与阿伦尼乌斯型关系有关。确定了干燥的微藻财团的生化组成和燃料特性,并且干燥的微藻可以是用于生物燃料生产的有吸引力的原料。

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