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首页> 外文期刊>Journal of Cleaner Production >Consideration of inclined mixers embedded inside a photobioreactor for microalgae cultivation using computational fluid dynamic and particle image velocimetry measurement
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Consideration of inclined mixers embedded inside a photobioreactor for microalgae cultivation using computational fluid dynamic and particle image velocimetry measurement

机译:考虑使用计算流体动力学和颗粒图像测速仪测量,将倾斜混合器嵌入光生物反应器内进行微藻培养

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Microalgae have been introduced as one of the most promising alternative resource to substitute fossil fuels. Photobioreactors (PBR) are essential apparatus that facilitate cultivation of microalgae. In this study, a new PBR is designed and constructed based on internal mixing of microalgae to increase biomass productivity. The proposed PBR is equipped with hollow tubes which are simultaneously served as static mixer and internal light source to the culture. A PBR with the same geometry and without internal mixers is used as control PBR to evaluate the performance of this new system. The hydrodynamics inside both systems are simulated using 3D computational fluid dynamics (CFD). According to simulation results, the proposed PBR with static mixers has better performance in terms of fluid circulation, gas volume fraction and turbulency compared to the control system. Algal growth in the proposed PBR and the control system are compared through experimental cultivation tests. Microalgae cultured in the proposed PBR has higher growth rate compared to microalgae cultured in the control PBR at the same light intensity. According to experimental results, maximum biomass concentration in the proposed PBR is 100% higher than that in the control one which could be due to the better circulation of culture inside the proposed PBR. Analysis of the biomass obtained from both PBRs shows similar composition and heating value. However, the other properties of these samples such as volatile matter content, ash content and fixed carbon content are slightly different. (C) 2018 Elsevier Ltd. All rights reserved.
机译:微藻已被介绍为替代化石燃料的最有希望的替代资源之一。光生物反应器(PBR)是促进微藻培养的必不可少的设备。在这项研究中,基于微藻的内部混合来设计和构建一种新的PBR,以提高生物量的生产率。建议的PBR配备有空心管,这些空心管同时用作静态混合器和培养物的内部光源。具有相同几何结构且没有内部混频器的PBR用作控制PBR,以评估此新系统的性能。使用3D计算流体动力学(CFD)对两个系统内部的流体动力学进行仿真。根据仿真结果,与控制系统相比,建议的带有静态混合器的PBR在流体循环,气体体积分数和湍流方面具有更好的性能。通过实验培养测试比较拟议的PBR和控制系统中的藻类生长。与在相同光强度下在对照PBR中培养的微藻相比,在拟议PBR中培养的微藻具有更高的生长速率。根据实验结果,提出的PBR中的最大生物量浓度比对照中的最大生物量浓度高100%,这可能是由于提出的PBR内的培养物循环更好。从两种PBR中获得的生物质的分析显示相似的组成和热值。但是,这些样品的其他特性,例如挥发物含量,灰分含量和固定碳含量则略有不同。 (C)2018 Elsevier Ltd.保留所有权利。

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