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具有顺时针/逆时针叶片的自旋转螺旋桨可产生螺旋流场,以改善传质并促进微藻生长。

Self-rotary propellers with clockwise/counterclockwise blades create spiral flow fields to improve mass transfer and promote microalgae growth.

机构信息

State Key Laboratory of Clean Energy Utilization, Zhejiang University, Hangzhou 310027, China.

State Key Laboratory of Clean Energy Utilization, Zhejiang University, Hangzhou 310027, China.

出版信息

Bioresour Technol. 2019 Aug;286:121384. doi: 10.1016/j.biortech.2019.121384. Epub 2019 Apr 27.

Abstract

In this work, self-rotary propellers (SRPs) with clockwise/counterclockwise blades were investigated to create spiral flow fields without external power to strengthen gas-liquid mixing and promote microalgal growth in an open raceway pond. The rotational flow around the propellers and spiral flow between the propellers generated extensive wall shear stress in three dimensions. Four-clockwise blades on the propellers exerted better mixing than three-counterclockwise blades. The bubble generation diameter was reduced by 69% and the mass transfer coefficient increased by 49% when the propeller diameter was increased from 32 to 60 mm. The photochemical efficiency (φPS) of Arthrospira platensis cells was enhanced by 25%, while the helix pitch and trichome lengths were enlarged by 7-16%. Self-rotary propellers (60 mm diameter) with four-clockwise blades enhanced the growth rate of A. platensis biomass by 35% compared to that in an unmodified raceway pond without propellers.

摘要

在这项工作中,研究了具有顺时针/逆时针叶片的自旋转推进器 (SRP),以在无外部动力的情况下创建螺旋流场,从而加强气液混合并促进开放式跑道池塘中的微藻生长。螺旋桨周围的旋转流和螺旋桨之间的螺旋流在三维空间中产生了广泛的壁面剪切应力。与三个逆时针叶片相比,四个顺时针叶片的推进器产生了更好的混合效果。当螺旋桨直径从 32 毫米增加到 60 毫米时,气泡生成直径减小了 69%,传质系数增加了 49%。蓝藻细胞的光化学效率 (φPS) 提高了 25%,同时螺旋节距和藻丝长度增加了 7-16%。与没有推进器的未改性跑道池塘相比,直径为 60 毫米的具有四个顺时针叶片的自旋转推进器 (SRP) 使蓝藻生物量的生长速度提高了 35%。

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