微藻培养及其他生化过程中RPT校准需求的评估

Laith S. Sabri, A. Sultan, M. Al-Dahhan
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引用次数: 7

摘要

利用先进的放射性粒子跟踪(RPT)技术,对微藻分体式光生物反应器内的局部速度场和湍流参数进行三维测量,对于重建粒子的瞬时位置和校正计数至关重要。校准实验应在与实际试验相同的操作条件下进行。文献中还没有研究采用校准曲线操作来解释微藻生长对培养基物理性质的影响。这件作品使用了一个直径5.0英寸(12.7厘米)、高59英寸(150厘米)的有机玻璃分体柱,并用有机玻璃板将柱分成两个相等的区域。结果表明,通过不同的生长步骤,伽马射线(校准系统)的计数没有明显变化,那么实验表明,在该微生物系统下,即使培养基变得高密度,一个校准实验和一个同位素示踪粒子也足以进行RPT操作。这些知识和发现将有助于在培养过程中减少RPT实验(包括空气-水微藻细胞系统)的成本和工作量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of RPT calibration need during microalgae culturing and other biochemical processes
The calibration maps relating counts with the position of the radioactive particle is essential to reconstruct the instantaneous positions of the particle and consequently measurements in a 3D manner of the local velocity field and turbulent parameters in the split photobioreactor for the microalgae system by using advanced radioactive particle tracking (RPT) technique. The calibration experiments should perform at the same operating conditions of an actual test. No studies in literature account for the effect of the growth of microalgae on the physical properties of the culturing medium by employing the calibration curves operations. This work used a Plexiglas split column of 5.0 inch (12.7cm) diameter and 59 inches (150 cm) high with a Plexiglas plate that divides the column into two equal areas. As a result, there is no significant change in counts of gamma ray (calibration system) through deference growth steps, then the experiments show that the one calibration experiment and one isotope tracer particle are enough to perform RPT operations even if the medium of the culturing becomes highly dense at this microorganism system. This knowledge and findings will help to reduce the cost and the efforts of the RPT experiments including air-water-microalgae cell systems during the culturing process.
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