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AN IMAGE PROCESSING TECHNIQUE TO RECOVER THE BIOMASS CONCENTRATION IN ALGAE BIOFILM PHOTOBIOREACTORS

机译:藻类生物膜光生物反应器中生物质浓度的图像处理技术

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This paper reports a simple technique based on multispec-tral image processing that can be used to recover the biomass concentration of an algal biofilm photobioreactor. Monitoring the biomass concentration of a culture is critical in achieving successful algae cultivation for biofuel or food supplement production. In particular, non-invasive and rapid detection techniques that can provide estimates of the biomass concentration can significantly aid in providing delay-free process control feedback in large scale cultivation platforms. In this technique, the digital images of the biofilms of the cyanobacteria Anabaena variabilis were obtained under consistent lighting conditions and analyzed as a function of their biomass content. The image analysis was carried out using a custom Matlab code where the red, green and blue content of the images were correlated with the biomass concentration. The obtained correlation was consistent across biofilms generated from different stock cultures of varying culture age. Challenges facing application of the image processing technique for scaled up outdoor photobioreactors under various lighting conditions and color backgrounds were discussed.
机译:本文报道了一种基于多光谱图像处理的简单技术,可用于恢复藻类生物膜光生物反应器的生物质浓度。监测培养物中生物量的浓度对于成功完成藻类培养以生产生物燃料或食品补充品至关重要。特别地,可以提供生物质浓度估计值的非侵入性和快速检测技术可以显着帮助在大规模栽培平台中提供无延迟的过程控制反馈。在该技术中,在一致的光照条件下获得了蓝藻鱼腥藻生物膜的数字图像,并对其生物量含量进行了分析。使用自定义的Matlab代码进行图像分析,其中图像的红色,绿色和蓝色含量与生物量浓度相关。所获得的相关性在不同培养年龄的不同原种培养物产生的生物膜之间是一致的。讨论了在各种光照条件和彩色背景下将图像处理技术应用于大型户外光生物反应器所面临的挑战。

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