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基于 pH 值数据的光合活性在线监测评估微藻培养。

On-line monitoring of photosynthetic activity based on pH data to assess microalgae cultivation.

机构信息

CALAGUA - Unidad Mixta UV-UPV, Departament d'Enginyeria Química, Universitat de València, Avinguda de la Universitat s/n, 46100, Burjassot, Valencia, Spain.

CALAGUA - Unidad Mixta UV-UPV, Departament d'Enginyeria Química, Universitat de València, Avinguda de la Universitat s/n, 46100, Burjassot, Valencia, Spain.

出版信息

J Environ Manage. 2020 Dec 15;276:111343. doi: 10.1016/j.jenvman.2020.111343. Epub 2020 Sep 15.

Abstract

Microalgae performance of outdoor cultivation systems is influenced by environmental and operating dynamics. Monitoring and control systems are needed to maximise biomass productivity and nutrient recovery. The goal of this work was to corroborate that pH data could be used to monitor microalgae performance by means of data from an outdoor membrane photobioreactor (MPBR) plant. In this system, microalgae photosynthetic activity was favoured over other physical and biological processes, so that the pH data dynamics was theoretically related to the microalgae carbon uptake rate (CUR). Short- and long-term continuous operations were tested to corroborate the relationship between the first derivate of pH data dynamics (pH') and microalgae photosynthetic activity. Short-term operations showed a good correlation between gross pH' values and MPBR performance. An indicator of the maximum daily average microalgae activity was assessed by a combination of on-line pH' measurements obtained in the long-term and a microalgae growth kinetic model. Both indicators contributed to the development of advanced real-time monitoring and control systems to optimise microalgae cultivation technology.

摘要

室外培养系统中微藻的性能受环境和操作动态的影响。需要监测和控制系统来最大程度地提高生物量生产力和营养物质回收。这项工作的目的是证实可以通过室外膜光生物反应器(MPBR)工厂的数据来使用 pH 值数据来监测微藻的性能。在该系统中,微藻的光合作用活动优先于其他物理和生物过程,因此 pH 值数据动态在理论上与微藻的碳吸收速率(CUR)相关。进行了短期和长期的连续运行测试,以证实 pH 值数据动态(pH')的一阶导数与微藻光合作用活性之间的关系。短期运行表明总 pH'值与 MPBR 性能之间具有良好的相关性。通过在线 pH'测量的长期组合以及微藻生长动力学模型,评估了最大日平均微藻活性的指示。这两个指标都有助于开发先进的实时监测和控制系统,以优化微藻培养技术。

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