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综合微藻光合速率模型作为光生物反应器培养条件的函数。

Comprehensive model of microalgae photosynthesis rate as a function of culture conditions in photobioreactors.

机构信息

3Nano-SAE Research Centre, Faculty of Physics, University of Bucharest, Bucharest, Romania.

出版信息

Appl Microbiol Biotechnol. 2013 Sep;97(17):7627-37. doi: 10.1007/s00253-013-5035-2. Epub 2013 Jun 23.

Abstract

In this paper, the influence of culture conditions (irradiance, temperature, pH, and dissolved oxygen) on the photosynthesis rate of Scenedesmus almeriensis cultures is analyzed. Short-run experiments were performed to study cell response to variations in culture conditions, which take place in changing environments such as outdoor photobioreactors. Experiments were performed by subjecting diluted samples of cells to different levels of irradiance, temperature, pH, and dissolved oxygen concentration. Results demonstrate the existence of photoinhibition phenomena at irradiances higher than 1,000 μE/m(2) s; in addition to reduced photosynthesis rates at inadequate temperatures or pH-the optimal values being 35 °C and 8, respectively. Moreover, photosynthesis rate reduction at dissolved oxygen concentrations above 20 mg/l is demonstrated. Data have been used to develop an integrated model based on considering the simultaneous influence of irradiance, temperature, pH, and dissolved oxygen. The model fits the experimental results in the range of culture conditions tested, and it was validated using data obtained by the simultaneous variation of two of the modified variables. Furthermore, the model fits experimental results obtained from an outdoor culture of S. almeriensis performed in an open raceway reactor. Results demonstrate that photosynthetic efficiency is modified as a function of culture conditions, and can be used to determine the proximity of culture conditions to optimal values. Optimal conditions found (T = 35 °C, pH = 8, dissolved oxygen concentration <20 mg/l) allows to maximize the use of light by the cells. The developed model is a powerful tool for the optimal design and management of microalgae-based processes, especially outdoors, where the cultures are subject to daily culture condition variations.

摘要

本文分析了文化条件(辐照度、温度、pH 值和溶解氧)对 Scenedesmus almeriensis 培养物光合作用速率的影响。进行了短期实验以研究细胞对培养条件变化的反应,这些变化发生在户外光生物反应器等变化的环境中。通过将细胞稀释样品暴露在不同水平的辐照度、温度、pH 值和溶解氧浓度下进行实验。结果表明,在辐照度高于 1000 μE/m2s 时存在光抑制现象;在温度或 pH 值不足的情况下,光合作用速率降低,最佳值分别为 35°C 和 8。此外,还证明了在溶解氧浓度高于 20mg/l 时光合作用速率降低。数据用于开发一个综合模型,该模型基于同时考虑辐照度、温度、pH 值和溶解氧的影响。该模型在测试的培养条件范围内拟合实验结果,并使用同时改变两个修改变量之一获得的数据进行了验证。此外,该模型还拟合了在开放式跑道反应器中进行的 S. almeriensis 室外培养的实验结果。结果表明,光合作用效率会随培养条件的变化而变化,可以用来确定培养条件与最佳值的接近程度。找到的最佳条件(T=35°C,pH=8,溶解氧浓度<20mg/l)允许细胞最大限度地利用光。所开发的模型是优化基于微藻的工艺设计和管理的有力工具,特别是在户外,那里的培养物每天都会受到培养条件变化的影响。

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