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阳光利用效率:管式与平板光生物反应器

Efficiency of sunlight utilization: tubular versus flat photobioreactors.

作者信息

Tredici MR, Zittelli GC

机构信息

Dipartimento di Scienze e Tecnologie Alimentari e Microbiologiche dell'Universita di Firenze and Centro di Studio dei Microrganismi Autotrofi del CNR, P. le delle Cascine 27, I-50144 Firenze, Italy.

出版信息

Biotechnol Bioeng. 1998 Jan 20;57(2):187-97. doi: 10.1002/(sici)1097-0290(19980120)57:2<187::aid-bit7>3.0.co;2-j.

Abstract

The light saturation effect imposes a serious limitation on the efficiency with which solar energy can be utilized in outdoor algal cultures. One solution proposed to reduce the intensity of incident solar radiation and overcome the light saturation effect is "spatial dilution of light" (i.e., distribution of the impinging photon flux on a greater photosynthetic surface area), but consistent experimental data supporting a significant positive influence of spatial light dilution on the productivity and the photosynthetic efficiency of outdoor algal cultures have never been reported. We used a coiled tubular reactor and compared a near-horizontal straight tubular reactor and a near-horizontal flat panel in outdoor cultivation of the cyanobacterium Arthrospira (Spirulina) platensis under defined operating conditions for optimum productivity. The photosynthetic efficiency achieved in the tubular systems was significantly higher because their curved surface "diluted" the impinging solar radiation and thus reduced the light saturation effect. This interpretation was supported by the results of experiments carried out in the laboratory under continuous artificial illumination using both a flat and a curved chamber reactor. The study also showed that, when the effect of light saturation is eliminated or reduced, productivity and solar irradiance are linearly correlated even at very high diurnal irradiance values, and supported findings that outdoor algal cultures are light-limited even during bright summer days. It was also observed that, besides improving the photosynthetic efficiency of the culture, spatial dilution of light also leads to higher growth rates and lowers the cellular content of accessory pigments; that is, it reduces mutual shading in the culture. The inadequacy of using volumetric productivity as the sole criterion for comparing reactors of different surface-to-volume ratio and of the areal productivity for evaluating the performance of elevated photobioreactors operated outdoors is stressed; it is furthermore suggested that the photosynthetic efficiency achieved by the culture also be calculated to provide a suitable parameter for comparison of different algal cultivation systems operated under similar climatic conditions. Copyright 1998 John Wiley & Sons, Inc.

摘要

光饱和效应严重限制了室外藻类培养中太阳能的利用效率。为了降低入射太阳辐射强度并克服光饱和效应,有人提出了“光的空间稀释”方案(即将入射光子通量分布在更大的光合表面积上),但从未有一致的实验数据表明光的空间稀释对室外藻类培养的生产力和光合效率有显著的积极影响。我们使用了一个盘管式反应器,并在确定的最佳生产力操作条件下,将一个近水平直管式反应器和一个近水平平板在室外培养蓝藻钝顶螺旋藻(螺旋藻)时进行了比较。管式系统中实现的光合效率显著更高,因为其曲面“稀释”了入射太阳辐射,从而降低了光饱和效应。在实验室使用平板和曲面腔室反应器在连续人工光照下进行的实验结果支持了这一解释。该研究还表明,当消除或降低光饱和效应时,即使在非常高的日辐照度值下,生产力和太阳辐照度也呈线性相关,并支持了室外藻类培养即使在晴朗的夏日也受光照限制的发现。还观察到,除了提高培养物的光合效率外,光的空间稀释还会导致更高的生长速率,并降低辅助色素的细胞含量;也就是说,它减少了培养物中的相互遮荫。强调了仅使用体积生产力作为比较不同表面积与体积比反应器的唯一标准以及使用面积生产力来评估室外运行的高架光生物反应器性能的不足之处;此外,建议计算培养物实现的光合效率,以提供一个合适的参数来比较在相似气候条件下运行的不同藻类培养系统。版权所有1998约翰威立父子公司。

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