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调整光照和黑暗周期可以优化在光生物反应器中生长的藻类的光合效率。

Adjusted light and dark cycles can optimize photosynthetic efficiency in algae growing in photobioreactors.

机构信息

Dipartimento di Ingegneria Industriale DII, Università di Padova, Padova, Italy.

出版信息

PLoS One. 2012;7(6):e38975. doi: 10.1371/journal.pone.0038975. Epub 2012 Jun 20.

Abstract

Biofuels from algae are highly interesting as renewable energy sources to replace, at least partially, fossil fuels, but great research efforts are still needed to optimize growth parameters to develop competitive large-scale cultivation systems. One factor with a seminal influence on productivity is light availability. Light energy fully supports algal growth, but it leads to oxidative stress if illumination is in excess. In this work, the influence of light intensity on the growth and lipid productivity of Nannochloropsis salina was investigated in a flat-bed photobioreactor designed to minimize cells self-shading. The influence of various light intensities was studied with both continuous illumination and alternation of light and dark cycles at various frequencies, which mimic illumination variations in a photobioreactor due to mixing. Results show that Nannochloropsis can efficiently exploit even very intense light, provided that dark cycles occur to allow for re-oxidation of the electron transporters of the photosynthetic apparatus. If alternation of light and dark is not optimal, algae undergo radiation damage and photosynthetic productivity is greatly reduced. Our results demonstrate that, in a photobioreactor for the cultivation of algae, optimizing mixing is essential in order to ensure that the algae exploit light energy efficiently.

摘要

藻类生物燃料作为可再生能源极具吸引力,可以替代部分化石燃料,但仍需要大量研究来优化生长参数,以开发具有竞争力的大规模养殖系统。对生产力有重要影响的一个因素是光的可用性。光能完全支持藻类生长,但如果光照过量,就会导致氧化应激。在这项工作中,研究了在平板光生物反应器中,光照强度对盐藻生长和产脂能力的影响。该光生物反应器的设计目的是最小化细胞自遮蔽效应。通过连续光照和不同频率的明暗交替两种方式研究了不同光照强度的影响,这两种方式模拟了由于混合导致的光生物反应器中光照的变化。结果表明,只要有暗周期让光合作用装置的电子传递体重新氧化,盐藻就能有效地利用高强度的光。如果明暗交替不理想,藻类就会受到辐射损伤,光合作用生产力会大大降低。我们的研究结果表明,在用于藻类培养的光生物反应器中,为了确保藻类有效地利用光能,优化混合是至关重要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1780/3380057/637313d25ffb/pone.0038975.g001.jpg

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