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浮游生物的力量:藻类生物多样性对生物原油生产和稳定性的影响。

Power of Plankton: Effects of Algal Biodiversity on Biocrude Production and Stability.

机构信息

Department of Aquatic Ecology, Eawag (Swiss Federal Institute of Aquatic Science and Technology) , BU-G11 Überlandstrasse 133, 8600 Dübendorf, Switzerland.

School of Natural Resources and Environment, University of Michigan , 1556 Dana Building, 440 Church Street, Ann Arbor, Michigan 48109-1041, United States.

出版信息

Environ Sci Technol. 2016 Dec 6;50(23):13142-13150. doi: 10.1021/acs.est.6b03256. Epub 2016 Nov 21.

Abstract

Algae-derived biocrude oil is a possible renewable energy alternative to fossil fuel based crude oil. Outdoor cultivation in raceway ponds is estimated to provide a better return on energy invested than closed photobioreactor systems. However, in these open systems, algal crops are subjected to environmental variation in temperature and irradiance, as well as biotic invasions which can cause costly crop instabilities. In this paper, we used an experimental approach to investigate the ability of species richness to maximize and stabilize biocrude production in the face of weekly temperature fluctuations between 17 and 27 °C, relative to a constant-temperature control. We hypothesized that species richness would lead to higher mean biocrude production and greater stability of biocrude production over time in the variable temperature environment. Counter to our hypothesis, species richness tended to cause a decline in mean biocrude production, regardless of environmental temperature variation. However, biodiversity did have stabilizing effects on biocrude production over time in the variable temperature environment and not in the constant temperature environment. Altogether, our results suggest that when the most productive and stable monoculture is unknown, inoculating raceway ponds with a diverse mixture of algae will tend to ensure stable harvests over time.

摘要

藻类衍生的生物原油是一种可能替代基于化石燃料的原油的可再生能源。与封闭式光生物反应器系统相比,在跑道池塘中进行户外养殖预计将获得更高的投资能源回报。然而,在这些开放式系统中,藻类作物会受到温度和光照的环境变化以及生物入侵的影响,这可能导致昂贵的作物不稳定。在本文中,我们使用实验方法来研究物种丰富度在 17 至 27°C 之间每周温度波动的情况下相对于恒温控制,是否有能力最大化和稳定生物原油的生产。我们假设物种丰富度将导致更高的平均生物原油产量,并随着时间的推移增加生物原油产量的稳定性。与我们的假设相反,无论环境温度变化如何,物种丰富度往往会导致平均生物原油产量下降。然而,生物多样性确实对可变温度环境中的生物原油产量具有稳定作用,而对恒温环境则没有。总的来说,我们的结果表明,当最具生产力和最稳定的单培体未知时,在跑道池塘中接种多种藻类混合物将有助于确保随着时间的推移稳定收获。

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