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一种新的生物能量学和热力学方法,用于在不同的光生物反应器中和不同的光照条件下分批培养节旋藻(螺旋藻)。

A new bioenergetic and thermodynamic approach to batch photoautotrophic growth of Arthrospira (Spirulina) platensis in different photobioreactors and under different light conditions.

机构信息

Biological Science Center, Federal University of Pernambuco, Av. Prof. Moraes Rego 1235, Cidade Universitária, 50670-420 Recife, PE, Brazil; Department of Civil, Chemical and Environmental Engineering (DICCA), University of Genoa, Via Opera Pia 15, 16145 Genoa, Italy.

Department of Civil, Chemical and Environmental Engineering (DICCA), University of Genoa, Via Opera Pia 15, 16145 Genoa, Italy.

出版信息

Bioresour Technol. 2016 May;207:220-8. doi: 10.1016/j.biortech.2016.01.128. Epub 2016 Feb 6.

Abstract

Photobioreactor configuration, mode of operation and light intensity are known to strongly impact on cyanobacteria growth. To shed light on these issues, kinetic, bioenergetic and thermodynamic parameters of batch Arthrospira platensis cultures were estimated along the time at photosynthetic photon flux density (PPFD) of 70μmolm(-2)s(-1) in different photobioreactors with different surface/volume ratio (S/V), namely open pond (0.25cm(-1)), shaken flask (0.48cm(-1)), horizontal photobioreactor (HoP) (1.94cm(-1)) and helicoidal photobioreactor (HeP) (3.88cm(-1)). Maximum biomass concentration and productivity remarkably increased with S/V up to 1.94cm(-1). HoP was shown to be the best-performing system throughout the whole runs, while HeP behaved better only at the start. Runs carried out in HoP increasing PPFD from 40 to 100μmolm(-2)s(-1) revealed a progressive enhancement of bioenergetics and thermodynamics likely because of favorable light distribution. HoP appeared to be a promising configuration to perform high-yield indoor cyanobacterial cultures.

摘要

光生物反应器的配置、操作方式和光强已知会强烈影响蓝藻的生长。为了阐明这些问题,在光合光子通量密度 (PPFD) 为 70μmolm(-2)s(-1) 的不同光生物反应器中,对分批培养的 Arthrospira platensis 的动力学、生物能学和热力学参数进行了估算,这些光生物反应器具有不同的表面积/体积比 (S/V),分别为开放式池塘 (0.25cm(-1))、摇瓶 (0.48cm(-1))、水平光生物反应器 (HoP) (1.94cm(-1)) 和螺旋光生物反应器 (HeP) (3.88cm(-1))。最大生物量浓度和生产力随着 S/V 增加到 1.94cm(-1)而显著提高。在整个运行过程中,HoP 被证明是性能最好的系统,而 HeP 仅在开始时表现更好。在 HoP 中进行的从 40 到 100μmolm(-2)s(-1)增加 PPFD 的运行显示,生物能学和热力学逐渐增强,这可能是由于有利的光分布。HoP 似乎是进行高产室内蓝藻培养的有前途的配置。

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