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浅室外水槽中微藻生产的优化

Optimization of microalgal production in a shallow outdoor flume.

作者信息

Laws E A, Taguchi S, Hirata J, Pang L

机构信息

University of Hawaii, Department of Oceanography, 1000 Pope Road, Honolulu, Hawaii 96822, and Hawaii Institute of Marine Biology, P.O. Box 1346, Kaneohe, Hawaii 96744.

出版信息

Biotechnol Bioeng. 1988 Jul 5;32(2):140-7. doi: 10.1002/bit.260320204.

Abstract

The marine diatom Cyclotella cryptica was grown over a period of 13 months in a 48-m(2) shallow outdoor flume. The use of foil arrays at intervals of 1.2 m to effect systematic vertical mixing in the flume was found to significantly enhance microalgal production (p = 0.006). Average photosynthetic efficiencies (based on visible irradiance) with and without the foil arrays in place were 9.6 +/- 0.8 and 7.5 +/- 0.5% (+/-95% confidence intervals), respectively. A cost-benefit analysis indicated that the foil arrays were cost-effective if the value of the algae exceeded about $2.28 kg(1) of ash-free dry weight (AFDW). Parallel experiments performed in four 9.2-m(2) flumes showed that production was maximized when the cells were grown on a 2-day batch cycle between harvests rather than on a 1- or 3-day batch cycle. The optimum initial concentration (immediately after harvesting) of the algae was negatively correlated with the time interval between harvests and ranged from approximately 39 g AFDW/m(3) on a 3-day cycle to 213 g AFDW/m(3) on a 1-day cycle. The increase in production resulting from growth on a 2-day rather than a 1-day batch cycle was about 19% and was statistically significant at p = 0.0003. Growth of C. cryptica over a total period of 122 days during the 13-month study in the 48-m(2) flume under near-optimal conditions (2-day batch cycle, initial concentration 155 g AFDW/m(3)) resulted in an average production rate (+/-95% confidence interval) of 29.7 +/- 2.7 g AFDW/m(2) d.

摘要

海洋硅藻小环藻(Cyclotella cryptica)在一个48平方米的室外浅水槽中培养了13个月。研究发现,以1.2米的间隔使用箔阵列在水槽中进行系统的垂直混合,可显著提高微藻产量(p = 0.006)。有箔阵列和无箔阵列时的平均光合效率(基于可见光辐照度)分别为9.6±0.8%和7.5±0.5%(±95%置信区间)。成本效益分析表明,如果藻类价值超过约2.28美元/千克无灰干重(AFDW),则箔阵列具有成本效益。在四个9.2平方米的水槽中进行的平行实验表明,细胞在收获之间以2天批次循环生长时产量最高,而不是1天或3天批次循环。藻类的最佳初始浓度(收获后立即)与收获间隔时间呈负相关,范围从3天循环时的约39克AFDW/立方米到1天循环时的213克AFDW/立方米。与1天批次循环相比,2天批次循环生长导致的产量增加约为19%,在p = 0.0003时具有统计学显著性。在13个月的研究期间,在48平方米的水槽中,在接近最佳条件下(2天批次循环,初始浓度155克AFDW/立方米),小环藻在122天的总生长期间,平均生产率(±95%置信区间)为29.7±2.7克AFDW/平方米·天。

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