首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >A new technology of CO2 supplementary for microalgae cultivation on large scale - A spraying absorption tower coupled with an outdoor open runway pond
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A new technology of CO2 supplementary for microalgae cultivation on large scale - A spraying absorption tower coupled with an outdoor open runway pond

机译:大规模微藻栽培二氧化碳辅助新技术 - 一种喷涂吸收塔与户外开放跑道池塘

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An effective CO2 supply system of a spraying absorption tower combined with an outdoor ORWP (open raceway pond) for microalgae photoautotrophic cultivation is developed in this paper. The microalgae yield, productivity and CO2 fixation efficiency were investigated, and compared with those of bubbling method. The maximum yield and productivity of biomass were achieved 0.927 g L-1 and 0.114 g L-1 day(-1), respectively. The fixation efficiency of CO2 by microalgae with the spraying tower reached 50%, whereas only 11.17% for bubbling method. Pure CO2 can be used in the spraying absorption tower, and the flow rate was only about one third of the bubbling cultivation. It shows that this new method of quantifiable control CO2 supply can meet the requirements of the growth of microalgae cultivation on large-scale. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文开发了一种与户外ORWP(开放滚道池)结合户外ORWP(开放滚道池)的有效CO2供应系统。 研究了微藻产量,生产率和CO 2固定效率,并与鼓泡法进行比较。 生物质的最大产量和生产率分别达到0.927g L-1和0.114g L-1天(-1)。 微藻与喷雾塔的CO2的固定效率达到50%,而起泡方法仅为11.17%。 纯二氧化碳可用于喷涂吸收塔,流速仅为鼓泡栽培的三分之一。 它表明,这种可量化的控制二氧化碳供应方法可以满足大规模微藻培养的生长要求。 (c)2016 Elsevier Ltd.保留所有权利。

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