首页> 外文期刊>Journal of Applied Phycology >Bicarbonate-based carbon capture and algal production system on ocean with floating inflatable-membrane photobioreactor
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Bicarbonate-based carbon capture and algal production system on ocean with floating inflatable-membrane photobioreactor

机译:絮凝碳酸氢盐的碳捕获和藻类生产系统,具有浮动充气膜光学反应器的海洋

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This study aims to develop a low-cost microalgae culture system which uses a simple closed vessel as photobioreactor to save manufacturing cost, waves for mixing to save energy cost, and high concentration of bicarbonate for carbon supply to avoid the high cost of CO2 -bubbling pipeline construction on the ocean as well as to control pH by buffering the effect of bicarbonate/carbonate. To test this idea, the alkalihalophilic cyanobacterium Euhalothece sp. was cultured with 1.0 M NaHCO3 in small-scale floating photobioreactors (PBRs) on 10-cm-high artificial waves at first. The final biomass concentration was up to 0.91 and 1.47 g L-1 for indoor and outdoor cultures, respectively. However, the recorded dissolved oxygen (DO) was occasionally over-saturated (& 500% of air saturation), indicating mass transfer problem. k(L)a in these PBRs with different culture depth was measured then, and the results showed great variation, from 0.13 to 4.87 h(-1). At the scale of 1.0 m(2). this floating PBR was made with low-cost membrane and inflatable design. It was placed on the ocean surface and mixed with natural waves. Biomass concentration of 1.63 g L-1 and productivity of 8.27 g m(-2) day(-1) were obtained in this culture. With these results, the feasibility of a low-cost microalgae culture system was proven, which could systematically reduce the cost of photobioreactor manufacturing, operating, and maintenance.
机译:本研究旨在开发一种低成本的微藻培养系统,它使用简单的闭合容器作为光生物反应器,以节省制造成本,用于节省能源成本的波浪,以及用于碳源的高碳酸氢盐,以避免CO2 -bbumbling的高成本通过缓冲碳酸氢盐/碳酸酯的效果,对海洋管道建设以及控制pH。为了测试这个想法,碱性嗜酸性蓝杆菌Euhalothece sp。首先在小规模的浮动光生物反应器(PBR)中用1.0m NaHCO 3培养。对于室内和室外培养,最终的生物质浓度可达0.91和1.47g L-1。然而,记录的溶解氧(DO)偶尔过饱和(& 500%的空气饱和度),表明传质问题。然后测量这些具有不同培养深度的PBR中的K(L)A,结果显示出很大的变化,从0.13-4.87 h(-1)。以1.0米(2)的等级。该浮动PBR是用低成本膜和充气设计制成的。它被放在海洋表面上并与自然波混合。在该培养物中获得了1.63g L-1的生物质浓度和8.27g m(-2)天(-1)的生产率。通过这些结果,证明了低成本微藻培养系统的可行性,可系统地降低了光生物反应器制造,操作和维护的成本。

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