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Biomass and Astaxanthin Productivities of Haematococcus pluvialis in an Angled Twin-Layer Porous Substrate Photobioreactor: Effect of Inoculum Density and Storage Time

机译:成角度双层多孔底物光生物生物反应器中Haematococcus Pluvialis的生物质和虾青素产物:接种物密度和储存时间的影响

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The microalga Haematococcus pluvialis is mainly cultivated in suspended systems for astaxanthin production. Immobilized cultivation on a Twin-Layer porous substrate photobioreactor (TL-PSBR) has recently shown promise as an alternative approach. In Vietnam, a TL-PSBR was constructed as a low-angle (15 °) horizontal system to study the cultivation of H. pluvialis for astaxanthin production. In this study, the biomass and astaxanthin productivities and astaxanthin content in the dry biomass were determined using different initial biomass (inoculum) densities (from 2.5 to 10 g dry weight m ?2 ), different storage times of the initial biomass at 4 °C (24, 72, 120 and 168 h) and different light intensities (300–1000 μmol photons m ?2 s ?1 ). The optimal initial biomass density at light intensities between 400–600 μmol photons ?2 s ?1 was 5–7.5 g m ?2 . Algae stored for 24 h after harvest from suspension for immobilization on the TL-PSBR yielded the highest biomass and astaxanthin productivities, 8.7 g m ?2 d ?1 and 170 mg m ?2 d ?1 , respectively; longer storage periods decreased productivity. Biomass and astaxanthin productivities were largely independent of light intensity between 300–1000 μmol photons m ?2 s ?1 but the efficiency of light use per mole photons was highest between 300–500 μmol photons m ?2 s ?1 . The astaxanthin content in the dry biomass varied between 2–3% (w/w). Efficient supply of CO 2 to the culture medium remains a task for future improvements of angled TL-PSBRs.
机译:Microalga Haematococcus Pluvialis主要在悬浮的虾青素生产系统中培养。最近将希望作为一种替代方法所示的对双层多孔基质光生物反应器(TL-PSBR)的固定化培养。在越南,TL-PSBR被构造为低角度(15°)水平系统,以研究夏普兰素生产的H.Pluvialis的培养。在该研究中,使用不同的初始生物质(接种物)密度(从2.5-10g干重M 2),在4℃下,在4°C下的初始生物质的不同储存次数测定干生物质中的生物质和虾青素的产物和虾青素含量。 (24,72,120和168h)和不同的光强度(300-1000μmol光子m≤2s≤1)。在400-600μmol光子的光强度下的最佳初始生物质密度为400-600μmol≤2s≤1为5-7.5gm≤2。在从悬浮液中储存24小时以固定在TL-PSBR上的藻类产生最高生物质和虾青素产量,8.7gm≤2d≤1和170mgm≤2d≤1。较长的储存期降低了生产率。生物质和虾青素产素在很大程度上与300-1000μmol光子M = 2的光强度无关,但每摩尔光子的光使用效率在300-500μmol光子M = 2之间最高。干生物质中的虾青素含量在2-3%(w / w)之间变化。高效供应CO 2到培养基仍然是未来改进成角度TL-PSBRS的任务。

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