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首页> 外文期刊>Bioresources and Bioprocessing >Plastic bag as horizontal photobioreactor on rocking platform driven by water power for culture of alkalihalophilic cyanobacterium
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Plastic bag as horizontal photobioreactor on rocking platform driven by water power for culture of alkalihalophilic cyanobacterium

机译:塑料袋作为水动力驱动的摇摆平台上水平光生物反应器的培养,用于嗜盐嗜盐细菌的培养

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Background: Mixing in traditional algae culture system consumes intensive electricity. This should be replaced by nature force to reduce energy cost and, more importantly, to realize positive energy balance of algal biofuel production. This study aims to develop a horizontal photobioreactor, in which mixing can be provided with rocking movement driven by nature force. Results: Simple boxes were used as small-scale horizontal photobioreactors on a rocking platform for culture of alkalihalophilic Euhalothece sp. ZM001. There was no CO_2 gas bubbling since 1.0 M NaHCO_3 supplied sufficient inorganic carbon in it. Effect of culture depth, rocking cycle, and light intensity to algal biomass production, pH change, and DO accumulation were investigated in this system. Biomass concentration of 2.73 g/L was achieved in culture with 2.5 cm depth, and maximum productivity of 17.06 g/m~2/day was obtained in culture with 10 cm depth. k_L a in PBR with different culture depths and rocking cycles was measured, and it was from 0.57 to 33.49 h~(-1), showing great variation. To test this system at large scale, a plastic bag with a surface area of 1 m~2 was placed on a rocking platform driven by water power, and it resulted in a biomass concentration of 1.88 g/L. Conclusion: These results proved feasibility of a novel photobioreactor system driven by nature force, as well as low cost of manufacturing, and easy scaling-up.
机译:背景:在传统的藻类养殖系统中混合会消耗大量的电力。应该用自然力量代替它,以减少能源成本,更重要的是,要实现藻类生物燃料生产的积极能量平衡。这项研究的目的是开发一种卧式光生物反应器,在其中可以通过自然力驱动的摇摆运动实现混合。结果:简单的盒子用作摇摆平台上的小型卧式光生物反应器,用于培养嗜碱嗜碱菌Euhalothece sp。 ZM001。由于1.0 M NaHCO_3提供了足够的无机碳,因此没有CO_2气体起泡。在该系统中研究了培养深度,摇摆周期和光照强度对藻类生物量产生,pH变化和DO积累的影响。在深度为2.5 cm的培养物中,生物量浓度为2.73 g / L,在深度为10 cm的培养物中,最大生物量为17.06 g / m〜2 / day。测定了不同培养深度和摇摆周期的PBR中的k_L a,从0.57到33.49 h〜(-1),变化很大。为了大规模测试该系统,将表面积为1 m〜2的塑料袋放在由水力驱动的摇摆平台上,其生物量浓度为1.88 g / L。结论:这些结果证明了由自然力驱动的新型光生物反应器系统的可行性,而且制造成本低,并且易于放大。

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