首页> 外文期刊>Journal of Applied Phycology >Comparison of continuous and day time only mixing on Tetraselmis suecica (Chlorophyta) in outdoor raceway ponds
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Comparison of continuous and day time only mixing on Tetraselmis suecica (Chlorophyta) in outdoor raceway ponds

机译:在室外水道池塘中,在Tetraselmis suecica(Chlorophyta)上进行连续和仅白天混合的比较

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摘要

The mixing of microalgae bioreactors is important as it circulates cells in and out of the light zone and reduces boundary layers, benefiting photosynthesis and nutrient uptake. However, mixing is also a major economical factor, impacting on power consumption and operating costs, and it remains a barrier for those locations where no electrical supply is available. Combining solar panels with algae ponds can help to alleviate the power cost burden, but if solar panels are the sole source of generated electricity for a regional raceway pond system, the paddle wheels will only operate during day time. This study investigated the growth of halophilic green alga Tetraselmis suecica, in outdoor paddle wheel-driven open ponds under three different mixing regimes. The first experimental condition was a continuously mixed regime, while in the second and third conditions, the paddle wheels were stopped overnight and restarted 1 h after sunrise or 1 h before sunrise, respectively. Growth rate, biomass productivity and cell weight showed no statistically significant difference during the period when the culture was growing under optimal environmental conditions. Chlorophyll fluorescence measurements of photosystem II maximum quantum yield in the light (F-v'/F-m') over a 24-h period found no significant differences between cultures, further suggesting that under favourable conditions ceasing mixing overnight may have no undesirable impact on Tetraselmis health or productivity. These findings imply a potential 37 % power saving and a 33 % reduction in energy-associated costs. During a heat stress event, Tetraselmis was negatively impacted in all ponds to the same degree; however, the continuously mixed pond recovered faster than ponds that were not mixed overnight.
机译:微藻生物反应器的混合非常重要,因为它可以使细胞进入和离开亮区循环,并减少边界层,从而有利于光合作用和养分吸收。但是,混合也是主要的经济因素,会影响功耗和运营成本,并且对于那些没有可用电源的地方,它仍然是一个障碍。将太阳能电池板与藻类池塘相结合可以帮助减轻电力成本负担,但是如果太阳能电池板是区域赛道池塘系统的唯一发电来源,则桨轮将仅在白天运行。这项研究调查了在三种不同混合方式下,室外桨轮驱动的开放池塘中嗜盐绿藻Tetraselmis suecica的生长。第一个实验条件是连续混合状态,而在第二个和第三个条件下,桨轮停下来过夜,分别在日出后1 h或日出前1 h重新开始。在最佳环境条件下培养物生长期间,生长速率,生物量生产率和细胞重量均无统计学差异。在24小时内光系统II在光中的最大量子产率(F-v'/ F-m')的叶绿素荧光测量结果发现,培养物之间无显着差异,进一步表明在有利条件下,停止混合过夜可能不会产生不良影响对Tetraselmis的健康或生产力。这些发现意味着潜在的37%的省电效果和33%的能源相关成本降低了。在热应激事件中,Tetraselmis在所有池塘中受到的负面影响程度相同。但是,连续混合池塘的恢复速度要比不过夜的池塘恢复快。

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