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Mass cultivation of Nannochloropsis sp in annular reactors

机译:在环形反应器中大规模培养拟南芥

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摘要

A study was made on the mass cultivation of Nannochloropsis sp. in newly designed annular reactors operated under natural, artificial or combined illumination. The annular reactor consists of two 2-m-high Plexiglas cylinders of different diameter placed vertically one inside the other so as to form an annular culture chamber. Artificial illumination is supplied by lamps placed inside the inner cylinder. Two annular reactors of different diameter (50 and 91 cm), light path (4.5 and 3.0 cm) and illuminated surface area (5.3 and 9.3 m(2)) were experimented with. The effect of two different artificial light sources (fluorescent tubes and metal halide lamps) on culture productivity was investigated in both systems. The highest productivity on a per reactor basis (about 34 g (d. wt) reactor(-1) 24 h(-1)) was achieved with the larger reactor illuminated by a 400-W metal halide lamp. From February to May a 91-cm reactor illuminated only with natural light was operated in parallel with a 91-cm reactor subjected to combined illumination. Under natural illumination productivity increased from 16.6 g (d. wt) reactor(-1) d(-1) in February to 34.1 g (d. wt) reactor(-1) d(-1) in May. Under combined illumination productivity was 41.3 g (d. wt) reactor(-1) d(-1) in February and increased up to 48.3 g (d. wt) reactor(-1) d(-1) in May. Although the culture exposed to combined illumination always attained higher yields, the productivity gap between the two cultures decreased gradually along the season as solar radiation and minimum night temperatures increased. A 1200-L plant made of ten 50-cm annular reactors was set up and operated for two years with combined illumination yielding an average of 270 g of dry Nannochloropsis sp. biomass per day. More than 2000 L of concentrate suspension (50 g (d. wt) L-1) of Nannochloropsis sp. were produced and successfully used by fish hatcheries as live feed for rotifers and for rearing seabream larvae with the green-water technique. This study indicates that the annular reactor can be profitably used for long-term cultivation of Nannochloropsis in temperate climates. Besides reliability and ease of operation, the main advantage of the system is that it can be used under natural illumination, yet artificial light can be also supplied to maintain high productivity levels in winter or on cloudy days.
机译:对Nannochloropsis sp。的大规模栽培进行了研究。在新设计的在自然,人工或组合照明下运行的环形反应堆中。环形反应器由两个不同直径的2米高的有机玻璃圆筒组成,两个圆筒垂直放置在另一个内部,以形成一个环形培养室。人造照明是通过放置在内筒内部的灯提供的。实验了两个不同直径(50和91 cm),光程(4.5和3.0 cm)以及被照表面积(5.3和9.3 m(2))的环形反应器。在这两个系统中,研究了两种不同的人工光源(荧光灯管和金属卤化物灯)对培养生产力的影响。每个反应器的最高生产率(约34 g(d。wt)反应器(-1)24 h(-1))是由400 W金属卤化物灯照亮的较大反应器实现的。从2月到5月,仅用自然光照射的91厘米反应堆与经过组合照射的91厘米反应堆并联运行。在自然光照下,生产率从2月的16.6 g(d。wt)反应堆(-1)d(-1)增加到5月的34.1 g(d。wt)反应堆(-1)d(-1)。在组合照明下,2月的生产率为41.3 g(d。wt)反应堆(-1)d(-1),5月增加到48.3 g(d。wt)反应堆(-1)d(-1)。尽管暴露于组合光照下的培养物始终能获得较高的产量,但随着太阳辐射和最低夜间温度的升高,两种培养物之间的生产力差距会随着季节逐渐减少。建立了一个由十个50厘米环形反应器组成的1200升工厂,并在联合照明下运行了两年,平均产生了270克干燥的Nannochloropsis sp。每天的生物量。 Nannochloropsis sp。的超过2000 L的浓缩悬浮液(50 g(d。wt)L-1)。鱼孵化场生产并成功地将其用作轮虫的活饲料,以及利用绿水技术饲养鲷鱼幼体。这项研究表明,在温带气候下,环形反应器可用于长期培养拟南芥。除了可靠性和易操作性之外,该系统的主要优点是可以在自然光照下使用,但在冬季或阴天时也可以提供人造光以维持高生产率。

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