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首页> 外文期刊>Journal of industrial microbiology & biotechnology >Solar Pond devices: free energy or bioreactors for Artemia biomass production
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Solar Pond devices: free energy or bioreactors for Artemia biomass production

机译:太阳能池设备:用于卤虫生物质生产的自由能或生物反应器

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The recent exponential growth in industrial aquaculture has led to a huge increase in Artemia biomass production in order to meet increased fish production needs. The present study explores the potential use of salt gradient solar ponds (SGSPs) for production of Artemia nauplii. An SGSP is a basin of water where solar energy is trapped and collected via an artificially imposed gradient. Three zones can be identified in an SGSP: upper and lower zones, which are both convective, and a middle zone, which is intended to be non-convective. The latter acts as a transparent insulation layer and allows for storage of solar energy at the bottom, where it is available for use. The combination of salt, temperature and high transparency could make SGSPs promising bioreactors for the production of Artemia nauplii. Using particle image velocymetry (PIV) and Shadowgraph visualisation techniques, the behaviour of Artemia nauplii under critical cultivation parameters (namely, salinity, temperature and light) was monitored to determine movement velocity, and how movement of Artemia affects the salt gradient. It was observed that Artemia nauplii constantly follow light, irrespective of adverse salinity and/or temperature conditions. However, despite the substantial displacement of Artemia following the light source, the salt gradient is not disrupted. The suitability of SGSPs as bioreactors for Artemia biomass production was then tested. The results were disappointing, probably due to the lack of sufficient O sub(2) for Artemia survival and growth. Follow-up trials were conducted aimed at using the SGSP as a green and economically attractive energy source to induce faster hatching of cysts and improved Artemia nauplii growth. The results of these trials, and a case study of Artemia nauplii production using an SGSP, are presented. The authors constructed a Solar Pond device, which they suggest as a novel way of supplying thermal energy for Artemia biomass production in an aquaculture enterprise. Finally, the authors suggest a method of producing and collecting Artemia biomass, and of heating a fish larval tank, in an 'ideal' Solar Pond device, profiting from the low investment costs of using a decommissioned salt works.
机译:最近工业化水产养殖的指数增长导致卤虫生物量的生产大幅增加,以满足不断增长的鱼类生产需求。本研究探讨了盐梯度太阳池(SGSP)在卤虫无节幼体生产中的潜在用途。 SGSP是一个水盆,通过人工施加的坡度来收集和收集太阳能。在SGSP中可以确定三个区域:上部和下部区域都是对流的,中间区域是非对流的。后者用作透明的绝缘层,并允许在底部使用太阳能存储。盐,温度和高透明度的结合可以使SGSP成为生产无节状无节幼体的有前途的生物反应器。使用粒子图像测速(PIV)和阴影图可视化技术,监测了关键栽培参数(即盐度,温度和光照)下无节幼体的行为,以确定运动速度,以及Artemia的运动如何影响盐梯度。观察到,无论不利的盐度和/或温度条件如何,无节幼体无节幼体始终跟随光。然而,尽管在光源之后卤虫会大量移位,但盐梯度不会被破坏。然后测试了SGSPs作为卤虫生物质生产的生物反应器的适用性。结果令人失望,可能是由于缺乏足够的O sub(2)来促进卤虫的生存和生长。进行了后续试验,旨在将SGSP用作绿色且经济上有吸引力的能源,以诱导更快地孵化囊肿并改善卤虫无节幼体的生长。介绍了这些试验的结果,以及使用SGSP进行卤虫无节幼体生产的案例研究。作者构建了一个太阳能池塘设备,他们建议这是一种为养殖企业的卤虫生物质生产提供热能的新颖方法。最后,作者提出了一种生产和收集卤虫生物质并在“理想的”太阳能池塘设备中加热鱼幼体池的方法,该方法得益于使用退役盐厂的低投资成本。

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