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首页> 外文期刊>Aquacultural Engineering: An International Journal >Mutualism between euryhaline tilapia Sarotherodon melanotheron heudelotii and Chlorella sp. --Implications for nano-algal production in warmwater phytoplankton-based recirculating systems
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Mutualism between euryhaline tilapia Sarotherodon melanotheron heudelotii and Chlorella sp. --Implications for nano-algal production in warmwater phytoplankton-based recirculating systems

机译:欧亚罗非鱼罗非鱼(Sarotherodon melanotheron heudelotii)和小球藻(Chlorella sp。)之间的相互关系。 -基于温水浮游植物的再循环系统中纳米藻生产的意义

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摘要

The West-African euryhaline tilapia, Sarotherodon melanotheron heudelotii shift from visually feeding on zooplankton when juveniles to mostly filter feeding on phytoplankton when adults. When reared using an appropriate ration in intensive aquaculturesystems, S. m. heudelotii also consume algal-based detritus, and contribute to sediment mineralization, clean up their environment, and ultimately stimulate and sustain algal growth. We analysed such practical advantages for phytoplankton-based recirculating systems, using S. m. heudelotii and Chlorella sp. as biological material originating from the prototype of such a system operated in Senegal. We performed a 24-h factorial design experiment in 36 tubs, cross-classifying three levels of S. m. heudelotii (fishless control, unfed fish, and fed fish) with four levels of Chlorella initial density.
机译:西非罗非鱼罗非鱼(Sarotherodon melanotheron heudelotii)从成年时目视以浮游动物为食,成年后主要以浮游植物为食。在集约化水产养殖系统中使用适当的配比饲养时heudelotii还消耗基于藻类的碎屑,并有助于沉积物矿化,清理其环境并最终刺激和维持藻类的生长。我们使用S.m分析了基于浮游植物的再循环系统的实际优势。 heudelotii和小球藻作为生物材料,源于在塞内加尔运营的这种系统的原型。我们在36个水桶中进行了24小时的析因设计实验,对S. m。的三个级别进行了交叉分类。 heudelotii(无鱼对照,非饲养鱼和饲喂鱼)的小球藻初始密度为四个水平。

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