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首页> 外文期刊>Polish Journal of Microbiology >Biofloc Technology: Emerging Microbial Biotechnology for the Improvement of Aquaculture Productivity
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Biofloc Technology: Emerging Microbial Biotechnology for the Improvement of Aquaculture Productivity

机译:生物环保技术:新兴微生物生物技术改善水产养殖生产力

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With the significant increases in the human population, global aquaculture has undergone a great increase during the last decade. The management of optimum conditions for fish production, which are entirely based on the physicochemical and biological qualities of water, plays a vital role in the prompt aquaculture growth. Therefore, focusing on research that highlights the understanding of water quality and breeding systems' stability is very important. The biofloc technology (BFT) is a system that maximizes aquaculture productivity by using microbial biotechnology to increase the efficacy and utilization of fish feeds, where toxic materials such as nitrogen components are treated and converted to a useful product, like a protein for using as supplementary feeds to the fish and crustaceans. Thus, biofloc is an excellent technology used to develop the aquaculture system under limited or zero water exchange with high fish stocking density, strong aeration, and biota. 'Ibis review is highlighted on biofloc composition and mechanism of system work, especially the optimization of water quality and treatment of ammonium wastes. In addition, the advantages and disadvantages of the BET system have been explained. Finally, the importance of contemporary research on biofloc systems as a figure of microbial biotechnology has been emphasized with arguments for developing this system for better production of aquaculture with limited natural resources of water.
机译:随着人口的显著增加,全球水产养殖在过去十年中经历了巨大的增长。鱼类生产的最佳条件管理完全基于水的物理化学和生物质量,在促进水产养殖增长方面起着至关重要的作用。因此,专注于强调了解水质和繁殖系统稳定性的研究非常重要。biofloc技术(BFT)是一种利用微生物生物技术提高鱼类饲料的功效和利用率,从而最大限度地提高水产养殖生产率的系统,在该系统中,氮成分等有毒物质被处理并转化为有用的产品,如蛋白质,用作鱼类和甲壳类动物的补充饲料。因此,biofloc是一种优秀的技术,用于在有限或零水交换条件下开发水产养殖系统,具有高的鱼类放养密度、强通风和生物群。”Ibis综述重点介绍了生物絮凝剂的组成和系统工作机理,尤其是水质优化和铵废物处理。此外,还解释了投注系统的优缺点。最后,强调了作为微生物生物技术的一部分,对biofloc系统进行当代研究的重要性,并提出了开发该系统以更好地利用有限的水资源进行水产养殖的理由。

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