水产养殖中的 Biofloc 系统技术、历史、类型和未来经济观念综述

Animals Pub Date : 2024-05-17 DOI:10.3390/ani14101489
Bilal Raza, Zhongming Zheng, Wen Yang
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引用次数: 0

摘要

鉴于水和土地资源稀缺,加上水产养殖业的竞争性质,该行业的长期生存能力将取决于纵向发展战略。这涉及改善生产环境、提高生产力和推进水产养殖技术。生物絮团技术的使用为减轻水产养殖业对环境的不利影响和对鱼粉的严重依赖提供了一个潜在的解决方案。这种方法旨在有效同化水产养殖废水中的无机氮,从而提高水质。此外,该工艺还能产生微生物蛋白质,可作为水产动物的一种可行的补充饲料。此外,这项技术还有可能降低饲料转化率,从而降低总体生产成本。本文概述了水产养殖中不断发展的生物絮凝系统技术领域。在这项研究中,我们将考察生物絮凝物系统的历史发展和各种类型,以及影响其有效性的因素。最后,我们将探讨在水产养殖中实施生物絮凝物系统的经济潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Review on Biofloc System Technology, History, Types, and Future Economical Perceptions in Aquaculture
Given the scarcity of water and land resources, coupled with the competitive nature of aquaculture, the long-term viability of this industry will depend on strategies for vertical development. This involves enhancing production environments, increasing productivity, and advancing aquaculture technologies. The use of biofloc technology offers a potential solution to mitigate the adverse environmental impacts and the heavy reliance on fishmeal in the aquaculture sector. This method is designed to effectively assimilate inorganic nitrogen found in aquaculture wastewater, thereby enhancing water quality. Additionally, this process produces microbial protein, which can serve as a viable supplemental feed for aquatic animals. Furthermore, this technique has the potential to reduce the feed conversion ratio, thereby lowering overall production costs. This article provides an overview of the evolving field of biofloc system technology within aquaculture. In this study, we will examine the historical development and various types of biofloc systems, as well as the factors that influence their effectiveness. Finally, we will explore the economic potential of implementing biofloc systems in aquaculture.
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