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综合多营养层水产养殖(IMTA)作为一种环保型可持续水产养殖系统:生物絮团技术(BFT)的功能、物种和应用。

Integrated multitrophic aquaculture (IMTA) as an environmentally friendly system for sustainable aquaculture: functionality, species, and application of biofloc technology (BFT).

机构信息

Department of Fisheries Sciences and Engineering, Faculty of Natural Resources, University of Jiroft, Jiroft, Kerman, Iran.

Department of Fisheries, Faculty of Natural Resources and Environment, Ferdowsi University of Mashhad, Mashhad, Iran.

出版信息

Environ Sci Pollut Res Int. 2022 Sep;29(45):67513-67531. doi: 10.1007/s11356-022-22371-8. Epub 2022 Aug 3.

Abstract

Aquaculture is one of the fastest-growing industries in the world, and its prominent role has been proven in supplying food for the growing world population. The expected growth of aquaculture requires the development of responsible and sustainable approaches, technologies, culture systems, and practices. The integrated multitrophic aquaculture (IMTA) system has been developed over the past decades. This system is based on the use of all food levels for simultaneous production of some aquaculturally species in a way that contributes to environmental sustainability (biocontrol), economic stability (product diversity and risk reduction), and social acceptance (better management operations). In IMTA, selecting suitable culture species and considering their appropriate population size is absolutely necessary to achieve an optimal biological and chemical process, improving the ecosystem health and sustainability of the industry. Biofloc technology (BFT) is closely related to the IMTA system, where the IMTA potential can be used to control suspended solids in aquaculture systems with limited water exchange. This study reviews the significance of IMTA systems, potential target species for cultivation, the relationship between BFT and IMTA, total suspended solids control, the economics of IMTA farming, and the recent findings in these fields.

摘要

水产养殖是世界上发展最快的产业之一,它在为不断增长的世界人口提供食物方面发挥了重要作用。水产养殖的预期增长需要开发负责任和可持续的方法、技术、养殖系统和实践。综合多营养层水产养殖(IMTA)系统在过去几十年中得到了发展。该系统基于利用所有食物层面,同时生产一些水产养殖物种,以促进环境可持续性(生物防治)、经济稳定性(产品多样性和风险降低)和社会接受度(更好的管理运营)。在 IMTA 中,选择合适的养殖物种并考虑其适当的种群规模对于实现最佳的生物和化学过程至关重要,从而提高生态系统的健康和产业的可持续性。生物絮凝技术(BFT)与 IMTA 系统密切相关,在该系统中,IMTA 的潜力可用于控制水交换有限的水产养殖系统中的悬浮固体。本研究综述了 IMTA 系统的重要性、潜在的养殖目标物种、BFT 与 IMTA 的关系、总悬浮固体的控制、IMTA 养殖的经济性以及这些领域的最新发现。

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