水产养殖鱼类粪便的特性、影响因素及基于营养调控的优化处理
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S963.2

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国家自然科学基金面上项目(32273143);中国水产科学院基本科研业务费项目(2023TD52);国家海水鱼产业技术体系(CARS 47)


Aquaculture fish faeces: characteristics, influencing factors and nutritional optimization strategies
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    摘要:

    随着集约化水产养殖尤其是工厂化循环水养殖系统(Recirculating aquaculture systems ,RAS)的迅猛发展,养殖水体中固体废物的高效管理已成为关键挑战。在RAS中,悬浮固体的去除效率不仅直接决定系统的运行效能,更关乎其长期稳定运行。作为养殖水体中固体废物的主要来源,鱼类粪便的物理成形性与水中稳定性是实现养殖用水高效循环利用的关键前提。而且,粪便的过度累积不仅会直接损害鱼类鳃部及体表健康,还会通过加剧微生物竞争、促进氨氮与活性磷等营养盐异常积累,引发水体富营养化与生态系统功能失衡。本研究系统梳理了养殖鱼类粪便物理化学特性、关键影响因素及营养调控策略的最新研究成果。研究发现,鱼类粪便的水中稳定性、沉降速率和颗粒形态等物理特性存在显著种间差异,并受养殖环境与饲料组成的双重调控;尽管粪便化学组成与饲料存在同源性,但其营养成分存在显著差异,其中氮、磷等元素的高度富集是造成水体污染的主要诱因。在营养调控策略方面,饲料优化作为源头治理的核心路径,可通过调整营养成分、添加蛋白酶、植酸酶等外源酶制剂提升营养消化率;借助黏合剂与浮力调节剂优化粪便物理性状;以及利用益生菌、功能性寡糖等添加剂调节肠道微生态,间接改善粪便组成。尽管当前研究已取得阶段性进展,但针对不同养殖模式与品种的特异性研究仍有待加强。本研究旨在为创新饲料技术研发、推动水产养殖业绿色可持续发展提供系统性理论依据。

    Abstract:

    With the rapid development of intensive aquaculture, especially in recirculating aquaculture systems (RAS), the efficient management of solid waste in aquaculture water has become a critical challenge. In RAS, the removal efficiency of suspended solids not only directly determines system performance but also affects its long-term operational stability. As the primary source of solid waste in aquaculture water, the characteristics of fish faeces are key prerequisites for achieving efficient water recycling. Moreover, excessive accumulation of faeces can directly damage fish gill and epidermal health, while also exacerbating microbial competition, promoting abnormal accumulation of nutrients such as ammonia and reactive phosphorus, and triggering water eutrophication and ecosystem dysfunction. This review systematically showed the latest researches on the characteristics of farmed fish faeces, influencing factors, and nutritional regulation strategies. Studies reveal significant interspecific differences in the physical characteristics of fish faeces, such as water stability, settling velocity, and particle morphology, which are jointly regulated by rearing conditions and feed composition. Although the chemical composition of feces is homologous to feed, there are notable differences in nutrient content, with the high enrichment of nitrogen and phosphorus being the primary contributors to water pollution. Regarding nutritional regulation strategies, feed optimization serves as the core approach for source control. This includes: (1) Improving nutrient digestibility by adjusting feed formulations and supplementing exogenous enzymes such as proteases and phytases; (2) Optimizing fecal physical properties using binders and buoyancy regulators; (3) Modulating gut health with probiotics and functional oligosaccharides to indirectly improve fecal composition. Despite current progress, further research is needed to address the specific requirements of different aquaculture systems and species. This review aims to provide a systematic theoretical foundation for innovative feed technology development and promote the green, sustainable advancement of the aquaculture industry.

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引用本文

张彦娇,廖兆凡,徐后国,麦康森.水产养殖鱼类粪便的特性、影响因素及基于营养调控的优化处理[J].上海海洋大学学报,2025,34(4):715-728.
ZHANG Yanjiao, LIAO Zhaofan, XU Houguo, MAI Kangsen. Aquaculture fish faeces: characteristics, influencing factors and nutritional optimization strategies[J]. Journal of Shanghai Ocean University,2025,34(4):715-728.

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  • 收稿日期:2025-04-15
  • 最后修改日期:2025-05-17
  • 录用日期:2025-05-17
  • 在线发布日期: 2025-07-13
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