中国大水面网箱养殖技术研究进展

Research progress on cage aquaculture technology in large water bodies in China

  • 摘要: 中国大水面资源禀赋突出,湖泊、水库数量众多且分布广泛,在环境变化、生态服务、水资源安全及流域经济发展等方面发挥着重要作用,大水面网箱养殖在淡水渔业中占据重要地位。中国大水面网箱养殖经历了“粗放扩张—环境治理倒逼退出和调整—技术升级与生态转型”3个阶段。从早期的无序发展导致的环境问题,到近年来在生态文明建设要求下,网箱养殖逐步退出部分水域并进行规范化治理。目前主要养殖技术包括投饵式、不投饵式、多层立体式和集污式4类,分别通过精准投喂、利用天然饵料、多营养级套养及废弃物收集等方式实现生态友好型养殖。文章系统梳理了这4类网箱养殖技术的特点及其应用特征,解析了现存技术的核心问题,如养殖容量与生态适配性矛盾、饲料转化效率低、信息化管理不足等,并提出将不投饵式、多层立体式和集污式养殖作为未来重要发展方向,旨在为行业技术优化与生态管理决策提供科学支撑。

     

    Abstract: China possesses abundant large water bodies resources, with numerous lakes and reservoirs widely distributed across the country. These water bodies play a vital role in environmental regulation, ecological services, water resource security, and watershed economic development. Cage aquaculture in large water bodies is important in freshwater fisheries. The development of large-scale cage aquaculture in China has undergone three distinct phases: "extensive expansion–environmental governance-driven contraction and adjustment–technological upgrading and ecological transformation." From early unregulated development leading to environmental degradation to recent years, where, under the requirements of ecological civilization construction, cage aquaculture has been gradually phased out in certain areas and subjected to standardized management. Currently, the main aquaculture technologies include feed-based, non-feed-based, multi-layer integrated, and waste-collection systems, which achieve eco-friendly practices through precision feeding, utilization of natural bait, multi-trophic polyculture, and waste collection, respectively. The paper systematically reviews the characteristics and applications of these four cage aquaculture technologies, analyzes core challenges such as the conflict between aquaculture capacity and ecological compatibility, low feed conversion efficiency, and insufficient digital management, and proposes sustainable development pathways. The paper further proposes non-feed-based, multi-layer integrated, and waste-collection aquaculture systems as priority directions for future development. The findings provide scientific support for technological optimization and ecological management decision-making in the industry.

     

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