天津农学院学报 ›› 2025, Vol. 32 ›› Issue (3): 24-28.doi: 10.19640/j.cnki.jtau.2025.03.005

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渔业助力“碳中和”的路径与实践探索

梁爽1, 陈春秀2, 刘惠茹1, 梁健1, 蒋增杰3,通信作者, 郭永军1,通信作者   

  1. 1.天津农学院 水产学院,天津 300392;
    2.天津市水产研究所,天津 300384;
    3.中国水产科学研究院 黄海水产研究所,山东 青岛 266000
  • 收稿日期:2025-04-13 出版日期:2025-06-30 发布日期:2025-07-02
  • 通讯作者: 郭永军(1969—),男,研究员,硕士,主要从事中草药及水产增养殖方面的研究。E-mail:guoyongjun@tjau.edu.cn。蒋增杰(1978—),男,研究员,博士,主要从事海水生态养殖模式与技术方面的研究。E-mail:jiangzj@ysfri.ac.cn。
  • 作者简介:梁爽(1989—),男,副教授,博士,主要从事渔业与环境的相互影响研究。E-mail:shuangliang@tjau.edu.cn。
  • 基金资助:
    天津市教委科研计划项目(2021KJ109)

Pathways and practices of fisheries in facilitating “Carbon Neutrality”

Liang Shuang1, Chen Chunxiu2, Liu Huiru1, Liang Jian1, Jiang ZengjieCorresponding Author, Guo Yongjun1,Corresponding Author   

  1. 1. College of Fisheries, Tianjin Agricultural University, Tianjin 300392, China;
    2. Tianjin Fisheries Research Institute, Tianjin 300384, China;
    3. Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Qingdao 266000, Shandong Province, China
  • Received:2025-04-13 Online:2025-06-30 Published:2025-07-02

摘要: 在服务“碳中和”战略目标背景下,渔业作为农业的重要组成部分,具有碳汇与碳源过程并存的突出特点。本文分析了渔业碳循环的特征,指出渔业在优质蛋白质生产方面拥有显著的低碳优势,特别是贝藻类养殖系统展现出巨大的碳汇潜力。提出了通过“渔业碳汇识别与增强”“渔业碳源核算与减排”“减排增汇协同提升模式构建”三个层次推动渔业助力国家“碳中和”目标的实现。天津地区实践表明,贝类礁生态系统和渔光互补生态养殖模式在减排增汇方面表现突出,不同渔业模式的碳排放热点均集中在饲料使用阶段。未来,应构建完善的渔业碳通量监测体系,强化全生命周期碳足迹核算,探索生态养殖技术与清洁能源融合路径,建立兼具生态效益与经济效益的绿色低碳渔业发展模式,为农业农村领域实现“碳中和”提供可复制推广的实践参考。

关键词: 渔业碳汇, 碳足迹, 低碳养殖, 碳中和, 生态养殖

Abstract: Under the goal of “Carbon Neutrality”, fisheries are not only a major source of greenhouse gas emissions but also a potential carbon sink sector. This paper analyzes the characteristics of the carbon cycle in fisheries, showing that fisheries have distinct low-carbon advantages in protein production, and that shellfish and seaweed aquaculture systems especially demonstrate significant ecological carbon sequestration potential. The study proposes to promote the fisheries’ contribution to national “Carbon Neutrality” goals through three approaches: “identification and enhancement of fishery carbon sinks,” “calculation and reduction of fishery carbon sources,” and “construction of integrated models for synergistically improving emission reduction and carbon sink efficiency.” Practice cases from Tianjin indicate that the carbon emission hotspots of different fishery models are all concentrated in the feed use stage, while shellfish reef ecosystems and fish-solar complementary models stand out in enhancing carbon sinks and reducing emissions. In the future, it is necessary to establish a comprehensive monitoring system for carbon fluxes, strengthen full life-cycle carbon footprint accounting, explore the integration of ecological aquaculture technologies with clean energy, and develop green, low-carbon fishery development models that combine ecological and economic benefits, thereby providing replicable and scalable practical experience for achieving “Carbon Neutrality” in agriculture and rural areas.

Key words: fishery carbon sink, carbon footprint, low-carbon aquaculture, Carbon Neutrality, ecological aquaculture

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