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Strategic Study of CAE >> 2023, Volume 25, Issue 4 doi: 10.15302/J-SSCAE-2023.04.006

High-Quality Development Strategy of Fisheries in China

1. Fisheries College, Ocean University of China, Qingdao 266003, Shandong, China;
2. Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, China;
3. Fishery Machinery and Instrument Research Institute, Chinese Academy of Fishery Sciences,Shanghai 200092, China;
4. Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Qingdao 266071, Shandong, China;
5. College of Food Science and Engineering, Ocean University of China, Qingdao 266003, Shandong, China;
6. College of Information and Electrical Engineering, China Agricultural University, Beijing 100083, China;
7. Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, Shandong, China

Funding project:Chinese Academy of Engineering project “Research on National Food Security Strategy under the New Situation” (2021-XBZD-08) Received: 2023-07-12 Revised: 2023-08-18 Available online: 2023-08-29

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Abstract

China has the world’s largest fisheries industry that has provided a healthy and high-quality food source. Currently, guaranteeing national food security, implementing an all-encompassing approach to food, and establishing a diversified food supply system all pose a great demand for the high-quality development of China's fisheries industry. This study explores the development status and trend of fisheries in China from the aspects of fishery resources and capture, aquaculture and marine ranching, and aquatic product processing and circulation, and examines major problems through industry research and extensive discussion. Industry development goals and key measures are further proposed. Results found that the pressure on offshore capture is too high, understanding of deep-sea and polar resources is insufficient, the independent capability of technologies and equipment is inadequate, the mechanized, automatic, and intelligent levels of aquaculture are low, high-quality feed and raw materials rely heavily on imports, the basic software and hardware capabilities of the intelligent fisheries are deficient, and the aquatic product processing capacity is lagging behind. Therefore, the following key measures are proposed: conservation and restoration of offshore fishery resources, development and scientific utilization of deep-sea fishery resources, construction and application of a new technology system for green and healthy aquaculture, research and application of deep-sea aquaculture platform technologies, construction and promotion of new aquaculture models, and green processing and high-value utilization of aquatic products.Through the high-quality development of fisheries, China is expected to become advantageous in fisheries science and technology by 2035, with a total output of 8.1×107  t of aquatic products. By 2050, intelligent fisheries is expected to be realized in China, outputting 1×108  t of aquatic products.

References

[ 1 ] Food and Agriculture Organization of the United Nations‍. The state of world fisheries and aquaculture: Towards blue transformation [R]‍. Rome: Food and Agriculture Organization of the United Nations, 2022‍.

[ 2 ] 农业农村部渔业渔政管理局 , 全国水产技术推广总站 , 中国水产学会‍‍ . 中国渔业统计年鉴2023 [M]‍. 北京 : 中国农业出版社 , 2023 ‍.
Bureau of Fisheries and Fisheries Administration of the Ministry of Agriculture and Rural Affairs, National Fisheries Technology Extension Center, China Society of Fisheries‍ . China fisheries statistical yearbook 2023 [M]‍. Beijing : China Agricultural Press , 2023 ‍.

[ 3 ] 唐启升 , 韩冬 , 毛玉泽 , 等‍ . 中国水产养殖种类组成、不投饵率和营养级 [J]‍. 中国水产科学 , 2016 , 23 4 : 729 ‒ 758 ‍.
Tang Q S , Han D , Mao Y Z , al e t ‍. Species composition, non-fed rate and trophic level of Chinese aquaculture [J]‍. Journal of Fishery Sciences in China , 2016 , 23 4 : 729 ‒ 758 ‍.

[ 4 ] 麦康森 , 徐皓 , 薛长湖 , 等‍ . 开拓我国深远海养殖新空间的战略研究 [J]‍. 中国工程科学 , 2016 , 18 3 : 90 ‒ 95 ‍.
Mai K S , Xu H , Xue C H , al e t ‍. Study on strategies for developing offshore as the new spaces for mariculture in China [J]‍. Strategic Study of CAE , 2016 , 18 3 : 90 ‒ 95 ‍.

[ 5 ] 徐皓 , 谌志新 , 蔡计强 , 等‍ . 我国深远海养殖工程装备发展研究 [J]‍. 渔业现代化 , 2016 , 43 3 : 1 ‒ 6 ‍.
Xu H , Chen Z X , Cai J Q , al e t ‍. Research on the development of deep-sea aquaculture engineering equipment in China [J]‍. Fishery Modernization , 2016 , 43 3 : 1 ‒ 6 ‍.

[ 6 ] 解绶启 , 张文兵 , 韩冬 , 等‍ . 水产养殖动物营养与饲料工程发展战略研究 [J]‍. 中国工程科学 , 2016 , 18 3 : 29 ‒ 36 ‍.
Xie S Q , Zhang W B , Han D , al e t ‍. Study on the developmental strategies for the engineering of aqua nutrition and feed [J]‍. Strategic Study of CAE , 2016 , 18 3 : 29 ‒ 36 ‍.

[ 7 ] Han D, Shan X J, Zhang W B, al et‍. A revisit to fishmeal usage and associated consequences in Chinese aquaculture [J]‍. Reviews in Aquaculture, 2018, 10(2): 493‒507‍.

[ 8 ] 阙华勇 , 陈勇 , 张秀梅 , 等‍ . 现代海洋牧场建设的现状与发展对策 [J]‍. 中国工程科学 , 2016 , 18 3 : 79 ‒ 84 ‍.
Que H Y , Chen Y , Zhang X M , al e t ‍. Modern marine ranching: Status and development strategy [J]‍. Strategic Study of CAE , 2016 , 18 3 : 79 ‒ 84 ‍.

[ 9 ] 杨红生 , 丁德文‍ . 海洋牧场3‍.0: 历程、现状与展望 [J]‍. 中国科学院院刊 , 2022 , 37 6 : 832 ‒ 839 ‍.
Yang H S , Ding D W‍ . Marine ranching 3‍.0: History, status and prospects [J]‍. Bulletin of Chinese Academy of Sciences , 2022 , 37 6 : 832 ‒ 839 ‍.

[10] 王峰 , 雷霁霖 , 高淳仁 , 等‍ . 国内外工厂化循环水养殖模式水质处理研究进展 [J]‍. 中国工程科学 , 2013 , 15 10 : 16 ‒ 23, 32 ‍.
Wang F , Lei J L , Gao C R , al e t ‍. Research progress on water quality treatment of industrial recirculating aquaculture system at home and abroad [J]‍. Strategic Study of CAE , 2013 , 15 10 : 16 ‒ 23, 32 ‍.

[11] 李道亮 , 刘畅‍ . 人工智能在水产养殖中研究应用分析与未来展望 [J]‍. 智慧农业 中英文 , 2020 , 2 3 : 1 ‒ 20 ‍.
Li D L , Liu C‍ . Recent advances and future outlook for artificial intelligence in aquaculture [J]‍. Smart Agriculture , 2020 , 2 3 : 1 ‒ 20 ‍.

[12] 陈胜军 , 张晓凡 , 潘创 , 等‍ . 水产品品质评价研究进展 [J]‍. 肉类研究 , 2022 , 36 6 : 53 ‒ 59 ‍.
Chen S J‍ , Zhang X F , Pan C , al e t ‍. Recent progress in quality evaluation of aquatic products [J]‍. Meat Research , 2022 , 36 6 : 53 ‒ 59 ‍.

[13] 麦康森 , 张文兵‍ . 非粮型蛋白质饲料资源开发现状与高效利用策略 [M]‍. 北京 : 中国农业出版社 , 2019 ‍.
Mai K S , Zhang W B‍ . Development status and efficient utilization strategy of non-grain feed protein resources [M]‍. Beijing : China Agricultural Press , 2019 ‍.

[14] 中华人民共和国农业农村部‍ . " 十四五"全国渔业发展规划 [EBOL]‍. 2022-01-07 [ 2023-07-15 ]‍. http: www‍.yyj‍.moa‍.gov‍.cngzdt202201t20220107_6386443‍.htm‍ .
Ministry of Agriculture and Rural Affairs of the People´s Republic of China‍ . The 14th Five-Year national fisheries development plan [EBOL]‍. 2022-01-07 ‍[ 2023-07-15 ]‍. http: www‍.yyj‍.moa‍.gov‍.cngzdt202201t20220107_6386443‍.htm‍ . link1

[15] 中华人民共和国农业农村部‍ . 关于促进"十四五"远洋渔业高质量发展的意见 [EBOL]‍. 2022-02-14 ‍[ 2023-07-15 ]‍. http: www‍.‍moa‍.‍gov‍.‍cngovpublicYYJ202202t20220215_6388748‍.htm‍ .
Ministry of Agriculture and Rural Affairs of the People´s Republic of China‍ . Opinions on promoting high-quality development of the 14th Five-Year pelagic fisheries [EBOL]‍. 2022-02-14 [ 2023-07-15 ]‍. http: www‍.moa‍.gov‍.cngovpublicYYJ202202t20220215_6388748‍.htm‍ . link1

[16] 全国现代设施农业建设规划 2023 — 2030 年 [EBOL]‍. 2023-06-15 ‍[ 2023-07-15 ]‍. http: www‍.‍moa‍.‍gov‍.‍cngkzcfgqnhnzc202306t20230615_6430324‍.htm‍ .
National modern facility agriculture construction plan 2023 — 2030 [EBOL]‍. 2023-06-15 ‍[ 2023-07-15 ]‍. http: www‍.moa‍.gov‍.cngkzcfgqnhnzc202306t20230615_6430324‍.htm‍ . link1

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