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Strategic Study of CAE >> 2016, Volume 18, Issue 3 doi: 10.15302/J-SSCAE-2016.03.015

Study on Strategies for Developing Offshore as the New Spaces for Mariculture in China

1. Ocean University of China, Qingdao 266003, Shandong, China;

2. Fishery Machinery and Instrument Research Institute, Chinese Academy of Fishery Sciences, Shanghai 200092, China;

3. Jiangsu Academy of Macroeconomic Research, Nangjing 210013, China

Funding project:中国工程院重点咨询项目“现代海水养殖新技术、新方式和新空间发展战略研究”(2015-XZ-30) Received: 2016-04-29 Revised: 2016-05-18 Available online: 2016-06-29 13:33:04.000

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Abstract

Mariculture industry, makes great contribution to national food security, economy and trade balance. To realize sustainable development of mariculture in China in the new period, it is urgent to exploit new space and develop offshore aquaculture strategy. Offshore aquaculture is an integrated system including suitable species, culture techniques, culture equipments, energy supply, sea-land relay logistics, aquatic products processing, and strategies of disaster prevention and reduction. On the basis of a strategic concept of the new space for mariculture in China, the present study puts forward strategic missions on the development of offshore mariculture. The missions include building a suitable species breeding and efficient farming technology system, constructing a new type of marine fisheries production mode with the core of offshore aquaculture platform, building an energy security system, and constructing an intelligent mariculture products logistics network. Based on these strategies, relevant policy suggestions are also suggested.

References

[ 1 ] 农业部渔业渔政管理局. 中国渔业统计年鉴2015[M]. 北京: 中国农业出版社, 2015.

[ 2 ] 丁永良. 海上工业化养殖[J]. 现代渔业信息, 2006, 21(3): 4–6. link1

[ 3 ] Christine Blank. Salmon farm to be built on world’s largest ship [EB/OL]. [2015-12-11].

[ 4 ] 庚云. 西班牙研制巨型海水养殖网箱[J]. 现代渔业信息, 1990, 5(11): 34.

[ 5 ] 中国政府网 . 我国首个深远海大型养殖平台启动构建[EB/OL]. [2014-11-24]. http://www.gov.cn/xinwen/2014-11/24/con-tent_2782858.htm. link1

[ 6 ] 张彦, 宋昕, 张天. 船用微网发电系统的构建研究[J]. 中国修船, 2014, 27(5): 16–18. link1

[ 7 ] 赵亮亮, 袁成清, 董从林, 等. 船用太阳能电池板玻璃盖片腐蚀损伤效应研究[J]. 润滑与密封, 2010, 35(4): 58–61. link1

[ 8 ] 詹耀. 海上风电机组的防腐技术与应用[J]. 现代涂料与涂装, 2012, 15(2): 15–18. link1

[ 9 ] 张小栓,邢少华,傅泽田,等. 水产品冷链物流技术现状、发展趋势及对策研究[J]. 渔业现代化, 2013, 38(3): 45–49. link1

[10] 夏永强, 胡钰, 张磊, 等. 船用海水淡化装置[J]. 机电设备, 2014, 31(5): 16–19.

[11] 方敏, 孔祥威, 施建中, 等. 大规模非并网风电系统理论与实践[J]. 中国工程科学, 2015, 17(3): 14–19. link1

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