海洋保护区类型、边界与多边管控——生态保护、公众参与和规划决策的文献综合视角
PDF下载 (208)肖若兰,王 江,马静武,马仁锋.海洋保护区类型、边界与多边管控——生态保护、公众参与和规划决策的文献综合视角[J].宁波大学学报(理工版),2023,36(5):113-120.DOI:10.20098/j.cnki.1001-5132.2023.0201
XIAO Ruolan,WANG Jiang,MA Jingwu,MA Renfeng.Types, boundaries and multilateral control of marine protected areas: A synthesized perspective of ecological conservation, public participation and policy planning[J].Journal of Ningbo University(Natural Science & Engineering Edition),2023,36(5):113-120.DOI:10.20098/j.cnki.1001-5132.2023.0201
| Title: | Types, boundaries and multilateral control of marine protected areas: A synthesized perspective of ecological conservation, public participation and policy planning |
| 作者: | 肖若兰, 王 江, 马静武, 马仁锋 |
| Author(s): | XIAO Ruolan, WANG Jiang, MA Jingwu, MA Renfeng |
| 关键词: | 海洋生态系统; 海洋保护区; 海洋空间规划; 多主权国家主张海域 |
| Keywords: | marine ecosystems; marine protected areas; marine spatial planning; multi-sovereign state claiming sea areas |
| 分类号: | P741; X36 |
| DOI: | 10.20098/j.cnki.1001-5132.2023.0201 |
| 文献标识码: | A |
| 摘要: | 海洋保护区是通过限制人类活动为海洋生态保育与恢复提供时间和空间的区划工具. 开放的海洋环境使得海洋保护区存在边界模糊、功能区重叠等问题, 弱化了海洋保护区的实际效果.本文梳理了国内外海洋保护区界定与保护区划决策模式差异, 诊断出海洋保护与管理困境: (1)全球海洋保护区的分类标准与边界划分差异大, 海洋保护强度与管控水平迥异, 不利于评估全球海洋保护的实际效果; (2)海洋环境缺少明显的分界线, 开发并普及保护区规划决策支持工具与系统, 发展大规模海洋环境探测技术, 有利于海洋保护区优化其管控措施; (3)推动区域联合的海洋环境保护规制, 学习跨界海洋保护区的建设经验, 参与国际海洋保护与远洋保护区设计, 是海洋保护区的全球发展态势. 未来, 海洋保护区应加强相关理论探索, 优化其规划决策流程, 推动中国毗邻海域的跨界海洋保护, 以期为海洋保护区选划和管控提供决策依据. |
| Abstract: | Marine protected areas are zoning tools that provide time and space for marine ecological protected and restoration by restraining human activities. The open marine environment makes marine conserved areas suffer from vague boundaries and overlapped functional areas, which weaken the practical effects of marine protected areas. In this paper we compare the differences in the definition and conservation zoning decision models of marine protected areas at home and abroad, and diagnose the marine conservation and management dilemmas. Some conclusions can be reached as follows: (1) The classification standards and boundary delineation of global marine protected areas vary greatly, the intensity of marine protection and the level of control also vary significantly, which are unhelpful to assessing the actual effect of global marine protection. (2) The marine environment lacks obvious demarcation borders, and the development and popularization of marine planning tools and application systems are inadequate. The development of large-scale marine environment detection technology proves conducive to the optimization of MPAs’ control measures. (3) Promoting joint regional regulation of marine environmental protection, learning from the construction experience of trans-boundary MPAs, and participating in international marine protection and oceanic reserve design are the development trends of global MPAs. In the future, MPAs should strengthen the theoretical exploration of MPAs themselves, develop and optimize the planning and decision-making process of MPAs, and promote trans-boundary marine protection in China’s adjacent waters, with a view to providing a basis for decision-making on the selection and control of MPAs. |
| 参考文献 /References: | [1] Agardy T, Davis J, Sherwood K, et al. Taking steps towards marine and coastal ecosystem-based management: An introductory guide[M]. New York: UNEP Press, 2011. [2] 刘洪滨, 刘康. 海洋保护区: 概念与应用[M]. 北京: 海洋出版社, 2007. [3] 赵千硕, 初建松, 朱玉贵. 海洋保护区概念、选划和管理准则及其应用研究[J]. 中国软科学, 2020(S1):10-15. [4] Claus S, De Hauwere N, Vanhoorne B, et al. Marine regions: Towards a global standard for georeferenced marine names and boundaries[J]. Marine Geodesy, 2014, 37(2):99-125. [5] Jay S, Vince J, Olsen E, et al. International progress in marine spatial planning[J]. Ocean Yearbook Online, 2013, 27(1):171-212. [6] 汤国安, 李吉龙, 熊礼阳, 等. 论地理边界的科学属性与表达[J]. 地理学报, 2021, 76(11):2841-2852. [7] G?tz A, Kerwath S E, Attwood C G, et al. A change of the seaward boundary of Goukamma Marine Protected Area could increase conservation and fishery benefits[J]. South African Journal of Science, 20010, 105(9/10):330-331. [8] Freeman D J, MacDiarmid A B, Taylor R B. Habitat patches that cross marine reserve boundaries: Conse- quences for the lobster Jasus edwardsii[J]. Marine Ecology Progress Series, 2009, 388:159-167. [9] Bucaram S J, Hearn A, Trujillo A M, et al. Assessing fishing effects inside and outside an MPA: The impact of the Galapagos Marine Reserve on the industrial pelagic tuna fisheries during the first decade of operation[J]. Marine Policy, 2018, 87:212-225. [10] Kirkman H. Choosing boundaries to marine protected areas and zoning the MPAs for restricted use and management[J]. Ocean & Coastal Management, 2013, 81:38-48. [11] Ilarri M I, Souza A T, Rosa R S. Community structure of reef fishes in shallow waters of the Fernando de Noronha archipelago: Effects of different levels of environmental protection[J]. Marine and Freshwater Research, 2017, 68(7):1303-1316. [12] Bonaldo R M, Pires M M, Junior P R G, et al. Small marine protected areas in Fiji provide refuge for reef fish assemblages, feeding groups, and corals[J]. PLoS One, 2017, 12(1):e0170638. [13] Paladines M J B, Chuenpagdee R. Governability assessment of the Galapagos Marine Reserve[J]. Maritime Studies, 2015, 14(1):13-20. [14] Pérez-Ruzafa A, García-Charton J A, Marcos C. North East Atlantic vs. Mediterranean Marine Protected Areas as fisheries management tool[J]. Frontiers in Marine Science, 2017, 4:245-257. [15] Jennings S. Patterns and prediction of population recovery in marine reserves[J]. Reviews in Fish Biology and Fisheries, 2000, 10(2):209-231. [16] Sale P F, Cowen R K, Danilowicz B S, et al. Critical science gaps impede use of no-take fishery reserves[J]. Trends in Ecology & Evolution, 2005, 20(2):74-80. [17] Edgar G J, Barrett N S. Effects of the declaration of marine reserves on Tasmanian reef fishes, invertebrates and plants[J]. Journal of Experimental Marine Biology and Ecology, 1999, 242(1):107-144. [18] Gazzola P, Roe M H, Cowie P J. Marine spatial planning and terrestrial spatial planning: Reflecting on new agendas[J]. Environment and Planning C: Government and Policy, 2015, 33(5):1156-1172. [19] 候勃, 岳文泽, 马仁锋, 等. 国土空间规划视角下海陆统筹的挑战与路径[J]. 自然资源学报, 2022, 37(4):880-894. [20] Ma R F, Chen J R, Pan Q, et al. How should the effectiveness of marine functional zoning in China be evaluated? Taking Wenzhou marine functional zoning as an example[J]. Land, 2022, 11(2):267. [21] 马仁锋, 朱保羽, 马静武, 等. 海域功能分类体系协调性判别方法[J]. 自然资源学报, 2022, 37(4):850-861. [22] Ma R F, Ji S W, Ma J W, et al. Exploring resource and environmental carrying capacity and suitability for use in marine spatial planning: A case study of Wenzhou, China [J]. Ocean & Coastal Management, 2022, 226:106258. [23] Rountree R A, Aguzzi J, Marini S, et al. Towards an optimal design for ecosystem-level ocean observatories [J]. Oceanography and Marine Biology, 2020, 58:79-106. [24] Aguzzi J, Doya C, Tecchio S, et al. Coastal observatories for monitoring of fish behaviour and their responses to environmental changes[J]. Reviews in Fish Biology and Fisheries, 2015, 25(3):463-483. [25] Bouchet P J, Meeuwig J J. Drifting baited stereo- videography: A novel sampling tool for surveying pelagic wildlife in offshore marine reserves[J]. Ecosphere, 2015, 6(8):1-29. [26] Santana-Garcon J, Newman S J, Langlois T J, et al. Effects of a spatial closure on highly mobile fish species: An assessment using pelagic stereo-BRUVs[J]. Journal of Experimental Marine Biology and Ecology, 2014, 460: 153-161. [27] Posen P E, Lee J, Large P A, et al. Using vessel monitoring system (VMS) data to assess the impact of marine protection boundaries on blue ling fishing northwest of the British Isles[J]. Aquatic Living Resources, 2014, 27(1):17-26. [28] 胡最, 汤国安, 闾国年. GIS作为新一代地理学语言的特征[J]. 地理学报, 2012, 67(7):867-877. [29] Depellegrin D, Hansen H S, Schr?der L, et al. Current status, advancements and development needs of geospatial decision support tools for marine spatial planning in European Seas[J]. Ocean & Coastal Management, 2021, 209:105644. [30] Jacquez G M, Maruca S L, Fortin M J. From fields to objects: A review of geographic boundary analysis[J]. Journal of Geographical Systems, 2000, 2(3):221-241. [31] P?narba?? K, Galparsoro I, Borja ?, et al. Decision support tools in marine spatial planning: Present applica- tions, gaps and future perspectives[J]. Marine Policy, 2017, 83:83-91. [32] Edgar G J, Stuart-Smith R D, Willis T J, et al. Global conservation outcomes depend on marine protected areas with five key features[J]. Nature, 2014, 506(7487):216- 220. [33] Schwartz-Belkin I, Portman M E. A review of geospatial technologies for improving marine spatial planning: Challenges and opportunities[J]. Ocean & Coastal Management, 2023, 231:106280. [34] 杨振姣. 海洋生态安全视域下北极海洋空间规划研究[J]. 太平洋学报, 2020, 28(1):76-88. [35] 杨振姣, 牛解放. 北极海洋生态安全协同治理策略研究[J]. 太平洋学报, 2021, 29(6):85-96. [36] 付玉. 南极海洋保护区事务的发展及挑战[J]. 中国工程科学, 2019, 21(6):9-17. [37] 刘冰玉, 冯 . 建立南极海洋保护区的规制模式探究[J]. 国际政治研究, 2021, 42(2):92-117. [38] 薛桂芳.“海洋命运共同体”理念:从共识性话语到制度性安排——以BBNJ协定的磋商为契机[J]. 法学杂志, 2021, 42(9):53-66. [39] 马仁锋, 张悦, 王江, 等. 中国沿海地区海洋产业结构演进及其增长效应[M]. 北京: 经济科学出版社, 2022. [40] Roberson L A, Lagabrielle E, Lombard A T, et al. Pelagic bioregionalisation using open-access data for better planning of marine protected area networks[J]. Ocean & Coastal Management, 2017, 148:214-230. [41] 央广网. 中国海洋保护行业报告: 我国已建立271个海洋保护区[EB/OL]. [2022-12-25]. http://travel.cnr.cn/ hydt/20200930/t20200930_525283924.shtml. |
| 备注/Memo: | 收稿日期: 2023-02-01. 宁波大学学报(理工版)网址: http://journallg.nbu.edu.cn/ 基金项目: 浙江省自然科学基金探索公益项目(LGF22D010002); 宁波市“科技创新2025”重大专项(2022Z181). 第一作者: 肖若兰(2000-), 女, 陕西安康人, 在读硕士研究生, 主要研究方向: 海洋经济与区域发展. E-mail: xiaoruolan@126.com *通信作者: 马仁锋(1979-), 男, 湖北枣阳人, 博导/教授, 主要研究方向: 海洋资源环境经济与陆海国土空间规划. E-mail: marfxf@126.com 宁波大学学报(理工版)网址:http://journallg.nbu.edu.cn/ |