Citation: | Jiang Qutu,Ding Jieqiong,Ye Guanqiong, et al. Spatial assessment of cumulative impact on China’s marine ecosystems[J]. Haiyang Xuebao,2021, 43(9):146–156 doi: 10.12284/hyxb2021058 |
[1] |
Chen Dongsheng, Wang Xiaotong, Li Yue, et al. High-spatiotemporal-resolution ship emission inventory of China based on AIS data in 2014[J]. Science of the Total Environment, 2017, 609: 776−787. doi: 10.1016/j.scitotenv.2017.07.051
|
[2] |
刘子飞. 我国近海捕捞渔业管理政策困境、逻辑与取向[J]. 生态经济, 2018, 34(11): 47−53.
Liu Zifei. Research on management policies of marine capture fishery resources: issues, logic and choice[J]. Ecological Economy, 2018, 34(11): 47−53.
|
[3] |
陈石泉, 王道儒, 吴钟解, 等. 海南岛东海岸海草床近10 a变化趋势探讨[J]. 海洋环境科学, 2015, 34(1): 48−53.
Chen Shiquan, Wang Daoru, Wu Zhongjie, et al. Discussion of the change trend of the seagrass beds in the east coast of Hainan Island in nearly a decade[J]. Marine Environmental Science, 2015, 34(1): 48−53.
|
[4] |
余克服. 南海珊瑚礁及其对全新世环境变化的记录与响应[J]. 中国科学: 地球科学, 2012, 55(8): 1217−1229. doi: 10.1007/s11430-012-4449-5
Yu Kefu. Coral reefs in the South China Sea: their response to and records on past environmental changes[J]. Science China Earth Science, 2012, 55(8): 1217−1229. doi: 10.1007/s11430-012-4449-5
|
[5] |
Sun Zhigao, Sun Wenguang, Tong Chuan, et al. China’s coastal wetlands: conservation history, implementation efforts, existing issues and strategies for future improvement[J]. Environment International, 2015, 79: 25−41. doi: 10.1016/j.envint.2015.02.017
|
[6] |
Halpern B S, Walbridge S, Selkoe K A, et al. A global map of human impact on marine ecosystems[J]. Science, 2008, 319(5865): 948−952. doi: 10.1126/science.1149345
|
[7] |
Halpern B S, Frazier M, Potapenko J, et al. Spatial and temporal changes in cumulative human impacts on the world’s ocean[J]. Nature Communications, 2015, 6: 7615. doi: 10.1038/ncomms8615
|
[8] |
Micheli F, Halpern B S, Walbridge S, et al. Cumulative human impacts on Mediterranean and Black Sea marine ecosystems: assessing current pressures and opportunities[J]. PLoS One, 2013, 8(12): e79889. doi: 10.1371/journal.pone.0079889
|
[9] |
Andersen J H, Al-Hamdani Z, Harvey E T, et al. Relative impacts of multiple human stressors in estuaries and coastal waters in the North Sea–Baltic Sea transition zone[J]. Science of the Total Environment, 2020, 704: 135316. doi: 10.1016/j.scitotenv.2019.135316
|
[10] |
Beauchesne D, Daigle R M, Vissault S, et al. Characterizing exposure to and sharing knowledge of drivers of environmental change in the St. Lawrence system in Canada[J]. Frontiers in Marine Science, 2020, 7: 383. doi: 10.3389/fmars.2020.00383
|
[11] |
Foden J, Rogers S I, Jones A P. Human pressures on UK seabed habitats: a cumulative impact assessment[J]. Marine Ecology Progress Series, 2011, 428: 33−47. doi: 10.3354/meps09064
|
[12] |
Parravicini V, Rovere A, Vassallo P, et al. Understanding relationships between conflicting human uses and coastal ecosystems status: a geospatial modeling approach[J]. Ecological Indicators, 2012, 19: 253−263. doi: 10.1016/j.ecolind.2011.07.027
|
[13] |
Knights A M, Piet G J, Jongbloed R H, et al. An exposure-effect approach for evaluating ecosystem-wide risks from human activities[J]. ICES Journal of Marine Science, 2015, 72(3): 1105−1115. doi: 10.1093/icesjms/fsu245
|
[14] |
Halpern B S, Frazier M, Afflerbach J, et al. Recent pace of change in human impact on the world’s ocean[J]. Scientific Reports, 2019, 9: 11609. doi: 10.1038/s41598-019-47201-9
|
[15] |
Kroodsma D A, Mayorga J, Hochberg T, et al. Tracking the global footprint of fisheries[J]. Science, 2018, 359(6378): 904−908. doi: 10.1126/science.aao5646
|
[16] |
Global Fishing Watch[EB/OL]. [2020−10−13]. https://globalfishingwatch.org/map-and-data/.
|
[17] |
徐新良. 中国人口空间分布公里网格数据集[EB/OL]. [2020−10−13]. 中国科学院资源环境科学数据中心数据注册与出版系统(http://www.resdc.cn/DOI).https://doi.org/10.12078/2017121101.
Xu Xinliang. China’s population spatial distribution kilometer grid dataset[EB/OL]. [2020−10−13]. Data Registration and Publishing System of the Resource and Environmental Science Data Center of the Chinese Academy of Sciences (http://www.resdc.cn/DOI). https://doi.org/10.12078/2017121101.
|
[18] |
Jiang Qutu, He Junyu, Wu Jiaping, et al. Space-time characterization and risk assessment of nutrient pollutant concentrations in China’s near seas[J]. Journal of Geophysical Research: Oceans, 2019, 124(7): 4449−4463. doi: 10.1029/2019JC015038
|
[19] |
Xiao Xi, Agustí S, Pan Yaoru, et al. Warming amplifies the frequency of harmful algal blooms with eutrophication in Chinese coastal waters[J]. Environmental Science & Technology, 2019, 53(22): 13031−13041.
|
[20] |
中华人民共和国自然资源部. 2015年海水水质监测信息 [EB/OL]. [2020−10−13]. http://gc.mnr.gov.cn/201806/t20180614_1794781.html.
Ministry of Natural Resources of the People’s Republic of China. Sea water quality monitoring information 2015 [EB/OL]. [2020−10−13]. http://gc.mnr.gov.cn/201806/t20180614_1794781.html.
|
[21] |
Schlegel R W, Oliver E C J, Wernberg T, et al. Nearshore and offshore co-occurrence of marine heatwaves and cold-spells[J]. Progress in Oceanography, 2017, 151: 189−205. doi: 10.1016/j.pocean.2017.01.004
|
[22] |
AVISO Satellite Altimetry Data [EB/OL]. [2020−10−13]. https://www.aviso.altimetry.fr/en/data/products.html.
|
[23] |
Marineregions. org [EB/OL]. [2020−10−13]. https://www.marineregions.org/downloads.php.
|
[24] |
Murray N J, Phinn S R, DeWitt M, et al. The global distribution and trajectory of tidal flats[J]. Nature, 2019, 565(7738): 222−225. doi: 10.1038/s41586-018-0805-8
|
[25] |
Chen Bangqian, Xiao Xiangming, Li Xiangping, et al. A mangrove forest map of China in 2015: analysis of time series Landsat 7/8 and Sentinel-1A imagery in Google Earth Engine cloud computing platform[J]. ISPRS Journal of Photogrammetry and Remote Sensing, 2017, 131: 104−120. doi: 10.1016/j.isprsjprs.2017.07.011
|
[26] |
UNEP-WCMC [EB/OL]. [2020−10−13]. https://www.unep-wcmc.org/resources-and-data.
|
[27] |
NOAA National Centers for Environmental Information (NCEI). ETOPO1 data sources [EB/OL]. [2020−10−13]. https://www.ngdc.noaa.gov/mgg/global/etopo1sources.html.
|
[28] |
Feist B E, Levin P S. Novel indicators of anthropogenic influence on marine and coastal ecosystems[J]. Frontiers in Marine Science, 2016, 3: 113.
|
[29] |
Halpern B S, Fujita R. Assumptions, challenges, and future directions in cumulative impact analysis[J]. Ecosphere, 2013, 4(10): 1−11.
|
[30] |
Smale D A, Wernberg T, Oliver E C J, et al. Marine heatwaves threaten global biodiversity and the provision of ecosystem services[J]. Nature Climate Change, 2019, 9: 306−312. doi: 10.1038/s41558-019-0412-1
|
[31] |
Fernandes M D L, Quintela A, Alves F L. Identifying conservation priority areas to inform maritime spatial planning: a new approach[J]. Science of the Total Environment, 2018, 639: 1088−1098. doi: 10.1016/j.scitotenv.2018.05.147
|
[32] |
Batista M I, Henriques S, Pais M P, et al. Assessment of cumulative human pressures on a coastal area: integrating information for MPA planning and management[J]. Ocean & Coastal Management, 2014, 102: 248−257.
|
[33] |
Kelly C, Gray L, Shucksmith R J, et al. Investigating options on how to address cumulative impacts in marine spatial planning[J]. Ocean & Coastal Management, 2014, 102: 139−148.
|
[34] |
Wang Junjie, Beusen A H W, Liu Xiaochen, et al. Aquaculture production is a large, spatially concentrated source of nutrients in Chinese freshwater and coastal seas[J]. Environmental Science & Technology, 2020, 54(3): 1464−1474.
|
[35] |
Bugnot A B, Mayer-Pinto M, Airoldi L, et al. Current and projected global extent of marine built structures[J]. Nature Sustainability, 2021, 4: 33−41. doi: 10.1038/s41893-020-00595-1
|