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Research Article

A multi-dimensional vulnerability assessment of Pingtan Island (China) and Nile Delta (Egypt) using ecological Sensitivity-Resilience-Pressure (SRP) model

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Pages 1860-1882 | Received 01 Feb 2021, Accepted 31 Mar 2021, Published online: 05 May 2021

References

  • Adger N, Kelly N. 1999. Social vulnerability to climate change and the architecture of entitlements. Mitigation Adaptation Strategies Global Change. 4(3/4):253–266. doi:10.1023/A:1009601904210
  • Arkema KK, Guannel G, Verutes G, Wood SA, Guerry A, Ruckelshaus M, Kareiva P, Lacayo M, Silver JM. 2013. Coastal habitats shield people and property from sea-level rise and storms. Nat Clim Change. 3(10):913–918. doi:10.1038/nclimate1944
  • Ashraful Islam M, Mitra D, Dewan A, Akhter SH. 2016. Coastal multi-hazard vulnerability assessment along the Ganges deltaic coast of Bangladesh–A geospatial approach. Ocean Coastal Manage. 127(127):1–15. doi:10.1016/j.ocecoaman.2016.03.012
  • Baoping L, Shiting L. 2020. Comprehensive assessment and dynamic evolution of vulnerability in Guilin. Land, Resour Sci Technol Manage. 37(4):1–11.
  • Beibei W, Mingjun D, Qihui G, Jiahui A. 2019. Environmental vulnerability assessment of Nanchang City based on grid. J Ecol. 39(15):5460–5472. doi:10.5846/stxb201811112441
  • Boughton DA, Smith ER, O'neill RV. 1999. Regional vulnerability: a conceptual framework. Ecosyst Health. 5(4):312–322. doi:10.1046/j.1526-0992.1999.09949.x
  • Brooks N, Adger WN, Kelly PM. 2005. The determinants of vulnerability and adaptive capacity at the national level and the implications for adaptation. Global Environ Change. 15(2):151–163. doi:10.1016/j.gloenvcha.2004.12.006
  • Caizhi S, Xu X, Lu D. 2015. Evaluation of spatial structure analysis of groundwater vulnerability in Lower Liaohe Plain based on ArcGIS. J Ecol. 35(20):6635–6646.
  • Chao T. 2018. Study on ecological environmental vulnerability assessment in coastal areas of Fujian Province. Fujian: Agriculture and Forestry University.
  • Deyong H, Kun Q, Xingling W. 2015. Single window algorithm combined with landsat8 thermal infrared data to retrieve surface temperature. J Remote Sens. 19(6):964–976.
  • El-Adawy A, Negm AM, Elzeir MA, Saavedra OC, El-Shinnawy IA, Nadaoka K. 2013. Modeling the hydrodynamics and salinity of El-Burullus Lake (Nile Delta Northern Egypt). JOCET. 1(2):157–163. doi:10.7763/JOCET.2013.V1.37
  • El-Hattab MM. 2015. Improving Coastal Vulnerability Index of Nile Delta Coastal Zone, Egypt. Earth Sci Clim Change. 10:2157–7617.
  • El-Kashef A. 1983. Saltwater intrusion in Nile Delta. Ground Water. 21(2):160–167. doi:10.1111/j.1745-6584.1983.tb00713.x
  • El-Nahry AH, Doluschitz R. 2009. Climate change and its impacts on the coastal zone of Nile Delta. Environ Earth Sci. 59(7):1497–1506. doi:10.1007/s12665-009-0135-0
  • Guangcai X, Muyi K, Lina H, Yafei L, Yaru C. 2009. Ecological vulnerability and research progress. J Ecol. 29(9):2578–2588.
  • Han W, Liangxu W, Huaiyong S. 2020. Study on ecological vulnerability assessment of Yalong River Basin. Hubei Agricult Sci. 59(13):84–88.
  • Haochen Y. 2012. Research on the Remote Sensing Inversion and Spatial Distribution of Soil Organic Carbon in Forest, Fujian Agriculture and Forest University. Fujian Agriculture and Forest University. 21–29.
  • Hemida A, Khalifa M, Fayoumi M. 2018. Proactive coastal resilience: vulnerability of the Northern Nile Delta built environment. Social Sci Electron Publishing. The 1st International Conference: Towards A Better Quality of Life. 2:1–15.
  • Hereher H, El-Asmar HM, Hereher ME. 2010. Change detection of the coastal zone east of Nile Delta using remote sensing. Environ Earth Sci. 62(4):769–777.
  • Hereher ME. 2010. Vulnerability of Nile Delta to sea-level rise: an assessment using remote sensing. Geomat Nat Hazards Risk. 1(4):315–321. doi:10.1080/19475705.2010.516912
  • Hereher ME. 2011. Mapping coastal erosion at Nile Delta western promontory using Landsat imagery. Environ Earth Sci. 64(4):1117–1125. doi:10.1007/s12665-011-0928-9
  • Hoag HJ, Mohamoda DY. 2003. Nile basin cooperation: a review of the literature. Nordic Africa Inst. 36(2):501–502. doi:10.2307/3559425
  • Hongbing S. 2017. Research on Application of support vector machine in port logistics demand analysis. Shenzhen University.
  • Hui L, Xueyi S. 2020. Spatio-temporal Evolution and Zoning of Ecological Vulnerability of Jingle County. J Ecol Rural Environ. 36(1):34–43.doi:10.19741/j.issn.1673-4831.2019.0469
  • Huilin Z, Pansheng W, Yanjun H. 2020. Evaluation of ecological vulnerability and temporal and spatial changes in Wutai Mountain Area. J Ecol Rural Environ. 36(8):1026–1035.
  • Husen A, Mishra VK, Semwal KC, Kumar D. 2012. Biodiversity status in Ethiopia and challenges. Environ Pollut Biodivers. 1:31–79. doi:10.13140/RG.2.1.1788.9121
  • Jiahui Z, Xiaoxia H. 2008. Evaluation of ecological vulnerability. Study Yunnan Geographical Environ. 20(1):55–59. 71.
  • Jialei G, Yixiong H. 2016. Assesment of Ecosystem Vulnerability in Pingtan County Based on AHP and Fuzzy Comprehensive Evaluation. Protect Technol. 38(9):18–21. doi:10.136ftl/j.is#n.1D6S-5Z1S.2616.D;9.Q&6
  • Jialei G. 2017. Assessment of social and ecosystem vulnerability in Pingtan Island. Fujain: Fujian Normal University.
  • Jijun M, Yanru Z, Ping Z. 2010. Ecological Vulnerability Assessment of the Farming-Pastoral Transitional Zone in Northern China: A case study of Ordos City. Desert China. 30(4):850–856.
  • Jilin G, Miao L, Hongshan T. 2018. Analysis of the optical properties of typical surface emissivity based on the data of MODIS satellite telemetry. Journal  of Glaciology and Geocryology. 40(4):784–791. doi:10.7522/j.issn.1000-0240.2018.0084.
  • Jing Z, Shufang T. 2019. Proceedings of the 7th Academic Conference of Geology Resource Management and Sustainable Development. Hubei: Hubei Zhongke Geology and Environment Technology Institute.
  • Jingjing J, Jun Z, Jianbang W, Chao G, Ruoying C. 2020. Evaluation of ecological vulnerability in Shiyang River Basin based on SRP model. Resour Environ Arid Zones. 34(1):34–41. doi:10.13448/j.cnki.jalre.2020.005
  • Jinjin M, Huatai L. 2014. Eco-environment Vulnerability Analysis Based on Principal Component-Clustering Analysis Model:Taking Comprehensive Experimental Area of Pingtan as an Example. Environ Sci Technol. 37(1):179–182. doi:10.3969/j.issn.1003-6504.2013.11.034
  • Jun X, Guifang L, Yuhong W. 2016. Review and Prospect of Research on Ecological Vulnerability in China and Abroad. East China Economic Management. 30(4):149–162. doi:10.3969/j.issn.1007-5097.2016.04.025
  • Ke L, Dan W, Xiangbin K. 2019. Impact of traffic accessibility at different levels on ecological service value in Hunan Province. Hubei Agricultural Sciences. 58(2):70–75.
  • Kun Y, Lin Y, Guanghui L, Hanhu L. 2017. Environmental vulnerability assessment of Sichuan Province based on SRP model. Geophys Exploration Comput Technol. 39(2):291–295.
  • Liangge C. 2013. Ecological vulnerability assessment of Beibu Gulf economic zone in Guangxi. Guangxi: Guangxi Normal University.
  • Linhong Z. 2018. The ecological vulnerability assessment of island cities based on GIS and RS—taking Pingtan Island as an example. Fujian: Fuzhou University.
  • Lipeng Z. 2017. Suitability evaluation of urban land for Pingtan island——based on ecological sensitivity analysis. Fujian Architect. 35(1):1–5.
  • Mabrouk B, Arafa S, Farahat H, Badr M, Gampe D, Ludwig R. 2013. Impact of climate change on water and agriculture: challenges and possible solutions for Nile Delta. EGU Gen Assembly Conference Abstracts. 15:6293.
  • Mabrouk B, Farhat A-EH, Badr M, Ludwig R. 2013. Adaptation to the impact of sea-level rise in the Northeastern Nile Delta, Egypt. EGU Gen Assembly Conference Abstracts. 15:4042.
  • Mabrouk MB, Jonoski A, Solomatine D, Uhlenbrook S. 2013. A review of seawater intrusion in Nile Delta groundwater system - the basis for assessing impacts due to climate changes and water resources development. Hydrol Earth Syst Sci Discuss. 10(8):10873–10911.
  • Metzger MJ, Rounsevell MDA, Acosta-Michlik L, Leemans R, Schröter D. 2006. The vulnerability of ecosystem services to land-use change. Agricult, Ecosyst Environ. 114(1):69–85. doi:10.1016/j.agee.2005.11.025
  • Ming L, Henggui W. 2013. Discussion on prevention and control of soil and water loss in Pingtan. Subtropical Soil Water Conserv. 25(4):59–62.
  • Moran MS, Clarke TR, Inoue Y. 1994. Estimating crop water deficit using the relation between surface air temperature and spectral vegetation index. Remote Sens Environ. 49(3):246–263.
  • Morimoto J, Negishi J. 2019. Ecological resilience of ecosystems to human impacts: resilience of plants and animals. Landscape Ecol Eng. 15(2):131–132. doi:10.1007/s11355-019-00376-9
  • Negm AM, Saavedra O, El-Adawy A. 2016. Nile delta biography: Challenges and opportunities. In: Negm AM, editor. The Nile Delta. Springer: Cham, Switzerland. pp. 18–26. https://www.tandf.co.uk/journals/authors/style/reference/tf_USCSEB.pdf
  • Nofal ER, Amer MA, El-Didy SM, Fekry AM. 2015. Delineation and modeling of seawater intrusion into Nile Delta Aquifer: a new perspective. Water Sci. 29(2):156–166. doi:10.1016/j.wsj.2015.11.003
  • Peng C, Jian W, Shifeng F. 2013. Dynamic changes of landscape pattern and ecological effect analysis of Pingtan Haitan Island. Ecol Sci. 32(3):265–270.
  • Peng Z, Daojie W, Songtang H. 2020. Driving forces of NPP change in debris flow prone area: a case study of a typical region in SW China. Ecol Indic. 119:1–9.doi:10.1016/j.ecolind.2020.106811
  • Pingtan District Records Compilation Committee. 2000. County records in Pingtan. Beijing: Fang Zhi Publishing House.
  • Qiang F. 2017. A study on spatial-temporal differentiation of urban ecological vulnerability based on SRP model. Liaoning Normal University.
  • Sandholt I, Rasmussen K, Andersen J. 2002. A simple interpretation of the surface temperature/vegetation index space for assessment of surface moisture status. Remote Sens Environ. 79(2):213–224.
  • Shanshan Q, Jie G, Caiyun Q, Yuchu X, Ying Z. 2017. Assessment of ecological environmental vulnerability in Bailong River Basin of Gansu Province based on SRP model. Bull Soil Water Conserv. 37(1):224–228.
  • Sheng G, Guangxi C, Tao H, Lin Z, Min X. 2018. Dynamic assessment and driving force analysis of ecological security in island urbanization—taking Pingtan Island as an example. J Ecol. 38(7):2503–2511. doi:10.5846/stxb201704250746
  • Tianyi X, Jianjun B. 2017. Spatio-temporal analysis of spring drought in Shaanxi Province based on TVDI and meteorological data. Res Soil Water Conserv. 24(4):240–246.
  • Wenqian J, Guoyu R, Kanzhuo SN, Panfeng Z, Kangmin W, Yongjian R. 2019. Urban heat island effect and its contribution to observed temperature increase at WuHan Station, Central China. J Trop Meteorol. 25(1):102–113.
  • Wenquan Z, Yaozhong P, Jinshui Z. 2007. Estimation of net primary productivity of Chinese terrestrial vegetation based on remote sensing. Journal of Plant Ecology (Formerly Acta Phytoecologica Sinica). 31(3):413–424.
  • Wuningbate XL, Xaingpign M. 2020. Evaluation of land ecological vulnerability in Yerqiang River Basin. Geography Arid Zones. 191(3):296–305.
  • Xiaoguang Z. 2020. Ecological sensitivity assessment of Shanjiadian small watershed in Chaoyang County. Appl Technol Soil Water Conserv. 40(5):18–20.
  • Xiaojuan Z, Baoping S, Yan Z, Jinrong L, Xiangshan Z, Yinqian W, Yidan Q, Lei F. 2011. Evaluation of ecological vulnerability in Yunnan Province based on principal component analysis. J Ecol Environ. 20(1):109–113. doi:10.3969/j.issn.1674-5906.2011.01.019
  • Xiaole W, Zhenfeng L, Fei T. 2015. A remote sensing analysis of ecological changes caused by the construction of New Island City—taking Pingtan comprehensive experimental area of Fujian province as an example. J Appl Ecol. 26(2):541–547.
  • Xiaonan Z, Kelin W, Wei Z, Hongsong C, Xunyang H. 2009. The quantitative assessment of eco-environment vulnerability in karst regions of Northwest Guangxi. J Ecol. 29(2):201–209. doi:10.1360/972008-2465
  • Hang Z, Hai C, Qinqin S, Min Z, Di L. 2020. Spatiotemporal evolution and driving factors of landscape ecological vulnerability in Shaanxi Province. Arid Zone Res. 37(2):225–234. doi:10.13866/j.azr.2020.02.26
  • Xingqing Z, Meihua D, Yanli C, Zongkun T. 2014. Reservoirs monitoring in Guangxi based on HJ-1 Satellite Remote Sensing Images. J Water Resour. 45(4):427–434.
  • Xueling Z, Wenbo Y, Haisheng C, Xiaomin G. 2018. Review of the evaluation methods of regional eco-environmental vulnerability. Acta Ecologica Sinica. 38(16):5970–5981. doi:10.5846/stxb201708211502
  • Xuemei L, Jian L. 2003. Weight sensitivity analysis of comprehensive transportation multi-objective decision-making index. Railway Econ Res. 11(3):40–42.
  • Yang L. 2017. Evaluation of ecological status of island-type cities based on multi-element—taking Pingtan comprehensive experimental area as an example. Fuzhou University.
  • Yangzong ZX, Jun C, Lin L, Bangping Y. 2014. The research of the key technique of Tibet automatic drought monitoring system using MODIS data. Glacial Permafrost. 36(5):1245–1250.
  • Yates DN, Strzepek KM. 1998. Modeling the Nile Basin under climatic change. J Hydrol Eng. 3(2):98–108. doi:10.1061/(ASCE)1084-0699(1998)3:2(98)
  • Yifan Z. 2020. Analysis of Ecological Vulnerability in Northeast China International Basin Based on Remote Sensing Technology. China University of Geosciences.
  • Yohannes H, Soromessa T, Argaw M, Dewan A. 2021. Spatio-temporal changes in habitat quality and linkage with landscape characteristics in the Beressa watershed, Blue Nile Basin of Ethiopian highlands. J Environ Manage. 281(2):111885–111815. doi:10.1016/j.jenvman.2020.111885
  • Yonghua L, Qiang F, Xue W, Jianchao X, Shiyang W, Jun Y. 2015. Spatial and Temporal Differentiation of Ecological Vulnerability Under the Frequency of Natural Hazard Based on SRP Model: A Case Study in Chaoyang County. Geographic Sci. 35(11):1452–1459.
  • Yuantong J, Ye T, Shuanning Z. 2018. A study on ecological security pattern of Island City—taking Pingtan Island as an example. J Ecol. 38(3):769–777.
  • Yue Z, Demin Z, Zhihui L, Lin Q. 2020. Spatial and temporal dynamics of social-ecological resilience in Nepal from 2000 to 2015. Phys Chem Earth Parts A/B/C. 120:1–8.
  • Yuxiang Y. 2010. Analysis on present situation and countermeasures of Pingtan ecological environment. Chem Eng Equip. 39(8):222–224.
  • Yuxin F, Zhihua S. 2018. Assessment of ecological environmental vulnerability based on fuzzy analytic hierarchy process—taking Hubei section of Three Gorges Reservoir as an example. J Soil Water Conserv. 32(1):91–96.
  • Zhengjia L, Xingxiu Y, Lei L, Mei H. 2011. Assessment of ecological environmental vulnerability in Yimeng Mountain area based on SRP model. J Appl Ecol. 22(8):2084–2090. doi:10.13287/j.1001-9332.2011.0286
  • Zihui M, Shuming M, Shushen Z. 2019. Evaluation of ecological vulnerability and uncertainty analysis of Dalian city. Bull Soil Water Conserv. 230(3):243–248, 268, 319–320.

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