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Exploring global food security pattern from the perspective of spatio-temporal evolution 被引量:4

全球粮食安全格局的时空演化
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摘要 Food security is the primary prerequisite for achieving other Millennium Development Goals(MDGs).Given that the MDG of“halving the proportion of hungers by 2015”was not realized as scheduled,it will be more pressing and challenging to reach the goal of zero hunger by 2030.So there is high urgency to find the pattern and mechanism of global food security from the perspective of spatio-temporal evolution.In this paper,based on the analysis of database by using a multi-index evaluation method and radar map area model,the global food security level for 172 countries from 2000 to 2014 were assessed;and then spatial autocorrelation analysis was conducted to depict the spatial patterns and changing characteristics of global food security;then,multi-nonlinear regression methods were employed to identify the factors affecting the food security patterns.The results show:1)The global food security pattern can be summarized as“high-high aggregation,low-low aggregation”.The most secure countries are mainly distributed in Western Europe,North America,Oceania and parts of East Asia.The least secure countries are mainly distributed in sub-Saharan Africa,South Asia and West Asia,and parts of Southeast Asia.2)Europe and sub-Saharan Africa are hot and cold spots of the global food security pattern respectively,while in non-aggregation areas,Haiti,North Korea,Tajikistan and Afghanistan have long-historical food insecurity problems.3)The pattern of global food security is generally stable,but the internal fluctuations in the extremely insecure groups were significant.The countries with the highest food insecurity are also the countries with the most fluctuated levels of food security.4)The annual average temperature,per capita GDP,proportion of people accessible to clean water,political stability and non-violence levels are the main factors influencing the global food security pattern.Research shows that the status of global food security has improved since the year 2000,yet there are still many challenges such as unstable global food security and acute regional food security issues.It will be difficult to understand these differences from a single factor,especially the annual average temperature and annual precipitation.The abnormal performance of the above factors indicates that appropriate natural conditions alone do not absolutely guarantee food security,while the levels of agricultural development,the purchasing power of residents,regional accessibility,as well as political and economic stability have more direct influence. Food security is the primary prerequisite for achieving other Millennium Development Goals (MDGs). Given that the MDG of “halving the proportion of hungers by 2015” was not realized as scheduled, it will be more pressing and challenging to reach the goal of zero hunger by 2030. So there is high urgency to find the pattern and mechanism of global food security from the perspective of spatio-temporal evolution. In this paper, based on the analysis of database by using a multi-index evaluation method and radar map area model, the global food security level for 172 countries from 2000 to 2014 were assessed; and then spatial autocorrelation analysis was conducted to depict the spatial patterns and changing characteristics of global food security; then, multi-nonlinear regression methods were employed to identify the factors affecting the food security patterns. The results show: 1) The global food security pattern can be summarized as “high-high aggregation, low-low aggregation”. The most secure countries are mainly distributed in Western Europe, North America, Oceania and parts of East Asia. The least secure countries are mainly distributed in sub-Saharan Africa, South Asia and West Asia, and parts of Southeast Asia. 2) Europe and sub-Saharan Africa are hot and cold spots of the global food security pattern respectively, while in non-aggregation areas, Haiti, North Korea, Tajikistan and Afghanistan have long-historical food insecurity problems. 3) The pattern of global food security is generally stable, but the internal fluctuations in the extremely insecure groups were significant. The countries with the highest food insecurity are also the countries with the most fluctuated levels of food security. 4) The annual average temperature, per capita GDP, proportion of people accessible to clean water, political stability and non-violence levels are the main factors influencing the global food security pattern. Research shows that the status of global food security has improved since the year 2000, yet there are still many challenges such as unstable global food security and acute regional food security issues. It will be difficult to understand these differences from a single factor, especially the annual average temperature and annual precipitation. The abnormal performance of the above factors indicates that appropriate natural conditions alone do not absolutely guarantee food security, while the levels of agricultural development, the purchasing power of residents, regional accessibility, as well as political and economic stability have more direct influence.
作者 CAI Jianming MA Enpu LIN Jing LIAO Liuwen HAN Yan 蔡建明;马恩朴;林静;廖柳文;韩燕(Institute of Geographic Sciences and Natural Resources Research,CAS,Beijing 100101,China;Key Laboratory of Regional Sustainable Development Analysis and Modelling,CAS,Beijing 100101,China;School of Resources and Environment,University of Chinese Academy of Sciences,Beijing 100049,China)
出处 《Journal of Geographical Sciences》 SCIE CSCD 2020年第2期179-196,共18页 地理学报(英文版)
基金 National Natural Science Foundation of China,No.71734001。
关键词 food security assessment spatial pattern changing characteristics multi-nonlinear regression influencing factors food security assessment spatial pattern changing characteristics multi-nonlinear regression influencing factors
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  • 1刘明,顾海兵.我国粮食生产警情的确定[J].中国农村经济,1993(3):44-46. 被引量:11
  • 2吕新业,王济民,吕向东.我国食物安全的短期预测与预警研究[J].农业经济问题,2006,27(5):49-55. 被引量:15
  • 3[1]Oldeman L R. The global extent of soil degradation[M]. In: G reenland D J, Szaboles T eds. Soil Resilience and Sustainable Land Use. Common wealth Agricultu ral Bureau International, Lodon: Wallingford, U. K. 1994.
  • 4[2]Dregne H E. Erosion and soil productivity in Africa[J]. Journal of So il and Water Conservation, 1990, 45(4): 432-436.
  • 5[3]Lal R. Erosion-crop productivity relationships for soil of Africa[J]. Soil Science Society of America Journal, 1995, 59(3):661-667.
  • 6[4]Lal R. Hall G F, Miller F P. Soil degradation: I. Basic Processes[J ]. In: Land Degradation and Rehabilitation. 1989(1):51-69.
  • 7[5]Costanza R, d'Arge R, de Groot R et al. The value of the world's eco system services and natural capital[J]. Nature, 1997,387:253-260.
  • 8[6]Dregne H E. Erosion and soil productivity in Asia[J]. Journal of Soil and Water Conservation, 1992,47(1): 8-13.
  • 9Turral H, Burke J, Faures J. FAO water reports No 36: Climate Change, Water and Food Security[R]. Rome: FAO, 2001:174.
  • 10World Water Assessment Programme. The United Nations World Water Development Report 2: Water a Shared Responsibility[R]. Paris: UNESCO, 2006.

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