Geographical distribution of ecological footprint and sustainability analysis for Liaoning Province

被引:10
作者
Wang Qing
Gu Xiaowei
Liu Jianxing
Li Guangjun
Ding Yi
Liu Jingzhi
机构
[1] Northeastern University,Resources and Ecological Economics Research Center
关键词
Liaoning; sustainable development; ecological footprint; bio-capacity;
D O I
10.1007/BF02837411
中图分类号
学科分类号
摘要
This paper presents the detailed results and analyses on the ecological footprints and bio-capacities of the individual cities and the province as a whole for the year 2001, providing a clear picture of sustainability for the province. Results show that the ecological footprints of most cities in Liaoning exceeded their respective bio-capacities, incurring high ecological deficits. The ecological deficit of the province as a whole was 1.31 ha/cap. Those cities with resources extraction and/or primary material-making as their major industries constitute the “ecologically black band”, whose ecological deficits ranged from 2.45 to 5.23 ha/cap, the highest of all cities in the province. Fossil energy consumption was the major source of footprint amounting to 1.63 ha/cap at the provincial level, taking up 67.3% of the total. For cropland, modest ecological surpluses occurred in Jinzhou, Tieling, Huludao, and Panjin while modest ecological deficits in Dalian, Benxi, Fushun, and Dandong, resulting in an overall surplus for the province. Liaoning had a certain level of surplus in fishing ground (water area), mainly distributed in the coastal cities of Dalian, Panjin, Huludao, Yingkou, Jinzhou, and Dandong. Most cities had a small ecological deficit in pasture and all had a small ecological surplus in forest. The eco-efficiency, expressed as GDP value per hectare of footprint, exhibits high variations among the cities, with the highest (Shenyang) more than 10 times the lowest (Fuxin). Cities with manufacture, high-tech, and better developed service industries had high eco-efficiency, while those with resources extraction, primary material-making, and less developed service industries had low eco-efficiency. Based on the components and geographical distribution of ecological footprint, strategic policy implications are outlined for Liaoning’s development toward a sustainable future.
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页码:303 / 312
页数:9
相关论文
共 25 条
[1]  
Stoglehner Gernot(2003)Ecological footprint: a tool for assessing sustainable energy supplies Journal of Cleaner Production 11 267-277
[2]  
Senbel Maged(2003)The ecological footprint: a non-monetary metric of human consumption applied to North America Globed Environmental Change 13 83-100
[3]  
McDaniels Timothy(2001)A modified ecological footprint method and its application to Australia Ecological Economics 37 229-255
[4]  
Dowlatabadi Hadi(2003)Economic development and environmental protection: an ecological economics perspective Environmental Monitoring and Assessment 86 29-45
[5]  
Lenzen M(2000)Ecological footprints of Benin, Bhutan, Costa Rica and the Netherlands Ecological Economics 34 115-130
[6]  
Murray S A(2001)Ecological footprint: reply to A.R.B. Ferguson Ecological Economics 37 1-3
[7]  
Rees W E(1999)Evaluating the use of natural capital with the ecological footprint: application in Sweden and sub regions Ambio 28 604-612
[8]  
Van Vuuren D P(2003)Value of the coordination to eco-economy in mountain district based on ecological footprint model Journal of Mountain Research 21 324-330
[9]  
Smeets E M W(2003)Footprint on the Earth: the environmental consequences of modernity American Sociological Review 68 279-300
[10]  
Vuuren Van(2003)The calculation and analysis of ecological footprints, diversity and development capacity of China Journal of Geographical Sciences 13 19-26