区域环境与生态

  • 张妍,杨志峰.北京城市物质代谢的能值分析与生态效率评估[J].环境科学学报,2007,27(11):1892-1899

  • 北京城市物质代谢的能值分析与生态效率评估
  • Emergy analysis of urban material metabolism and evaluation of eco-efficiency in Beijing
  • 基金项目:国家重点基础研究计划项目(973)(No.2005CB724204);国家自然科学基金项目(No.40701004)
  • 作者
  • 单位
  • 张妍
  • 环境模拟与污染控制国家重点实验室, 北京师范大学环境学院, 北京 100875
  • 杨志峰
  • 环境模拟与污染控制国家重点实验室, 北京师范大学环境学院, 北京 100875
  • 摘要:城市如同生命体一样,需要持续不断的代谢过程完成其正常运转.城市可持续发展研究的关键是城市物质代谢流量及其代谢效率研究,但物质代谢流量仅能反映代谢速率,而其生态效率则反映了支持社会经济发展的物质代谢能力.采用能值分析方法,引入"生态效率"概念,构建了城市物质代谢生态效率的度量模型,从代谢流量及其效率2个方面核算了北京市资源环境及经济发展的代谢状况.结果表明:1990~2004年,北京市可利用总能值非常丰富,经济发展程度较高;来自本土可更新自然资源相对匮乏,大部分来源于不可更新资源和系统购买的资源与服务;城市
  • Abstract:Acity, considered as a life system, relies on metabolic processes for its operation. The keys to studying urban sustainable development are material metabolic flux and metabolic efficiency, but urban material metabolic flux can reflect the metabolic rate, and its eco-efficiency can determine the metabolic capacity to support socio-economic development. By introducing the concept of eco-efficiency based on emergy analysis, a model of eco-efficiency of urban material metabolism is proposed, and the metabolic flux and metabolic efficiency of the Beijing ecosystem are calculated. The results show that, from 1990 to 2004, the total emergy utilized in the whole system was abundant and the level of economic develoment was high, but local renewable resources were comparatively deficient, so economic development depended on input from the outside environment. The renewable resources used are limited, the recycling of waste should be improved and the pressure on the environment is high. The index of eco-efficiency is increasing, and the eco-efficiency of Beijing in 2004 is 3.6 times than that in 1990. It shows improvement in its capacity of self-organization, development potential and regenerative capacity. The keys to improving the eco-efficiency of urban material metabolism are increasing economic efficiency, resource use efficiency and environmental efficiency, and building a recycling chain for resource utilization of waste.

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