Article ID Journal Published Year Pages File Type
1056812 Journal of Environmental Management 2012 10 Pages PDF
Abstract

Evaluating the sustainability of a target region for an ecological restoration programme is challenging because it involves different aspects of human society and environment as well as multiple disciplines. Carrying capacity provides a useful measure of the sustainability of a given region where an ecological restoration programme is implemented. In this article, the Yangou catchment, a geomorphic unit, was used as a case study in the Loess Hilly Region of China, where emergy synthesis was used to measure the environmental resources base. The specific standard of living in terms of emergy was employed to calculate carrying capacity over the period 1998–2005 and to assess the sustainability of the Yangou catchment where an ecological restoration programme was carried out. The results of the evaluation indicated that after implementing the ecological restoration programme, there was some improvement in the environmental aspects of the Yangou catchment during the study period, suggesting that the ecological restoration programme alleviated ecological degradation. However, several emergy-based indices and the support areas also illustrated that the ecological restoration programme was not successful enough in terms of preservation and utilisation of environmental resources to enhance sustainability. This indicates that further actions are necessary on conserving environmental resources, improving the emergy input structure for agricultural production and in lifestyle changes for the local people in living in the Yangou catchment.

► An ecological restoration programme was implemented in the Yangou catchment. ► We calculate emergy-based carrying capacity to assess sustainability of the catchment. ► The results illustrate that improvement in sustainability is not successful enough. ► We argue further actions are necessary on conserving and improving its environment.

Related Topics
Physical Sciences and Engineering Energy Renewable Energy, Sustainability and the Environment
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