Literature DB >> 32018981

A load-carrier perspective examination on the change of ecological environment carrying capacity during urbanization process in China.

Mengcheng Zhu1, Liyin Shen2, Vivian W Y Tam3, Zhi Liu4, Tianheng Shu5, Wenzhu Luo6.   

Abstract

Urbanization has prompted a dramatic social and economic development during the past decades in China. As a long-term national strategy, urbanization can only be implemented effectively with sufficient and sustainable ecological environment resources. By appreciating that the ecological environment carrying capacity (EECC) is a yardstick for guiding the practice of sustainable urban development, it is therefore pressing to examine the change of EECC adequately, so that the sustainable urbanization can be addressed appropriately. This paper develops a new method from load-carrier perspective to explore the change of EECC performance in the rapid urbanizing China. The EECC performance on water, land, atmosphere and overall perspectives were measured for 30 provinces in China based on the established method. The results show that most provinces in China are experiencing an improving EECC performance during the urbanization process, particularly with an obvious progress in land dimension. In referring to the spatial difference of overall EECC performance, the gap between 30 provinces has been narrowing during surveyed years. However, few provinces including Chongqing, Shandong and Jiangxi have undergone a degradation in overall EECC performance. The EECC performance in atmosphere dimension is still considered as a challenge faced by most provinces, evidenced by high level of PM2.5 concentration. These research findings provide valuable references not only for Chinese governments to formulate effective policy instruments and strategy measures for improving ecological environmental carrying status, but also for researchers to further study in the ecological environment carrying capacity in the context of other countries.
Copyright © 2020 Elsevier B.V. All rights reserved.

Keywords:  Carrier; Ecological environment carrying capacity (EECC); Indicator system; Load; Urbanization

Year:  2020        PMID: 32018981     DOI: 10.1016/j.scitotenv.2020.136843

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


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  4 in total

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