4.7 Article

Natural and human impacts on ecosystem services in Guanzhong - Tianshui economic region of China

Journal

ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH
Volume 23, Issue 7, Pages 6803-6815

Publisher

SPRINGER HEIDELBERG
DOI: 10.1007/s11356-015-5867-7

Keywords

Ecosystem services; Human drivers; Natural drivers; Guanzhong-Tianshui economic region

Funding

  1. National Natural Science Foundation of China [41371020]
  2. Fundamental Research Funds for the Central Universities [GK201502010]

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Due to the accelerated growth of society, the gaps between the capacity of ecosystems to provide services and human needs are steadily widening. Natural, semi-natural, or managed ecosystems had been able to provide ecosystem services to meet the needs of social development. Four agricultural ecosystem services (net primary production (NPP), carbon sequestration and oxygen production (CSOP), water interception, soil conservation and agriculture production) were quantified in Guanzhong-Tianshui economic region. Estimates of ecosystem services were obtained from the analysis of satellite imagery and the use of well-known models. Based on the ecological services in Guanzhong-Tianshui economic region, this study mainly analysed the driving mechanism of the changes from the two aspects of natural drivers and human drivers. Natural drivers (climate, soil, elevation, land cover) had incentive to the ecological services. Human activity was quantified by an integrated human activity index (HAI) based on population density, farmland ratio, and the influence of road networks and residential areas. We found relationships between ecosystem services, human activities and many natural factors, however these varied according to the service studied. Human activities were mostly negatively related to each ecosystem services, while population and residential land ware positively related to agricultural production. Land use change had made a contribution to ecosystem services. Based on the selected ecosystem services and HAI, we provided sustainable ecosystem management suggestions.

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