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基于压力-状态-响应框架的一种新的遥感指标,用于评估区域生态变化。

A new remote sensing index based on the pressure-state-response framework to assess regional ecological change.

机构信息

College of Environment and Resources, Fuzhou University, Fuzhou, 350002, Fujian, China.

College of Transportation and Civil Engineering, Fujian Agriculture and Forestry University, Fuzhou, 350002, Fujian, China.

出版信息

Environ Sci Pollut Res Int. 2019 Feb;26(6):5381-5393. doi: 10.1007/s11356-018-3948-0. Epub 2019 Jan 3.

Abstract

Ecological indicators have widespread appeal to scientists, environmental managers, and the general public. Remote sensing is unique in its capability to record variety of spatio-temporal information on land surface with complete coverage, especially with regard to larger spatial scales, which has been proven to be an effective data source to create indicators to rapidly identify regional eco-environment. In this paper, a new index, remote sensing based ecological index (RSEI) based on the pressure-state-response (PSR) framework, was applied to assess regional ecological changes in Fuzhou City of Fujian Province, southeastern China, using Landsat ETM+/OLI/TIRS images. Taking the advantages of being totally free of artificial interference in the calculation using principal components analysis (PCA) to assign weights of each variable, the RSEI can assess the regional ecological status more objectively and easily. The effectivity of the new index was validated by four approaches, including point-based, classification-based, correlation-based, and urban-rural-gradient-based comparisons. The case study showed that Fuzhou has witnessed ecological improvement during the study period, with the value of RSEI increasing from 0.663 in 2000 to 0.675 in 2016. Spatial variation analysis showed that the poor level of RSEI distributed mostly in the central urban areas, and the ecological degradation was attributed to the fast expansion of the built-up area, characterized by increasing greatly in the value of the normalized differential built up and soil index (NDBSI) in such areas.

摘要

生态指标对科学家、环境管理者和公众具有广泛的吸引力。遥感在记录土地表面各种时空信息方面具有独特的能力,能够实现完全覆盖,尤其是在较大的空间尺度上,这已被证明是创建能够快速识别区域生态环境的指标的有效数据源。在本文中,应用了一种新的基于压力-状态-响应(PSR)框架的遥感生态指数(RSEI),利用 Landsat ETM+/OLI/TIRS 图像评估了中国东南部福建省福州市的区域生态变化。该指数利用主成分分析(PCA)完全免除了人为干扰的计算优势,为每个变量分配权重,从而能够更客观、更轻松地评估区域生态状况。通过基于点、基于分类、基于相关性和基于城乡梯度的比较等四种方法验证了新指数的有效性。案例研究表明,在研究期间,福州的生态状况有所改善,RSEI 值从 2000 年的 0.663 增加到 2016 年的 0.675。空间变化分析表明,RSEI 值较低的区域主要分布在中心城区,生态退化归因于建成区的快速扩张,这些区域的归一化差异建筑指数(NDBSI)值显著增加。

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