Resources and Environmental Research Academy, North China Electric Power University, Beijing 102206, China.
Int J Environ Res Public Health. 2018 Jan 13;15(1):128. doi: 10.3390/ijerph15010128.
Assessing and quantifying atmospheric vulnerability is a key issue in urban environmental protection and management. This paper integrated the Analytical hierarchy process (AHP), fuzzy synthesis evaluation and Geographic Information System (GIS) spatial analysis into an Exposure-Sensitivity-Adaptive capacity (ESA) framework to quantitatively assess atmospheric environment vulnerability in the Beijing-Tianjin-Hebei (BTH) region with spatial and temporal comparisons. The elaboration of the relationships between atmospheric environment vulnerability and indices of exposure, sensitivity, and adaptive capacity supports enable analysis of the atmospheric environment vulnerability. Our findings indicate that the atmospheric environment vulnerability of 13 cities in the BTH region exhibits obvious spatial heterogeneity, which is caused by regional diversity in exposure, sensitivity, and adaptive capacity indices. The results of atmospheric environment vulnerability assessment and the cause analysis can provide guidance to pick out key control regions and recognize vulnerable indicators for study sites. The framework developed in this paper can also be replicated at different spatial and temporal scales using context-specific datasets to support environmental management.
评估和量化大气脆弱性是城市环境保护和管理的关键问题。本文将层次分析法(AHP)、模糊综合评价和地理信息系统(GIS)空间分析集成到暴露-敏感性-适应能力(ESA)框架中,对京津冀地区的大气环境脆弱性进行了时空比较的定量评估。大气环境脆弱性与暴露、敏感性和适应能力指标之间关系的阐述,支持了大气环境脆弱性的分析。研究结果表明,京津冀地区 13 个城市的大气环境脆弱性表现出明显的空间异质性,这是由暴露、敏感性和适应能力指数的区域多样性引起的。大气环境脆弱性评估结果和原因分析可为选择关键控制区域和识别研究地点的脆弱指标提供指导。本文所提出的框架还可以使用特定于上下文的数据集在不同的时空尺度上进行复制,以支持环境管理。