Integrated Evaluations of Resource and Environment Carrying Capacity of the Huaihe River Ecological and Economic Belt in China

The evaluations of resource and environment carrying capacity and territorial development suitability, also referred to as “double evaluations”, have been taken by China as an important direction in territorial space planning. Based on the evaluation of resource and environment carrying capacity, th...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Wei-Ling Hsu, Xijuan Shen, Haiying Xu, Chunmei Zhang, Hsin-Lung Liu, Yan-Chyuan Shiau
Formato: article
Lenguaje:EN
Publicado: MDPI AG 2021
Materias:
S
Acceso en línea:https://doaj.org/article/612b16e0539448be8d7f5a4917f4f3e4
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:612b16e0539448be8d7f5a4917f4f3e4
record_format dspace
spelling oai:doaj.org-article:612b16e0539448be8d7f5a4917f4f3e42021-11-25T18:09:24ZIntegrated Evaluations of Resource and Environment Carrying Capacity of the Huaihe River Ecological and Economic Belt in China10.3390/land101111682073-445Xhttps://doaj.org/article/612b16e0539448be8d7f5a4917f4f3e42021-10-01T00:00:00Zhttps://www.mdpi.com/2073-445X/10/11/1168https://doaj.org/toc/2073-445XThe evaluations of resource and environment carrying capacity and territorial development suitability, also referred to as “double evaluations”, have been taken by China as an important direction in territorial space planning. Based on the evaluation of resource and environment carrying capacity, the double evaluations can contribute to protecting ecological safety and territorial safety and promoting regional sustainable development. The focus of this study was to integratedly evaluate the resource and environment carrying capacity of the Huaihe River Ecological and Economic Belt. First, the overall weights of the factors at the dimension level and the index level in the established integration evaluation system were calculated with the fuzzy analytical hierarchy process (FAHP) method; and then, using the linear weighted function, the overall resource and environment carrying capacities of 25 cities in the belt were calculated. On that basis, the resource and environment carrying capacity evaluation model was established. Through model analysis, this study comprehensively investigated the resource and environment carrying capacity of the Huaihe River Eco-economic Belt and provided a foundation for the future territorial space planning and layout of the Huaihe River Eco-economic Belt.Wei-Ling HsuXijuan ShenHaiying XuChunmei ZhangHsin-Lung LiuYan-Chyuan ShiauMDPI AGarticleHuaihe River Ecological and Economic Beltresource and environment carrying capacity evaluationfuzzy analytical hierarchy process (FAHP)AgricultureSENLand, Vol 10, Iss 1168, p 1168 (2021)
institution DOAJ
collection DOAJ
language EN
topic Huaihe River Ecological and Economic Belt
resource and environment carrying capacity evaluation
fuzzy analytical hierarchy process (FAHP)
Agriculture
S
spellingShingle Huaihe River Ecological and Economic Belt
resource and environment carrying capacity evaluation
fuzzy analytical hierarchy process (FAHP)
Agriculture
S
Wei-Ling Hsu
Xijuan Shen
Haiying Xu
Chunmei Zhang
Hsin-Lung Liu
Yan-Chyuan Shiau
Integrated Evaluations of Resource and Environment Carrying Capacity of the Huaihe River Ecological and Economic Belt in China
description The evaluations of resource and environment carrying capacity and territorial development suitability, also referred to as “double evaluations”, have been taken by China as an important direction in territorial space planning. Based on the evaluation of resource and environment carrying capacity, the double evaluations can contribute to protecting ecological safety and territorial safety and promoting regional sustainable development. The focus of this study was to integratedly evaluate the resource and environment carrying capacity of the Huaihe River Ecological and Economic Belt. First, the overall weights of the factors at the dimension level and the index level in the established integration evaluation system were calculated with the fuzzy analytical hierarchy process (FAHP) method; and then, using the linear weighted function, the overall resource and environment carrying capacities of 25 cities in the belt were calculated. On that basis, the resource and environment carrying capacity evaluation model was established. Through model analysis, this study comprehensively investigated the resource and environment carrying capacity of the Huaihe River Eco-economic Belt and provided a foundation for the future territorial space planning and layout of the Huaihe River Eco-economic Belt.
format article
author Wei-Ling Hsu
Xijuan Shen
Haiying Xu
Chunmei Zhang
Hsin-Lung Liu
Yan-Chyuan Shiau
author_facet Wei-Ling Hsu
Xijuan Shen
Haiying Xu
Chunmei Zhang
Hsin-Lung Liu
Yan-Chyuan Shiau
author_sort Wei-Ling Hsu
title Integrated Evaluations of Resource and Environment Carrying Capacity of the Huaihe River Ecological and Economic Belt in China
title_short Integrated Evaluations of Resource and Environment Carrying Capacity of the Huaihe River Ecological and Economic Belt in China
title_full Integrated Evaluations of Resource and Environment Carrying Capacity of the Huaihe River Ecological and Economic Belt in China
title_fullStr Integrated Evaluations of Resource and Environment Carrying Capacity of the Huaihe River Ecological and Economic Belt in China
title_full_unstemmed Integrated Evaluations of Resource and Environment Carrying Capacity of the Huaihe River Ecological and Economic Belt in China
title_sort integrated evaluations of resource and environment carrying capacity of the huaihe river ecological and economic belt in china
publisher MDPI AG
publishDate 2021
url https://doaj.org/article/612b16e0539448be8d7f5a4917f4f3e4
work_keys_str_mv AT weilinghsu integratedevaluationsofresourceandenvironmentcarryingcapacityofthehuaiheriverecologicalandeconomicbeltinchina
AT xijuanshen integratedevaluationsofresourceandenvironmentcarryingcapacityofthehuaiheriverecologicalandeconomicbeltinchina
AT haiyingxu integratedevaluationsofresourceandenvironmentcarryingcapacityofthehuaiheriverecologicalandeconomicbeltinchina
AT chunmeizhang integratedevaluationsofresourceandenvironmentcarryingcapacityofthehuaiheriverecologicalandeconomicbeltinchina
AT hsinlungliu integratedevaluationsofresourceandenvironmentcarryingcapacityofthehuaiheriverecologicalandeconomicbeltinchina
AT yanchyuanshiau integratedevaluationsofresourceandenvironmentcarryingcapacityofthehuaiheriverecologicalandeconomicbeltinchina
_version_ 1718411561932947456