Optimization and classification control of permanent basic farmland based on quality classification

Permanent basic farmland plays an important role in stabilizing agricultural production and ensuring national food security. Therefore, it is necessary to reasonably delineate and control permanent basic farmland. This article is based on the idea of classifying the quality of cultivated land resour...

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Main Authors: Wei Wang, Yiling Chen, Kun Liu, Yingchun Dang, Guilong Li, Liangyou Wen, Yun Cao
Format: Article
Language:English
Published: Frontiers Media S.A. 2024-04-01
Series:Frontiers in Environmental Science
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fenvs.2024.1331534/full
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author Wei Wang
Yiling Chen
Kun Liu
Yingchun Dang
Guilong Li
Liangyou Wen
Yun Cao
author_facet Wei Wang
Yiling Chen
Kun Liu
Yingchun Dang
Guilong Li
Liangyou Wen
Yun Cao
author_sort Wei Wang
collection DOAJ
description Permanent basic farmland plays an important role in stabilizing agricultural production and ensuring national food security. Therefore, it is necessary to reasonably delineate and control permanent basic farmland. This article is based on the idea of classifying the quality of cultivated land resources, combined with the rules for the delineation of permanent basic farmland, and from the perspective of the synergy of “suitability-connectivity-stability” of cultivated land, a indicator system is constructed. Application of suitability, connectivity, and stability evaluation methods. Taking Zhangshu City, Jiangxi Province as an example, the status of cultivated land resources is comprehensively evaluated, and permanent basic farmland is optimized and graded for protection. The results show that: (1) the arable land in Zhangshu City is mainly of medium suitability, medium continuity and high stability. (2) Zhangshu City is divided into 43218.80 hm2 of permanent basic farmland, accounting for 79.35% of the total area of cultivated land. (3) Control and partition permanent basic farmland into three categories: core protected areas for permanent basic farmland, quality improvement areas, and key transformation areas. The above results indicate that this evaluation has a supportive role in supporting the spatial optimization and hierarchical management of permanent basic farmland, and is of great significance for the unified management of natural resources.
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spelling doaj.art-d75b100bee444b3b880643bd9da9d8f22024-04-10T04:57:10ZengFrontiers Media S.A.Frontiers in Environmental Science2296-665X2024-04-011210.3389/fenvs.2024.13315341331534Optimization and classification control of permanent basic farmland based on quality classificationWei Wang0Yiling Chen1Kun Liu2Yingchun Dang3Guilong Li4Liangyou Wen5Yun Cao6Geographic Information Engineering Brigade, Jiangxi Provincial Geological Bureau, Nanchang, ChinaJiangxi Provincial Institute of Land and Space Survey and Planning, Nanchang, ChinaGeographic Information Engineering Brigade, Jiangxi Provincial Geological Bureau, Nanchang, ChinaGeographic Information Engineering Brigade, Jiangxi Provincial Geological Bureau, Nanchang, ChinaJiangxi Provincial Institute of Land and Space Survey and Planning, Nanchang, ChinaCollege of Land Sciences and Technology, China Agricultural University, Beijing, ChinaNanchang Qingyun Pu School, Nanchang, ChinaPermanent basic farmland plays an important role in stabilizing agricultural production and ensuring national food security. Therefore, it is necessary to reasonably delineate and control permanent basic farmland. This article is based on the idea of classifying the quality of cultivated land resources, combined with the rules for the delineation of permanent basic farmland, and from the perspective of the synergy of “suitability-connectivity-stability” of cultivated land, a indicator system is constructed. Application of suitability, connectivity, and stability evaluation methods. Taking Zhangshu City, Jiangxi Province as an example, the status of cultivated land resources is comprehensively evaluated, and permanent basic farmland is optimized and graded for protection. The results show that: (1) the arable land in Zhangshu City is mainly of medium suitability, medium continuity and high stability. (2) Zhangshu City is divided into 43218.80 hm2 of permanent basic farmland, accounting for 79.35% of the total area of cultivated land. (3) Control and partition permanent basic farmland into three categories: core protected areas for permanent basic farmland, quality improvement areas, and key transformation areas. The above results indicate that this evaluation has a supportive role in supporting the spatial optimization and hierarchical management of permanent basic farmland, and is of great significance for the unified management of natural resources.https://www.frontiersin.org/articles/10.3389/fenvs.2024.1331534/fullquality classificationpermanent basic farmlandspace optimizationclassification controlZhangshu city
spellingShingle Wei Wang
Yiling Chen
Kun Liu
Yingchun Dang
Guilong Li
Liangyou Wen
Yun Cao
Optimization and classification control of permanent basic farmland based on quality classification
Frontiers in Environmental Science
quality classification
permanent basic farmland
space optimization
classification control
Zhangshu city
title Optimization and classification control of permanent basic farmland based on quality classification
title_full Optimization and classification control of permanent basic farmland based on quality classification
title_fullStr Optimization and classification control of permanent basic farmland based on quality classification
title_full_unstemmed Optimization and classification control of permanent basic farmland based on quality classification
title_short Optimization and classification control of permanent basic farmland based on quality classification
title_sort optimization and classification control of permanent basic farmland based on quality classification
topic quality classification
permanent basic farmland
space optimization
classification control
Zhangshu city
url https://www.frontiersin.org/articles/10.3389/fenvs.2024.1331534/full
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AT kunliu optimizationandclassificationcontrolofpermanentbasicfarmlandbasedonqualityclassification
AT yingchundang optimizationandclassificationcontrolofpermanentbasicfarmlandbasedonqualityclassification
AT guilongli optimizationandclassificationcontrolofpermanentbasicfarmlandbasedonqualityclassification
AT liangyouwen optimizationandclassificationcontrolofpermanentbasicfarmlandbasedonqualityclassification
AT yuncao optimizationandclassificationcontrolofpermanentbasicfarmlandbasedonqualityclassification