Study on delineation of core vegetation protection areas in the lower reaches of Tarim River based on SCP model

The lower reaches of the Tarim River serve as a crucial ecological barrier preventing the merger of the Taklimakan and Kumtag deserts. They have long faced water scarcity and intensifying conflicts between water use for oasis agriculture and desert ecosystems. Therefore, identifying the core vegetation conservation area and enhancing the effectiveness of ecological protection in this area are of paramount importance. Current research on the lower Tarim River mainly focuses on assessing ecological water conveyance benefits, monitoring vegetation restoration, and estimating ecological water requirements, while studies on delineating the core vegetation conservation area are notably lacking. However, arid regions often suffer from a scarcity of climate, environment, conservation costs, and biodiversity data, which makes existing delineation methods difficult to apply directly to the lower Tarim River. Consequently, based on local ecological features, this study proposes a method for delineating the core vegetation conservation area using a Spatial Conservation Planning (SCP) model that incorporates vegetation type, fractional vegetation cover (FVC), and groundwater level. The research generated a conservation priority sequence for the lower reaches. The core vegetation conservation area was defined as regions with FVC ≥ 0.3, groundwater level ≥ −6 m, and a priority ranking within the top 20% of the priority sequence. The final delineation identified a total core conservation area of 81 km 2 , mainly distributed across 11 vegetation patches each > 1 km 2 . The delineation of the core conservation area provides precise spatial targets for ecological water conveyance and improves vegetation protection efficiency in the lower Tarim River. By embedding groundwater-vegetation coupling into an SCP framework and generating dynamically adjustable priority rankings, this study provides a replicable methodological template for precision conservation in other data-limited arid inland river basins-moving beyond species-centric or static zoning approaches toward adaptive, community-level ecosystem management.

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Publication Details

Journal
Journal of Environmental Management
Published
2026-09-30
DOI
https://doi.org/10.1016/j.jenvman.2026.131037
Primary Topic
Forest, Soil, and Plant Ecology in China
Type
article
Field-Weighted Citation Impact
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Study on delineation of core vegetation protection areas in the lower reaches of Tarim River based on SCP model

Dongwei GUI, Qi Liu, Yunfei Liu, Qian Jin et al.
Journal of Environmental Management
Forest, Soil, and Plant Ecology in China
article

Study on delineation of core vegetation protection areas in the lower reaches of Tarim River based on SCP model

Dongwei GUI, Qi Liu, Yunfei Liu, Qian Jin, Ximing Li, Xiaonan Chen
article en

Abstract

The lower reaches of the Tarim River serve as a crucial ecological barrier preventing the merger of the Taklimakan and Kumtag deserts. They have long faced water scarcity and intensifying conflicts between water use for oasis agriculture and desert ecosystems. Therefore, identifying the core vegetation conservation area and enhancing the effectiveness of ecological protection in this area are of paramount importance. Current research on the lower Tarim River mainly focuses on assessing ecological water conveyance benefits, monitoring vegetation restoration, and estimating ecological water requirements, while studies on delineating the core vegetation conservation area are notably lacking. However, arid regions often suffer from a scarcity of climate, environment, conservation costs, and biodiversity data, which makes existing delineation methods difficult to apply directly to the lower Tarim River. Consequently, based on local ecological features, this study proposes a method for delineating the core vegetation conservation area using a Spatial Conservation Planning (SCP) model that incorporates vegetation type, fractional vegetation cover (FVC), and groundwater level. The research generated a conservation priority sequence for the lower reaches. The core vegetation conservation area was defined as regions with FVC ≥ 0.3, groundwater level ≥ −6 m, and a priority ranking within the top 20% of the priority sequence. The final delineation identified a total core conservation area of 81 km 2 , mainly distributed across 11 vegetation patches each > 1 km 2 . The delineation of the core conservation area provides precise spatial targets for ecological water conveyance and improves vegetation protection efficiency in the lower Tarim River. By embedding groundwater-vegetation coupling into an SCP framework and generating dynamically adjustable priority rankings, this study provides a replicable methodological template for precision conservation in other data-limited arid inland river basins-moving beyond species-centric or static zoning approaches toward adaptive, community-level ecosystem management.

Journal of Environmental ManagementVol. 418
Institute of Ecology and Geography (MD), Xinjiang Institute of Ecology and Geography (CN), Xinjiang Technical Institute of Physics & Chemistry (CN), University of Chinese Academy of Sciences (CN), Xinjiang University (CN)
Life in Land
Openalex Percentile: Top 4%
Forest, Soil, and Plant Ecology in China
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