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Influences of Groundwater and Climatic Factors on Grassland in Xiliao River Plain, Northern China
Author
Jin, X.
Chen, M.
Fan, Y.
Duan, H.
Yan, L.
Publisher
Elsevier Inc.
Publication Year
2019-05
Body

Grassland is an important natural resource in the Xiliao River Plain, Northern China because of its ecological and economic importance. The overexploitation of groundwater makes it necessary to understand the influence of groundwater decline on grassland vegetation growth in this region, especially in the context of climatic change. We aimed to identify the main factor affecting the grassland growth through integrated analysis of grassland impact factors. Changes in normalized difference vegetation index, groundwater depth, precipitation, and temperature were analyzed during 1982 − 2013 in Xiliao River Plain. A correlation analysis was conducted among groundwater depth, precipitation, temperature, and normalized difference vegetation index using Pearson correlation equations. Results indicated that precipitation became the main influencing factor of grassland growth instead of groundwater depth due to the increase of groundwater depth after 1999. This shift might pose a threat to the survival of grassland growth during a long drought period. Therefore, groundwater change issues should be gradually integrated into future policies and strategies for grassland development and management. © 2018

Language
en
Resource Type
Text
Document Type
Journal Issue/Article
Digital Object Identifier (DOI)
10.1016/j.rama.2018.12.004
Additional Information
XiaoHui Jin, MinJian Chen, YuMiao Fan, Hao Duan, and Long Yan "Influences of Groundwater and Climatic Factors on Grassland in Xiliao River Plain, Northern China," Rangeland Ecology and Management 72(3), 425-432, (30 April 2019). https://doi.org/10.1016/j.rama.2018.12.004
ISSN
1550-7424
OAI Identifier
oai:repository.arizona.edu:10150/675900
Journal Volume
72
Journal Number
3
Journal Pages
425-432
Collection
Rangeland Ecology & Management (REM)
Journal Name
Rangeland Ecology & Management
Keywords
climatic factors
correlation
grassland vegetation
groundwater depth
NDVI