Agricultural Sciences

Agricultural Sciences

ISSN Print: 2156-8553
ISSN Online: 2156-8561
www.scirp.net/journal/as
E-mail: [email protected]
"Shiyang River ecosystem problems and countermeasures"
written by Faming Li, Guoqing Zhu, Chunxiu Guo,
published by Agricultural Sciences, Vol.4 No.2, 2013
has been cited by the following article(s):
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[2] The effect of the seasonality of moisture sources on moisture flux and precipitation stable isotopes in the Shiyang River Basin
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[3] Accounting of public preferences and valuation of terrestrial and aquatic ecosystem services restoration: Evidence from Northwestern China
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[4] Does location of the households' matters? Identifying the households' willingness to pay and preference heterogeneity in advancement of vulnerable ecosystem …
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[5] Human activities rather than climate dominated the grassland net primary production in the three basins of the Hexi Corridor, North‐Western China
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[6] Prioritizing stakeholders' preferences for policy scenarios of vulnerable ecosystems with spatial heterogeneity in choice experiment: Coupling stated preferences with …
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[7] Oasis Change Characteristics and Influencing Factors in the Shiyang River Basin, China
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[8] Synergic effects of land-use management systems towards the reclamation of Aeolian Desertified Land in the Shiyang River Basin
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[9] Do residential localities matter? Revisiting preference heterogeneity and ranking of ecological attributes of an inland river basin
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[10] Reducing human activity promotes environmental restoration in arid and semi-arid regions: A case study in Northwest China
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[11] Identification of Water-Reuse Potentials to Strengthen Rural Areas in Water-Scarce Regions—The Case Study of Wuwei
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[12] Ranking of ecosystem services on the basis of willingness to pay: Monetary assessment of a subset of ecosystem services in the Heihe River basin
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[13] Exploring the spatial heterogeneity of individual preferences for integrated river basin management: an example of Heihe river basin
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[14] Reconstructed natural runoff helps to quantify the relationship between upstream water use and downstream water scarcity in China's river basins
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[15] Spatial prioritization of willingness to pay for ecosystem services. A novel notion of distance from origin's impression
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[16] Water resource management and public preferences for water ecosystem services: A choice experiment approach for inland river basin management
Science of The Total Environment, 2019
[17] Reconstructed natural runoff helps to quantify the relationship between upstream water use and downstream water scarcity in China's river basins.
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[18] Spatial heterogeneity of preferences for improvements in river basin ecosystem services and its validity for benefit transfer
Ecological Indicators, 2018
[19] Ecological degradation of an inland river basin and an evaluation of the spatial and distance effect on willingness to pay for its improvement
Environmental Science and Pollution Research, 2018
[20] Reconstructed natural runoff suggests imbalance in water scarcity between upstream and downstream regions of China's river basins
Hydrol. Earth Syst. Sci. Discuss …, 2018
[21] Improving estimates of water resources in a semi-arid region by assimilating GRACE data into the PCR-GLOBWB hydrological model
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[22] The Local Residents' Concerns about Environmental Issues in Northwest China
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[23] Spatial Preference Heterogeneity for Integrated River Basin Management: The Case of the Shiyang River Basin, China
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[24] Spatial Preference Heterogeneity for Integrated River Basin Management: The Case of the Shiyang River Basin, China.
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[25] Relating seasonal dynamics of enhanced vegetation index to the recycling of water in two endorheic river basins in north-west China.
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[26] Role of vegetation and landcover dynamics on the recycling of water in two endorheic watersheds of NW China (Gansu Province)
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[27] Mountain-river runoff components and their role in the seasonal development of desert-oases in northwest China
Journal of Arid Environments, 2015
[28] Relating seasonal dynamics of enhanced vegetation index to the recycling of water in two endorheic river basins in north-west China
Hydrology and Earth System Sciences, 2015
[29] Holocene climate and landscape change in the northeastern Tibetan Plateau foreland inferred from the Zhuyeze Lake record
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[30] Gospodarowanie wodą na bezodpływowych obszarach Chin Północno-Zachodnich
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[31] River basin management in the twenty-first century: understanding people and place
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[32] Sensitivity and vulnerability of water resources in the arid Shiyang River Basin of Northwest China
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[33] Remote Sensing Applications: Society and Environment
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