References
- Y. Liu, X. Huang, H. Yang, T. Zhong, Environmental effects of
land-use/cover change caused by urbanization and policies in
Southwest China Karst area – a case study of Guiyang, Habitat
Int., 44 (2014) 339–348.
- K. Arrow, B. Bolin, R. Costanza, P. Dasgupta, C. Folke,
C.S. Holling, B.-O. Jansson, S. Levin, K.-G. Mäler,
C. Perrings,
D. Pimentel, Economic growth, carrying capacity, and the
environment, Ecol. Econ., 15 (1995) 89–90.
- P.M. Vitousek, Beyond global warming: ecology and global
change, Ecology Ecol. Soc. America, 75 (1994) 1861–1876.
- M.E. Assessment, Ecosystems and Human Well-Being:
Synthesis, A Report of the Millennium Ecosystem Assessment,
2005, p. 534, doi: 10.1119/1.2344558.
- P.H. Verburg, K.-H. Erb, O. Mertz, G. Espindola, Land
system science: between global challenges and local realities,
Curr. Opin. Environ. Sustainability, 5 (2013) 433–437.
- C.Z. Sun, L.S. Zhao, W. Zou, D.F. Zheng, Water resource
utilization efficiency and spatial spillover effects in China,
J. Geog. Sci., 5 (2014) 771–788.
- S.B. Lu, Z.D. Lian, H.P. Sun, X.H. Wu, X. Bai, C.C. Wang,
Simulating trans-boundary watershed water resources
conflict, Resour. Policy, 73 (2021a) 102139, doi: 10.1016/j.
resourpol.2021.102139.
- Z.X. Lu, Q. Feng, S.C. Xiao, J.L. Xie, S.B. Zou, Q. Yang, J.H. Si,
The impacts of the ecological water diversion project on the
ecology-hydrology-economy nexus in the lower reaches in an
inland river basin, Resour. Conserv. Recycl., 164 (2021) 105154,
doi: 10.1016/j.resconrec.2020.105154.
- Y.Y. Zhang, J. Xia, J.J. Yu, M. Randall, Y.C. Zhang, T.G. Zhao,
X.Y. Pan, X.Y. Zhai, Q.X. Shao, Simulation and assessment of
urbanization impacts on runoff metrics: insights from landuse
changes, J. Hydrol., 560 (2018) 247–258.
- M.Y. Li, D. Liang, J. Xia, J.X. Song, D.D. Cheng, J.T. Wu, Y.L. Cao,
H.T. Sun, Q. Li, Evaluation of water conservation function
of Danjiang River Basin in Qinling Mountains, China based
on InVEST model, J. Environ. Manage., 286 (2021) 112212,
doi: 10.1016/j.jenvman.2021.112212.
- Y.L. Lu, M.Y. Liu, S.Y. Zeng, C. Wang, Screening and mitigating
major threats of regional development to water ecosystems
using ecosystem services as endpoints, J. Environ. Manage.,
293 (2021) 112787, doi:10.1016/j.jenvman.2021.112787.
- Y.L. Lu, J.J. Yuan, X.T. Lu, C. Su, Y.Q. Zhang, C.C. Wang,
X.H. Cao, Q.F. Li, J.L. Su, V. Ittekkot, R.A. Garbutt, S. Bush,
S. Fletcher, T. Wagey, A. Kachur, N. Sweijd, Major threats of
pollution and climate change to global coastal ecosystems and
enhanced management for sustainability, Environ. Pollut.,
239 (2018) 670–680.
- H.G. Xiao, W. Ji, Relating landscape characteristics to nonpoint
source pollution in mine waste-located watersheds using
geospatial techniques, J. Environ. Manage., 82 (2007) 111–119.
- W. Ouyang, H.B. Huang, F.H. Hao, Y.S. Shan, B. Guo,
Evaluating spatial interaction of soil property with non-point
source pollution at watershed scale: the phosphorus indicator
in Northeast China, Sci. Total Environ., 432 (2012) 412–421.
- C. Boix-Fayos, L.G.J. Boerboom, R. Janssen, M. Martínez-Mena, M. Almagro, P. Pérez-Cutillas, J.P.C. Eekhout,
V. Castillo,
J. Vente, Mountain ecosystem services affected by land use
changes and hydrological control works in Mediterranean
catchments, Ecosyst. Serv., 44 (2020) 101136, doi: 10.1016/j.ecoser.2020.101136.
- P. Hervé-Fernandez, C.E. Oyarzún, S. Woelfl, Throughfall
enrichment and stream nutrient chemistry in small headwater
catchments with different land cover in southern Chile,
Hydrol. Processes, 30 (2016) 4944–4955.
- J. Xu, G.Q. Jin, H.W. Tang, P. Zhang, S. Wang, Y.-G. Wang,
L. Lie, Assessing temporal variations of ammonia nitrogen
concentrations and loads in the Huaihe River Basin in relation
to policies on pollution source control, Sci. Total Environ.,
642 (2018) 1386–1395.
- X.Y. Bai, W. Shen, P. Wang, X.H. Chen, Y.H. He, Response of
non-point source pollution loads to land use change under
different precipitation scenarios from a future perspective,
Water Resour. Manage., 34 (2020) 3987–4002.
- W.Z. Wang, L. Chen, Z.Y. Shen, Dynamic export coefficient
model for evaluating the effects of environmental changes
on non-point source pollution, Sci. Total Environ., 747 (2020)
141164, doi:10.1016/j.scitotenv.2020.141164.
- G.Q. Wang, J.W. Li, W.C. Sun, B.L. Xue, Y.L. A, T.X. Liu, Nonpoint
source pollution risks in a drinking water protection zone
based on remote sensing data embedded within a nutrient
budget model, Water Res., 157 (2019) 238–246.
- Z.Y. Shen, X.S. Hou, W. Li, G. Aini, Relating landscape
characteristics to non-point source pollution in a typical
urbanized watershed in the municipality of Beijing, Landscape
Urban Plann., 123 (2014) 96–107.
- K.A. Beckert, T.R. Fisher, J.M. O’Neil, R. Jesien, Characterization
and comparison of stream nutrients, land use, and loading
patterns in Maryland Coastal Bay Watersheds, Water Air Soil
Pollut., 221 (2011) 255–273.
- M. Piaggio, J. Siikamäki, The value of forest water purification
ecosystem services in Costa Rica, Sci. Total Environ., 789 (2021)
147952, doi:10.1016/j.scitotenv.2021.147952.
- M.L. Mesnil, J.-B. Charlier, R. Moussa, Y. Caballero, N. Dörfliger,
Interbasin groundwater flow: characterization, role of karst
areas, impact on annual water balance and flood processes,
J. Hydrol., 585 (2020) 124583, doi:10.1016/j.jhydrol.2020.124583.
- M.G. Mostofa Amin, T.L. Veith, A.S. Collick, H.D. Karsten,
A.R. Buda, Simulating hydrological and nonpoint source
pollution processes in a karst watershed: a variable source area
hydrology model evaluation, Agric. Water Manage., 180 (2016)
212–223.
- Z.K. Bargaoui, A. Chebbi, Comparison of two kriging
interpolation methods applied to spatiotemporal rainfall,
J. Hydrol., 365 (2009) 56–73.
- E.I. Nikolopoulos, M. Borga, J.D. Creutin, F. Marra, Estimation
of debris flow triggering rainfall: influence of rain gauge density
and interpolation methods, Geomorphology, 243 (2015) 40–50.
- M.F. Hutchinson, Interpolation of rainfall data with thin plate
smoothing splines - Part I: two dimensional smoothing of data
with short range correlation, J. Geogr. Inf. Decis. Anal., 2 (1998)
139–151.
- R.J. Hijmans, S.E. Cameron, J.L. Parra, P.G. Jones, A. Jarvis, Very
high resolution interpolated climate surfaces for global land
areas, Int. J. Climatol., 25 (2010) 1965–1978.
- D.T. Price, D.W. Mckenney, I.A. Nalder, M.F. Hutchinson,
J.L. Kesteven, A comparison of two statistical methods for
spatial interpolation of Canadian monthly mean climate data,
Agric. For. Meteorol., 101 (2000) 81–94.
- H. Tallis, T. Ricketts, InVEST 1.0 Beta User’s Guide: Integrated
Valuation of Ecosystem Services and Tradeoffs, 2011.
- Y. Mei, X.H. Kong, X.L. Ke, B. Yang, The impact of cropland
balance policy on ecosystem service of water purification—a
case study of Wuhan, China, Water, 9 (2017) 1–12, doi: 10.3390/w9080620.
- Y.Y. Yan, Q.S. Guan, M. Wang, X.L. Su, G.J. Wu, P.C. Chiang,
W.Z. Cao, Assessment of nitrogen reduction by constructed
wetland based on InVEST: a case study of the Jiulong River
Watershed, China, Mar. Pollut. Bull., 133 (2018) 349–356.
- W.C. Cong, X.Y. Sun, H.W. Guo, R.F. Shan, Comparison of
the SWAT and InVEST models to determine hydrological
ecosystem service spatial patterns, priorities and trade-offs in
a complex basin, Ecol. Indic., 112 (2020) 106089, doi: 10.1016/j.ecolind.2020.106089.
- M. Nalej, Agricultural land cover changes in metropolitan areas
of Poland for the period 1990–2012, Miscellanea Geographica,
20 (2016) 39–45.
- B.B. Wu, G.Q. Wang, H. Jiang, J.F. Wang, C.M. Liu, Impact of
revised thermal stability on pollutant transport time in a deep
reservoir, J. Hydrol., 535 (2016) 671–687.
- J. Yang, Y.D. Wang, S.Q. Fang, Y.F. Qiang, J.P. Liang, G.H. Yang,
Y.Z. Feng, Evaluation of livestock pollution and its effects on a
water source protection area in China, Environ. Sci. Pollut. Res.,
27 (2020) 18632–18639.
- K.S. Bao, Y.F. Zhang, C. Zaccone, M.E. Meadows, Human impact
on C/N/P accumulation in lake sediments from northeast China
during the last 150 years, Environ. Pollut., 271 (2021) 116345,
doi:10.1016/j.envpol.2020.116345.
- C.C. Li, Y.P. Cai, Q. Tian, X. Wang, C.H. Li, Q. Liu, D.N. Chen,
An integrated simulation-optimization modeling system for
water resources management under coupled impacts of climate
and land use variabilities with priority in ecological protection,
Adv. Water Resour., 154 (2021b) 103986, doi:10.1016/j.advwatres.2021.103986.
- Q. Longyang, Assessing the effects of climate change on water
quality of plateau deep-water lake - a study case of Hongfeng
Lake, Sci. Total Environ., 647 (2019) 1518–1530.
- M. Dalla Valle, E. Codato, A. Marcomini, Climate change
influence on POPs distribution and fate: a case study,
Chemosphere, 67 (2007) 1287–1295.
- B.J. Mahler, Y.J. Jiang, J.B. Pu, J. Martin, Editorial: advances
in hydrology and the water environment in the karst critical
zone under the impacts of climate change and anthropogenic
activities, J. Hydrol., 595 (2021) 125982, doi: 10.1016/j.
jhydrol.2021.125982.
- T.R. He, X.B. Feng, Y. Guo, G. Qiu, Z.G. Li, L. Liang, J.L. Lu,
The impact of eutrophication on the biogeochemical cycling
of mercury species in a reservoir: a case study from Hongfeng
Reservoir, Guizhou, China, Environ. Pollut., 154 (2008) 56–67.
- X. Fang, Q. Wang, J.C. Wang, Y.Y. Xiang, Y.F. Wu, Y.F. Zhang,
Employing extreme value theory to establish nutrient criteria
in bay waters: a case study of Xiangshan Bay, J. Hydrol.,
603 (2021) 127146, doi:10.1016/j.jhydrol.2021.127146.
- J. Lyon, N.M. Gross, Patterns of plant diversity and plant–
environmental relationships across three riparian corridors,
For. Ecol. Manage., 204 (2005) 267–278.
- W. Wei, Y.N. Gao, J.C. Huang, J.F. Gao, Exploring the effect
of basin land degradation on lake and reservoir water quality
in China, J. Cleaner Prod., 268 (2020) 122249, doi: 10.1016/j.jclepro.2020.122249.