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The Impacts of Spatiotemporal Landscape Changes on Water Quality in Shenzhen, China

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Publisher MDPI
Date 2018 May 23
PMID 29786672
Citations 2
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Abstract

The urban landscape in China has changed rapidly over the past four decades, which has led to various environmental consequences, such as water quality degradation at the regional scale. To improve water restoration strategies and policies, this study assessed the relationship between water quality and landscape change in Shenzhen, China, using panel regression analysis. The results show that decreases in natural and semi-natural landscape compositions have had significant negative effects on water quality. Landscape composition and configuration changes accounted for 39⁻58% of the variation in regional water quality degradation. Additionally, landscape fragmentation indices, such as patch density (PD) and the number of patches (NP), are important indicators of the drivers of water quality degradation. PD accounted for 2.03⁻5.44% of the variability in water quality, while NP accounted for -1.63% to -4.98% of the variability. These results indicate that reducing landscape fragmentation and enhancing natural landscape composition at the watershed scale are vital to improving regional water quality. The study findings suggest that urban landscape optimization is a promising strategy for mitigating urban water quality degradation, and the results can be used in policy making for the sustainable development of the hydrological environment in rapidly urbanizing areas.

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References
1.
Liu W, Li S, Bu H, Zhang Q, Liu G . Eutrophication in the Yunnan Plateau lakes: the influence of lake morphology, watershed land use, and socioeconomic factors. Environ Sci Pollut Res Int. 2011; 19(3):858-70. DOI: 10.1007/s11356-011-0616-z. View

2.
Li S, Gu S, Tan X, Zhang Q . Water quality in the upper Han River basin, China: the impacts of land use/land cover in riparian buffer zone. J Hazard Mater. 2008; 165(1-3):317-24. DOI: 10.1016/j.jhazmat.2008.09.123. View

3.
Uriarte M, Yackulic C, Lim Y, Arce-Nazario J . Influence of land use on water quality in a tropical landscape: a multi-scale analysis. Landsc Ecol. 2015; 26(8):1151-1164. PMC: 4486490. DOI: 10.1007/s10980-011-9642-y. View

4.
Huang G, Xia J . Barriers to sustainable water-quality management. J Environ Manage. 2001; 61(1):1-23. DOI: 10.1006/jema.2000.0394. View

5.
Sliva L, Williams D . Buffer zone versus whole catchment approaches to studying land use impact on river water quality. Water Res. 2001; 35(14):3462-72. DOI: 10.1016/s0043-1354(01)00062-8. View