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Journal ArticleDOI

Risk assessment of non-point source pollution based on landscape pattern in the Hanjiang River basin, China.

TLDR
Wang et al. as mentioned in this paper analyzed the contribution of the source-sink landscape to NPS pollution through the location-weighted landscape contrast index, and they used the pollution risk index to identify and evaluate the regional non-point source pollution risk considering the slope, cost distance, soil erosion, and precipitation erosion affect migration of pollutants.
Abstract
Non-point source (NPS) pollution has become a vital contaminant source affecting the water environment because of its wide distribution, hydrodynamic complexity, and difficulty in prevention and control. In this study, the identification and evaluation of NPS pollution risk based on landscape pattern were carried out in the Hanjiang River basin above Ankang hydrological section, Shaanxi province, China. Landscape distribution information was obtained through land use data, analyzing the contribution of “source-sink” landscape to NPS pollution through the location-weighted landscape contrast index. Using the NPS pollution risk index to identify and evaluate the regional NPS pollution risk considering the slope, cost distance, soil erosion, and precipitation erosion affect migration of pollutants. The results showed that (i) the pollution risk was generally high in the whole watershed, and the sub-watersheds dominated by “source” landscapes account for 74.61% of the whole basin; (ii) the high-risk areas were distributed in the central, eastern, and western regions of the river basin; the extremely high-risk areas accounted for 12.7% of the whole watershed; and the southern and northern regions were dominated by forestland and grassland with little pollution risk; (iii) “source” landscapes were mostly distributed in areas close to the river course, which had a great impact on environment, and the landscape pattern units near the water body needed to be further adjusted to reduce the influence of NPS pollution.

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Citations
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Journal ArticleDOI

Understanding the spatiotemporal variability in nonpoint source nutrient loads and its effect on water quality in the upper Xin’an River basin, Eastern China

TL;DR: In this article , a geomorphology-based nonpoint source pollution (GBNP) model was employed to simulate hydrological processes together with NPS pollutant transport and transformation processes from 1980 to 2019 in the upper Xin'an River basin, an important drinking water headwater.
References
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Current trends in economy, sustainable development, and energy: a circular economy view

TL;DR: The concept of CE has recently been proposed as a new development strategy that aims to mitigate the contradiction between the rapid economic growth and the shortage of raw materials and energy.
Journal ArticleDOI

Relationships between land use patterns and water quality in the Taizi River basin, China

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Journal ArticleDOI

Meeting China’s Water Shortage Crisis: Current Practices and Challenges

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Journal ArticleDOI

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TL;DR: The combination of remote imagery data, geographic information systems software, and landscape ecology theory provides a unique basis for monitoring and assessing large-scale ecological systems as mentioned in this paper, and the unique feature of the work has been the need to develop and interpret quantitative measures of spatial pattern, the landscape indices.
Journal ArticleDOI

Estimation of Surface Water Quality Changes in Response to Land Use Change: Application of The Export Coefficient Model Using Remote Sensing and Geographical Information System

TL;DR: In this paper, an approach based on remote sensing and Geographical Information System (GIS) is presented to estimate and hindcast water quality changes using historical land use data for a watershed in eastern England.
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