Assessment of water quality and identification of polluted risky regions based on field observations & GIS in the Honghe River watershed, China.
Water quality assessment at the watershed scale requires not only an investigation of water pollution and the recognition of main pollution factors, but also the identification of polluted risky regions resulted in polluted surrounding river sections. To realize this objective, we collected water sa...
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doaj-9656543c70434b53a3a8556ac432c9e72020-11-25T01:58:59ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01103e011913010.1371/journal.pone.0119130Assessment of water quality and identification of polluted risky regions based on field observations & GIS in the Honghe River watershed, China.Chang-An YanWanchang ZhangZhijie ZhangYuanmin LiuCai DengNing NieWater quality assessment at the watershed scale requires not only an investigation of water pollution and the recognition of main pollution factors, but also the identification of polluted risky regions resulted in polluted surrounding river sections. To realize this objective, we collected water samplings from 67 sampling sites in the Honghe River watershed of China with Grid GIS method to analyze six parameters including dissolved oxygen (DO), ammonia nitrogen (NH3-N), nitrate nitrogen (NO3-N), nitrite nitrogen (NO2-N), total nitrogen (TN) and total phosphorus (TP). Single factor pollution index and comprehensive pollution index were adopted to explore main water pollutants and evaluate water quality pollution level. Based on two evaluate methods, Geo-statistical analysis and Geographical Information System (GIS) were used to visualize the spatial pollution characteristics and identifying potential polluted risky regions. The results indicated that the general water quality in the watershed has been exposed to various pollutants, in which TP, NO2-N and TN were the main pollutants and seriously exceeded the standard of Category III. The zones of TP, TN, DO, NO2-N and NH3-N pollution covered 99.07%, 62.22%, 59.72%, 37.34% and 13.82% of the watershed respectively, and they were from medium to serious polluted. 83.27% of the watershed in total was polluted by comprehensive pollutants. These conclusions may provide useful and effective information for watershed water pollution control and management.http://europepmc.org/articles/PMC4359131?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Chang-An Yan Wanchang Zhang Zhijie Zhang Yuanmin Liu Cai Deng Ning Nie |
spellingShingle |
Chang-An Yan Wanchang Zhang Zhijie Zhang Yuanmin Liu Cai Deng Ning Nie Assessment of water quality and identification of polluted risky regions based on field observations & GIS in the Honghe River watershed, China. PLoS ONE |
author_facet |
Chang-An Yan Wanchang Zhang Zhijie Zhang Yuanmin Liu Cai Deng Ning Nie |
author_sort |
Chang-An Yan |
title |
Assessment of water quality and identification of polluted risky regions based on field observations & GIS in the Honghe River watershed, China. |
title_short |
Assessment of water quality and identification of polluted risky regions based on field observations & GIS in the Honghe River watershed, China. |
title_full |
Assessment of water quality and identification of polluted risky regions based on field observations & GIS in the Honghe River watershed, China. |
title_fullStr |
Assessment of water quality and identification of polluted risky regions based on field observations & GIS in the Honghe River watershed, China. |
title_full_unstemmed |
Assessment of water quality and identification of polluted risky regions based on field observations & GIS in the Honghe River watershed, China. |
title_sort |
assessment of water quality and identification of polluted risky regions based on field observations & gis in the honghe river watershed, china. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2015-01-01 |
description |
Water quality assessment at the watershed scale requires not only an investigation of water pollution and the recognition of main pollution factors, but also the identification of polluted risky regions resulted in polluted surrounding river sections. To realize this objective, we collected water samplings from 67 sampling sites in the Honghe River watershed of China with Grid GIS method to analyze six parameters including dissolved oxygen (DO), ammonia nitrogen (NH3-N), nitrate nitrogen (NO3-N), nitrite nitrogen (NO2-N), total nitrogen (TN) and total phosphorus (TP). Single factor pollution index and comprehensive pollution index were adopted to explore main water pollutants and evaluate water quality pollution level. Based on two evaluate methods, Geo-statistical analysis and Geographical Information System (GIS) were used to visualize the spatial pollution characteristics and identifying potential polluted risky regions. The results indicated that the general water quality in the watershed has been exposed to various pollutants, in which TP, NO2-N and TN were the main pollutants and seriously exceeded the standard of Category III. The zones of TP, TN, DO, NO2-N and NH3-N pollution covered 99.07%, 62.22%, 59.72%, 37.34% and 13.82% of the watershed respectively, and they were from medium to serious polluted. 83.27% of the watershed in total was polluted by comprehensive pollutants. These conclusions may provide useful and effective information for watershed water pollution control and management. |
url |
http://europepmc.org/articles/PMC4359131?pdf=render |
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