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Evaluation of water quality and heavy metals in wetlands along the yellow river in Henan province

journal contribution
posted on 2024-11-02, 12:40 authored by Zhendong Hong, Qinghe Zhao, Jinlong Chang, Li Peng, Shuoqian Wang, Yongyi Hong, Gang-Jun LiuGang-Jun Liu, Shengyan Ding
Assessing spatiotemporal variation in water quality and heavy metals concentrations in wetlands and identifying metal contamination source are crucial steps for the protection and sustainable utilization of water resources. Using the water quality identification index (Iwq), heavy metal pollution index (HPI), hierarchical cluster analysis (HCA) and redundancy analysis (RDA), we evaluated spatiotemporal variation in water quality and heavy metals concentrations, and their interrelation in wetlands along the middle and lower Yellow River. The average Iwq was highest during flood season but the average HPI was lowest in the same season. Meanwhile, the trend in mean HPI across three hydrological seasons was the opposite to that of mean Iwq. There was significant variation in wetlands water pollution status across seasons. During the flood season, the wetlands in the affected area with hanging river were seriously polluted. In other seasons, pollution in the artificial wetlands was even more severe. Moreover, serious pollution of wetlands in belt transect #03 (Yuanyang-Zhongmu) was more frequent. Dissolved oxygen and chemical oxygen demand strongly influenced heavy metal concentrations, while other water quality parameters had different influences on heavy metal concentrations in different hydrological seasons. The causes of water pollution were divided into natural factors and human disturbance (with potential relationships between them). The polluted wetlands were greatly affected by the Yellow River during the flood season while they were more impacted by agricultural and domestic sewage discharge in other seasons. However, heavy metal deposition and leaching into riparian wetlands were still affected by diverse channel conditions. If this trend is allowed to continue unabated, wetlands along the middle and lower Yellow River are likely to lose their vital ecological and social functions.

History

Related Materials

  1. 1.
    DOI - Is published in 10.3390/su12041300
  2. 2.
    ISSN - Is published in 20711050

Journal

Sustainability (Switzerland)

Volume

12

Number

1300

Issue

4

Start page

1

End page

19

Total pages

19

Publisher

MDPI AG

Place published

Switzerland

Language

English

Copyright

© 2020 by the author.

Former Identifier

2006099406

Esploro creation date

2020-09-08

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