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  4. Mining and urbanization affect river chemical water quality and macroinvertebrate communities in the upper Selenga River Basin, Mongolia
 
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Mining and urbanization affect river chemical water quality and macroinvertebrate communities in the upper Selenga River Basin, Mongolia

Journal
Environmental Monitoring and Assessment
Journal Volume
195
Journal Issue
12
Date Issued
2023-12-01
Author(s)
Narangarvuu, Dashdondog
Enkhdul, Tuuguu
Erdenetsetseg, Erdenesukh
Enkhrii-Ujin, Enkhbat
Irmuunzaya, Khurtsbaatar
Batbayar, Gunsmaa
Oyundelger, Khurelpurev
SAU-WAI YAM  
Pfeiffer, Martin
DOI
10.1007/s10661-023-12022-x
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85177211821&doi=10.1007%2fs10661-023-12022-x&partnerID=40&md5=2d569431bf00452357c9497faab10fb0
https://scholars.lib.ntu.edu.tw/handle/123456789/637594
URL
https://api.elsevier.com/content/abstract/scopus_id/85177211821
Abstract
Mongolia is a country with a quickly growing economy mainly based on mining of gold, copper, coal, and other minerals. Mining, urbanization, and agriculture impact the water quality in the upper Selenga River Basin in northern Mongolia, which is the center of the Mongolian economy. Previous measurements of pollution loads were alarming, but restricted to chemical measurements. Here, for the first time, we combine freshwater biomonitoring and laboratory water quality data across a broad gradient of water quality and land use intensity. We track the effects of different types of pollution on aquatic invertebrates and test their use as bioindicators. We collected water samples, environmental parameters, and macroinvertebrates at 36 sampling sites at the rivers of Tuul, Kharaa, and Orkhon and their tributaries Sugnugur, Boroo, Sharyn Gol, Gatsuurt, and Yeröö. PCA of catchment water quality distinguished three groups of pollutants prevalent at the sites: (1) nutrients, (2) saline components (Cl-, Na +, Mg2+, SO42-, Ca2+) and mining by-products (B, Sr, U, Mo), and (3) (heavy) metals, which often exceeded regulatory standards. We recorded a total of 59 macroinvertebrate taxa belonging to 32 families in seven insect orders plus Amphipoda and Gastropoda. Species diversity declined with higher impact. Five environmental factors structured macroinvertebrate community composition in RDA: elevation of sample location, site total nitrogen, dissolved oxygen, electrical conductivity, and water chemistry. We conclude that macroinvertebrate communities are an appropriate and inexpensive tool for monitoring water quality in Mongolia and suggest government action to establish a long-term monitoring program.
Subjects
Bioindicators | Biotic index | Ephemeroptera-Plecoptera-Trichoptera (EPT) complex | Metal pollution | Mongolia
Type
journal article

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