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Published December 2019 | Version v1
Journal article

Response mode of hydrochemical types of river water to altitude gradient in alpine regions

  • 1. Lanzhou University. Key Laboratory of Western China's Environmental Systems (Ministry of Education), College of Earth Environmental Science (China)
  • 2. Chinese Academy of Sciences. Key Laboratory of Ecohydrology of Inland River Basin Gansu/Hydrology and Water Resources Engineering Research Center, Cold and Arid Region Environment and Engineering Research Institute (China)
  • 3. Gansu Agricultural University. College of Forestry (China)

Description

The study investigates the hydrochemical type and characteristics of river water in permafrost regions in the Tibetan Plateau by analyzing 532 samples collected from the source region of the Yangtze River. The hydrochemical type of the river water was Cl-Na+-SO42−, and its hydrochemical characteristics were primarily influenced by the soil sources, though the influence of the sea sources and anthropogenic factors could not be ignored. Significant negative correlations were found between temperature and NO3, SO42−, Mg2+, Ca2+, and between precipitation, relative humidity, and SO42− and Mg2+ in the river water. River water in the higher altitudes of over 5000 m above sea level was mainly recharged from glacier snowmelt water and by the supra-permafrost water and precipitation at the altitudes between 3500 and 5000 m above sea level. The controlled sources of hydrochemical characteristics of glacier snowmelt water were different for different ablation rates in the area with elevations of over 5000 m above sea level. Different hydrochemical types in different ablation rates implied the hydrochemical type was extremely sensitive to ablation periods in areas with elevation of over 5000 m above sea level. However, hydrochemical type was not sensitive to ablation periods from 3500 to 5000 m above sea level. The ionic concentration of glacier snowmelt water was mainly controlled by pollutants in glaciers and snow. Melting rates of glacier snowmelt water also had a certain effect on ionic concentration. Meanwhile, the stability of the hydrochemical type implied river water mainly controlled the hydrochemical type from 3500 to 5000 m above sea level. Hydrochemical type had no effect on elevation in end ablation.

Additional details

Identifiers

Publishing Information

Journal Title
Environmental Science and Pollution Research International
Journal Volume
26
Journal Issue
35
Journal Page Range
p. 35767-35778
ISSN
0944-1344
CODEN
ESPLEC

INIS

Country of Publication
Germany
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
55066392
Subject category
S54: ENVIRONMENTAL SCIENCES; S58: GEOSCIENCES;
Descriptors DEI
ABLATION; ALTITUDE; CONTROLLED AREAS; ECOLOGICAL CONCENTRATION; GLACIERS; PERMAFROST; POLLUTANTS; PRECIPITATION; RIVERS; SEA LEVEL; SNOW; SOILS
Descriptors DEC
ATMOSPHERIC PRECIPITATIONS; LEVELS; SEPARATION PROCESSES; SURFACE WATERS

Optional Information

Copyright
Copyright (c) 2019 © Springer-Verlag GmbH Germany, part of Springer Nature 2019