Tracing riverine sulfate source in an agricultural watershed: Constraints from stable isotopes

被引:26
作者
Liu, Jinke [1 ]
Han, Guilin [1 ]
机构
[1] China Univ Geosci Beijing, Inst Earth Sci, Beijing 100083, Peoples R China
基金
中国国家自然科学基金;
关键词
Hydrochemistry; Sulfate; Stable isotope; PMF model; Inverse model; Source apportionment; POSITIVE MATRIX FACTORIZATION; SOURCE APPORTIONMENT; HAN RIVER; DISSOLVED SULFATE; BASIN; CARBONATE; GEOCHEMISTRY; RATES; FINE; PMF;
D O I
10.1016/j.envpol.2021.117740
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The sulfate pollution in water environment gains more and more concerns in recent years. The discharge of domestic, municipal, and industrial wastewaters increases the riverine sulfate concentrations, which may cause local health and ecological problems. To better understand the sources of sulfate, this study collected water samples in a typical agricultural watershed in East Thailand. The source apportionment of sulfide was conducted by using stable isotopes and receptor models. The delta 34SSO4 value of river water varied from 1.2%o to 16.4%o, with a median value of 8.9%o. The hydrochemical data indicated that the chemical compositions of Mun river water were affected by the anthropogenic inputs and natural processes such as halite dissolution, carbonate, and silicate weathering. The positive matrix factorization (PMF) model was not suitable to trace source of riverine sulfate, because the meaning of the extracted factors seems to be vague. Based on the elemental ratio and isotopic composition, the inverse model yielded the relative contribution of sulfide oxidation (approximately 46.5%), anthropogenic input (approximately 41.5%), and gypsum dissolution (approximately 12%) to sulfate in Mun river water. This study indicates that the selection of models for source apportionment should be careful. The large contribution of anthropogenic inputs calls an urgent concern of the Thai government to establish effective management strategies in the Mun River basin.
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页数:10
相关论文
共 60 条
[1]   CHEMICAL-STRUCTURE AND HISTORY OF THE EARTH - EVIDENCE FROM GLOBAL NON-LINEAR INVERSION OF ISOTOPIC DATA IN A 3-BOX MODEL [J].
ALLEGRE, CJ ;
LEWIN, E .
EARTH AND PLANETARY SCIENCE LETTERS, 1989, 96 (1-2) :61-88
[2]   AIRUSE-LIFE plus : a harmonized PM speciation and source apportionment in five southern European cities [J].
Amato, Fulvio ;
Alastuey, Andres ;
Karanasiou, Angeliki ;
Lucarelli, Franco ;
Nava, Silvia ;
Calzolai, Giulia ;
Severi, Mirko ;
Becagli, Silvia ;
Gianelle, Vorne L. ;
Colombi, Cristina ;
Alves, Celia ;
Custodio, Danilo ;
Nunes, Teresa ;
Cerqueira, Mario ;
Pio, Casimiro ;
Eleftheriadis, Konstantinos ;
Diapouli, Evangelia ;
Reche, Cristina ;
Cruz Minguillon, Maria ;
Manousakas, Manousos-Ioannis ;
Maggos, Thomas ;
Vratolis, Stergios ;
Harrison, Roy M. ;
Querol, Xavier .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2016, 16 (05) :3289-3309
[3]   THE CARBONATE-SILICATE GEOCHEMICAL CYCLE AND ITS EFFECT ON ATMOSPHERIC CARBON-DIOXIDE OVER THE PAST 100 MILLION YEARS [J].
BERNER, RA ;
LASAGA, AC ;
GARRELS, RM .
AMERICAN JOURNAL OF SCIENCE, 1983, 283 (07) :641-683
[4]   LITHOLOGIC AND CLIMATOLOGIC CONTROLS OF RIVER CHEMISTRY [J].
BLUTH, GJS ;
KUMP, LR .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1994, 58 (10) :2341-2359
[5]   Problem identification on surface water quality in the Mun River Basin, Thailand [J].
Bridhikitti, Arika ;
Prabamroong, Thayukorn ;
Yu, Guo-An .
SUSTAINABLE WATER RESOURCES MANAGEMENT, 2020, 6 (04)
[6]  
Chang Y., ATMOS CHEM PHYS, V21, P7187
[7]   Geochemistry of the dissolved load of the Changjiang Basin rivers: Anthropogenic impacts and chemical weathering [J].
Chetelat, B. ;
Liu, C. -Q. ;
Zhao, Z. Q. ;
Wang, Q. L. ;
Li, S. L. ;
Li, J. ;
Wang, B. L. .
GEOCHIMICA ET COSMOCHIMICA ACTA, 2008, 72 (17) :4254-4277
[8]   Challenges and opportunities in the removal of sulphate ions in contaminated mine water: A review [J].
Fernando, W. Ashane M. ;
Ilankoon, I. M. S. K. ;
Syed, Tauqir H. ;
Yellishetty, Mohan .
MINERALS ENGINEERING, 2018, 117 :74-90
[9]   Global silicate weathering and CO2 consumption rates deduced from the chemistry of large rivers [J].
Gaillardet, J ;
Dupré, B ;
Louvat, P ;
Allègre, CJ .
CHEMICAL GEOLOGY, 1999, 159 (1-4) :3-30
[10]   Chemical and physical denudation in the Amazon River basin [J].
Gaillardet, J ;
Dupre, B ;
Allegre, CJ ;
Negrel, P .
CHEMICAL GEOLOGY, 1997, 142 (3-4) :141-173