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Impact of sulfuric acid on carbonate dissolution in the upper-middle reaches of Wujiang River

机译:硫酸对乌江中上游碳酸盐溶解的影响

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Due to rapid population and economic growth in recent years, the Wujiang River has been heavily impacted by anthropogenic activities. Of particular concern is the increase in SO_(4)~(2-)concentration of the river water from various anthropogenic sources. The results showed that the major cations of groundwater and surface water were Ca~(2+)and Mg~(2+)(>70% of the cation concentration), and the main anions were HCO~(3-)and SO_(4)~(2-)(>85% of the anion concentration). In groundwater, the contributions of carbonate dissolution to Ca~(2+)+Mg~(2+)by sulfuric acid ranged from 20.6% to 92.9% (average 51.5%); and to HCO_(3-)from 11.5% to 86.7% (average 36.9%). In the surface water, the contributions of carbonate dissolution to Ca~(2+)+Mg~(2+)ranged from 56.1% to 94.6% (average 76.9%); and to HCO3from 39.0% to 89.7% (average 64.2%). Our results demonstrate that besides carbonic acid, sulfuric acid also plays an important role on carbonate rock weathering, and influences the hydrochemistry of both groundwater and surface water in the Wujiang River drainage.
机译:由于近年来人口的快速增长和经济的增长,吴江受到了人为活动的严重影响。特别令人关注的是来自各种人为来源的河水中SO_(4)〜(2-)浓度的增加。结果表明,地下水和地表水的主要阳离子为Ca〜(2+)和Mg〜(2 +)(>阳离子浓度的70%),主要阴离子为HCO〜(3-)和SO_( 4)〜(2-)(> 85%的阴离子浓度)。在地下水中,硫酸盐对碳酸钙对Ca〜(2 +)+ Mg〜(2+)的溶解贡献率为20.6%〜92.9%(平均为51.5%)。 HCO_(3-)从11.5%提高到86.7%(平均36.9%)。在地表水中,碳酸盐溶解对Ca〜(2 +)+ Mg〜(2+)的贡献范围为56.1%至94.6%(平均为76.9%)。到HCO3的比例从39.0%增至89.7%(平均64.2%)。我们的结果表明,除了碳酸以外,硫酸还对碳酸盐岩的风化起着重要作用,并且影响着乌江排水中地下水和地表水的水化学反应。

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