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中国东北地区辽宁省浑河溶解态铜的平均浓度函数。

The average concentration function of dissolved copper in Hun River, Liaoning province, Northeastern China.

机构信息

College of Sciences, Shenyang Agricultural University, Shenyang, 110866, China.

College of Water Conservancy, Shenyang Agricultural University, Shenyang, 110866, China.

出版信息

Environ Sci Pollut Res Int. 2017 Dec;24(35):27225-27234. doi: 10.1007/s11356-017-0295-5. Epub 2017 Sep 30.

Abstract

Water samples were collected from Hun River to research the change in the concentration of dissolved copper and its distribution as well as accumulation during the dry season in 2013. The mean concentrations of dissolved copper in Hun River were 0.1057-0.1533 mg/l during the dry season. The results indicated that the most severe dissolved copper pollution were associated with the mining area, industrial area, and living area along the Hun River. The results also indicated that controlling the sources of copper pollution effectively reduced the concentration of dissolved copper in Hun River. The concentration function about time and spatial coordinate, average concentration function about time coordinate, average concentration function about spatial coordinate, and bounded mean oscillation space were used to evaluate the extent of copper pollution in Hun River. The error function, quartiles, and curve fitting tool were performed to determine the stations with high concentration of dissolved copper in Hun River. We furthermore obtained the upper and lower bounds of the error between two kinds of bounded mean oscillation spaces to explore the migration of copper pollution in Hun River. The results of the average concentration function and bounded mean oscillation space revealed that the long-term control measures of copper pollution and short-term control measures of copper pollution, the control of copper pollution in large watershed, and the control of copper pollution in small watershed in Hun River should be combined with each other. The strict policy and pollution control strategy should be implemented to ensure that the water of the Hun River meets the natural environment standard for the growth of aquatic life and human.

摘要

采集浑河枯水期水样,研究溶解态铜的浓度变化及其在枯水期的分布和积累。2013 年浑河枯水期溶解态铜的平均浓度为 0.1057-0.1533mg/L。结果表明,矿区、工业区和浑河沿岸生活污水是造成溶解态铜污染最严重的区域。结果还表明,有效控制铜污染源可降低浑河溶解态铜的浓度。采用浓度随时间和空间坐标变化函数、时间坐标平均浓度函数、空间坐标平均浓度函数和有界平均震荡空间来评价浑河流域的铜污染程度。采用误差函数、四分位数和曲线拟合工具来确定浑河溶解态铜高浓度的站位。我们进一步得到了两种有界平均震荡空间误差的上下界,以探讨浑河铜污染的迁移情况。平均浓度函数和有界平均震荡空间的结果表明,应将长期的铜污染控制措施与短期的铜污染控制措施相结合,进行大流域的铜污染控制和小流域的铜污染控制。应执行严格的政策和污染控制策略,以确保浑河水质符合水生生物和人类生长的自然环境标准。

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