The Application of Regional Coordinate in the Relatively Heavily Polluted Area of Chromium in Water of the Hun River, Northeast China

Kan Zhang, Xue Feng
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Abstract

The aim of the present investigation was to research the relatively heavily polluted area of chromium in water of the Hun River. According to variance analysis, the concentrations of chromium in water showed significant differences at different sampling stations. In addition, we obtained the static concentration function of chromium in water by using a curve-fitting tool and the measured data. It was clear that the static concentration function perfectly revealed the change in regulations between the concentration of chromium in water and spatial coordinates. We furthermore determined the relatively heavily polluted area of chromium in water by using a regional coordinate formula. The results indicated that the relatively heavily polluted area of chromium in water was from H1 to H2, which was highly consistent with the measured data. It is clear that the determination of the relatively heavily polluted area of chromium is helpful to the comprehensive treatment of chromium pollution. The static concentration function and the regional coordinate of the relatively heavily polluted area of chromium in water comprehensively describe the distribution characteristics of chromium in water, which provide a scientific basis for water environment improvement and risk management in the Hun River.
区域坐标在浑河铬相对重污染区域的应用
对浑河水体铬污染较为严重的地区进行了调查研究。方差分析表明,不同采样点水体中铬的浓度存在显著差异。此外,利用曲线拟合工具和实测数据,得到了水中铬的静态浓度函数。显然,静态浓度函数很好地揭示了水中铬浓度与空间坐标之间的变化规律。并利用区域坐标公式确定了水中铬污染较重的区域。结果表明,水中铬污染较重的区域为H1 ~ H2,与实测数据高度一致。铬相对重污染区域的确定有助于铬污染的综合治理。水体中铬相对污染较重区域的静态浓度函数和区域坐标较全面地描述了水体中铬的分布特征,为浑河水体环境改善和风险管理提供了科学依据。
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