Surface Water Quality Assessment of Panchagnaga River and Development of DO-BOD Relationship Using Empirical Approach

Shilpa Yakkerimath, Sanjaykumar V. Divekar, C. Patil, A. A., Purandara Bekal
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Abstract

Surface water samples were collected from selected locations along river Panchaganga, from Kolhapur to Narsobawadi during April 2019. Physicochemical parameters were determined in the laboratory and chemical mass balance approach was adopted to estimate the individual ionic loads in the river water. Streeter-Phelps equation was applied to derive a relationship between DO and BOD5. Model parameters such as De-oxygenation Rate (Kd) and Re-aeration Rates (Kr ) were optimized using different empirical methods. The result of chemical mass balance showed an increase in the loading of various ions from upstream to downstream which could be attributed to agricultural and industrial wastes that enter the main stream. De-oxygenation rate and re-aeration constants were calculated using various empirical methods. DO sag curve was developed using Streeter Phelp’s model and compared with the observed parameters which showed a significant correlation. DO-BOD concentration observed along the course of the river indicated that the self-purification capacity of the river is high due to which the river regains the lost DO level at a distance less than 50 meters. 
潘查那加河地表水水质评价及DO-BOD关系的实证研究
2019年4月,从科尔哈布尔到纳索巴瓦迪,从Panchaganga河沿岸的选定地点收集了地表水样本。在实验室中确定了理化参数,并采用化学质量平衡法估计了河水中各离子负荷。采用Streeter-Phelps方程推导出DO与BOD5的关系。采用不同的经验方法对模型参数如脱氧速率(Kd)和再曝气速率(Kr)进行优化。化学质量平衡结果表明,从上游到下游各种离子的负荷增加,这可能是由于农业和工业废物进入干流。采用各种经验方法计算脱氧速率和再曝气常数。采用Streeter Phelp模型绘制DO凹陷曲线,并与观测参数进行对比,结果显示相关性显著。沿河道的DO- bod浓度表明,河流的自净能力较高,因此河流在距离小于50米的地方恢复了失去的DO水平。
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