Water quality assessment of Loktak Lake, Manipur using Landsat 9 imagery

Rajkumar Birendrakumar Singh, G. S. Yurembam, Deepak Jhajharia, B. C. Kusre
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Abstract

The role of freshwater lakes in providing water resources and supporting ecosystems is essential. Monitoring water quality using remote sensing (RS) technologies is crucial for sustainable management practices. A study on Loktak Lake was done using RS algorithms to predict post-monsoon water quality. The multiplication band model (B1 × B6) demonstrated a moderate correlation with dissolved oxygen (DO) values (mg/l) with (coefficient of determination, R2 = 0.47, root mean square error, RMSE = 0.23, and standard error of estimation, SEE = 0.23). The band combination (B2/B4) was strongly correlated with electrical conductivity (EC) values (μs/cm) (R2 = 0.60, RMSE = 9.44, and SEE = 9.69). For total dissolved solids (TDS) (mg/l), with an R2 = 0.61, RMSE = 5.95, and SEE = 6.09, Band 2 demonstrated a strong correlation between field values and satellite imagery. The post-monsoon water quality map of the lake indicates lower concentrations of DO, EC, and TDS on the western side and elevated values on the eastern side. The research concluded that RS algorithms can be effectively used to predict water quality parameters in Loktak Lake, specifically DO, EC, and TDS. The findings suggest that effective pollution management is needed on the western side of the lake.
利用 Landsat 9 图像评估曼尼普尔 Loktak 湖的水质
淡水湖在提供水资源和支持生态系统方面的作用至关重要。利用遥感(RS)技术监测水质对于可持续管理至关重要。利用 RS 算法对 Loktak 湖进行了研究,以预测季风后的水质。乘法波段模型(B1 × B6)与溶解氧(DO)值(毫克/升)呈中度相关(决定系数 R2 = 0.47,均方根误差 RMSE = 0.23,估计标准误差 SEE = 0.23)。波段组合(B2/B4)与电导率(EC)值(μs/cm)密切相关(R2 = 0.60,均方根误差 = 9.44,估计标准误差 = 9.69)。就溶解性总固体(TDS)(毫克/升)而言,R2 = 0.61,RMSE = 5.95,SEE = 6.09,波段 2 显示了实地值与卫星图像之间的紧密相关性。季风后的湖泊水质图显示,西侧的溶解氧、导电率和总溶解氧浓度较低,而东侧的数值较高。研究认为,RS 算法可有效用于预测洛塔克湖的水质参数,尤其是溶解氧、导电率和总溶解氧。研究结果表明,需要对湖泊西侧进行有效的污染管理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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