尼泊尔坎昌布尔Jhilmila湖水化学评价

K. B. Pal, K. Bishwakarma, T. B. Chalaune, Durga Upadhaya, T. R. Joshi, L. Thapa, M. L. Sharma, S. Joshi, R. Pant
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引用次数: 7

摘要

淡水污染仍然是湿地生态系统可持续管理的一个挑战。采用标准测试程序、地球化学指标和多元统计分析方法,对尼泊尔坎灿布尔Jhilmila湖水质进行评价。在2018年季风后季节采集地表水样品,评估水化学参数,如pH、电导率(EC)、总溶解固体(TDS)和溶解氧(DO)、铵(NH4)、钠(Na+)、钾(K+)、钙(Ca2+)、镁(Mg2+)、氯化物(Cl-)、硫酸盐(SO4)、硝酸盐(NO3)、磷酸盐(PO4)、碳酸氢盐(HCO3)和总硬度(TH)。EC范围为162 ~ 190 μS/cm, TDS范围为87 ~ 101 mg/L。水体DO浓度为4.77 ~ 6.21 mg/L,为轻度有机污染。此外,研究结果还揭示了水的中等碱性,阳离子的平均优势为Ca2+>Na+>Mg2+ >K>NH4,阴离子的平均优势为HCO3> Cl > SO4 > NO3 > PO4。主成分分析表明,EC、TDS、Ca2+、Mg2+和HCO3有4个主要的关联成分;Na+、PO4和SO4;NO3和K+;PC1、PC2、PC3和PC4的cl值分别为地质成因和人为成因。总体而言,Jhilmila湖污染较轻,所有测量的水质参数均在饮用允许范围内。这项研究的发现可以通过更好地了解湖泊的水质和水化学来帮助湖泊的可持续管理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydrochemical Assessment Of Jhilmila Lake, Kanchanpur, Nepal
Freshwater contamination remains a challenging issue for the sustainable management of wetland ecosystems. This study aims to evaluate the water quality of Jhilmila Lake, Kanchanpur, Nepal by adopting standard test procedures, geochemical indices, and multivariate statistical analysis. The surface water samples were collected during the postmonsoon season in 2018 to assess the hydrochemical parameters such as pH, electrical conductivity (EC), total dissolved solids (TDS) and dissolved oxygen (DO), ammonium (NH4), sodium (Na+), potassium (K+), calcium (Ca2+), magnesium (Mg2+), chloride (Cl-), sulphate (SO4), nitrate (NO3), phosphate (PO4), bicarbonate (HCO3) and total hardness (TH). The EC ranged from 162-190 μS/cm while TDS was 87-101 mg/L. The concentration of DO in the lake was in the range of 4.77-6.21 mg/L, indicated mild organic pollution. Moreover, the results revealed the moderate alkaline nature of water with the pattern of average ionic dominance of Ca2+>Na+>Mg2+ >K>NH4 for cations, and HCO3> Cl˗ > SO4 > NO3 > PO4 for anions. The principal component analysis demonstrated four major components indicating the association of EC, TDS, Ca2+, Mg2+, and HCO3; Na+, PO4 and SO4; NO3 and K+; and Clfor PC1, PC2, PC3, and PC4, respectively exhibiting both the geogenic and anthropic origin. Overall, the Jhilmila Lake was less polluted, and all the measured water quality parameters were found within permissible limits in terms of drinking purposes. The findings of this study could help for the sustainable management of the lake by providing better insights into the water quality and hydrochemistry of the lake.
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