利用GIS和统计方法通过水质指数描绘费萨拉巴德水质方面

H. S. Worogo, Thierry O.L.F. Offoumon
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引用次数: 0

摘要

饮用水对生命和生存至关重要,其质量的恶化可能会影响全球人类。因此,水质监测是生命周期的重要组成部分。为此,在费萨拉巴德市开展了一项研究,利用水质指数(WQI)监测水质方面的情况。选取EC、浊度、TDS、硝酸盐、砷和氟化物等6个参数,利用GIS和统计学方法确定它们对水等级量表的个别超过阈值效应和综合效应。选取了13个采样点来确定水质指数。统计方法提供了采样点间参数的最大值、最小值、平均值和标准差。利用圆弧图对这些参数进行空间分布,以便在实体水平上提供熟悉的方法。影响参数的相对权重(Wi),水质评定量表(Qi),即水样中参数的浓度与参数标准值的比值。Wi和Qi的联合作用将WQI作为评定量表值,在22 ~ 375之间。经分析确定水质为优(7.5%)、良(23.07%)、差(30.76%)、极差(15.38%)、不宜饮用(23.07%)。人们普遍认为水在使用前应过滤或净化,以避免对人体健康产生有害影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Delineation of Water Quality Aspects Through Water Quality Index Using GIS and Statistical Approach in Faisalabad
Drinking water is essential for life and survival, deterioration of its quality may affect human being at global level. Therefore, monitoring of water quality is essential component for life cycle. For this purpose, a study was carried out in Faisalabad tehsil to monitor the water quality aspects using Water Quality Index (WQI). Six parameters were selected like EC, Turbidity, TDS, Nitrates, Arsenic and Fluorides, their individual effect beyond threshold levels and combined effect on water rating scale was determined using GIS and statistical approach. Thirteen sampling locations were selected to determine the Water Quality Index. Statistical approach provided the maximum, minimum, mean and standard deviation of parameters among sampling locations. These parameters were spatially distributed using arc map to provide conversant approach at tehsil level. Relative weights of influencing parameters (Wi), Water quality rating scale (Qi) which is ratio of concentration of parameters in the water sample to standard value of parameters. Combined effect of Wi and Qi provided WQI as rating scale value which was between 22 to 375. After analysis, it determined the water quality as excellent (7.5%), good (23.07%), poor 30.76%), very poor (15.38%) and unfit for drinking purpose (23.07%). It prevailed that water should be filtered or purify before use to avoid hazardous effect on human health.
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