马哈威利河上游4个微流域出水口在马哈种植季的水质变化

N. Abeysingha, M. I. Madusanka, B. Rotawewa, N. Gunasena
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引用次数: 0

摘要

非点源、农业污染物已被确定为斯里兰卡水污染的主要原因之一。位于康提区的Naranhinna、Pambadeniya kapet - ela和Rajamale微流域已被联合国粮农组织(FAO)实施的中央高地退化农业用地恢复项目确定,以通过流域管理计划进行恢复。本研究通过获取2018/2019年Maha种植季每个流域出水口的水样,评估了这些微流域的基线水质状况。每个水口采集3个重复水样6次,采用标准方法分析EC、pH、TDS、CO32-、HCO3-、NO3-、NH4+、有效磷、总钾、Na、Ca、Mg、Fe、Al、As、Cd、Cr、Mn和Pb。4个微流域饮用水水质指标除铁和氨外,其余指标均在世界卫生组织(WHO)标准允许范围内。观察到所有流域的铁含量均超过世界卫生组织的限值(0.3 mg/L),在1.2 ~ 1.5 mg/L范围内。Kappeti Ela、Rajamale和Pambadeniya的NH4+浓度在0.5 ~ 0.7 mg/L之间,超过了WHO标准(0.5 mg/L)。利用测试参数,研究计算了每个采样日期所有调查微流域的饮用水水质指数(DWQI)和灌溉水质指数(IWQI)。根据该指南,平均DWQI(19至48.1)将所有微流域的水评为优秀,而IWQI(8.7-9.2)将其描述为研究期间任何作物的优秀。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Variation of Water Quality of Four Micro Watersheds Outlets in Upstream of Mahaweli River during Maha Cropping Season
Non-point source, agriculture based pollutants have been identified as one of the main cause for water pollution in Sri Lanka. Naranhinna, Pambadeniya Kappeti-Ela, and Rajamale micro watersheds located in the Kandy district have been identified by the project on Rehabilitation of degraded agricultural lands in the Central Highlands implemented by Food and Agricultural Organisation (FAO) to rehabilitate through watershed management plan. This study assessed the baseline water quality status of these micro watersheds by obtaining water samples at the outlet of each watersheds during the Maha cropping seasons 2018/2019. Three replicates water samples from each outlets were collected six times and analysed for EC , pH, TDS, CO32-, HCO3-, NO3-, NH4+, available P, total K, Na, Ca, Mg, Fe, Al, As, Cd, Cr, Mn, and Pb using standard methods. Most of the tested drinking water quality parameters in all four micro watersheds were within the permissible limits of World Health Organisation (WHO) standard except Fe and NH4+. Observed Fe contents exceeded the WHO limits (0.3 mg/L) of all watersheds and was in the range of 1.2-1.5 mg/L. Concentration of NH4+ at Kappeti Ela, Rajamale, and Pambadeniya was in the range of 0.5 to 0.7 mg/L which exceeded the WHO standard (0.5 mg/L). Using the tested parameters, study calculated drinking water quality index (DWQI) and also irrigation water quality index (IWQI) for all investigated micro watersheds for each of the sampling date. According to the guideline, mean DWQI (19 to 48.1) graded the water of all micro watersheds as excellent while IWQI (8.7-9.2) characterised them as excellent for any crops during the study period.
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