Assessment of Quality of Water Resource from Great Ruaha River and Allied Water Sources Serving Domestic Purposes at Pawaga Division

Jackson C. Ngowi, J. Saria
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Abstract

This study intended to assess water quality from Ruaha River and allied water sources serving domestic purpose in Pawaga division. By using standard methods triplicate samples from sixteen (16) different sites were collected and analyzed for physicochemical parameters and bacteriological values. The conductivity of analysed samples ranged between 1 – 286 µS/cm which is lower than the TBS threshold 2,500 µS/cm. The TDS ranges between 107 – 2235.8 mg/L during the wet season and 49.0 – 2,616.3 mg/L during the dry season. The level of Na+ ranges between 0.2 – 104.4 mg/L during rainy season and 0.8 -119 mg/L during dry season. Nitrate levels ranges between 0.4 – 101.4 mg/L during rainy season and 0.3 – 107.9 mg/L during dry season. This may be contamination from fertilizers, municipal wastewaters, feedlots, septic systems in river water. Sulphate concentration ranges between 0.3 – 93.0 mg/L during rainy season and 3.7 – 98.9 during dry season. Sulphate can also be produced by bacterial or oxidizing action as in the oxidation of organo-sulphur compounds and the more common sinks are pyrite, gypsum, and sulphate reduction. The study concluded that, water supplied by Pawaga water supply must be treated to eliminate microbial, physical and chemical pollution prior to domestic water supplies. It recommended that Government should strengthen water intervention management and carry out intervention measures to improve water quality and reduce water pollution’s impact on human health. The control of water pollution can be done by increasing monitoring of wastewater disposal into rivers, carrying out an inventory and identifying water pollution sources.
帕瓦加分区大鲁阿哈河水资源及用于家庭用途的相关水源的水质评估
本研究旨在评估帕瓦加分区鲁阿哈河及相关生活用水水源的水质。采用标准方法从十六(16)个不同地点采集了一式三份的样本,并对其进行了理化参数和细菌值分析。分析样本的电导率介于 1 - 286 µS/cm 之间,低于水质监测系统的临界值 2,500 µS/cm。TDS 在雨季介于 107 - 2235.8 mg/L 之间,旱季介于 49.0 - 2,616.3 mg/L 之间。Na+ 含量雨季为 0.2 - 104.4 毫克/升,旱季为 0.8 - 119 毫克/升。硝酸盐含量在雨季为 0.4 - 101.4 mg/L,旱季为 0.3 - 107.9 mg/L。这可能是肥料、城市废水、饲养场、化粪池系统对河水造成的污染。硫酸盐浓度在雨季为 0.3 - 93.0 mg/L,旱季为 3.7 - 98.9 mg/L。硫酸盐也可由细菌或氧化作用产生,如有机硫化合物的氧化作用,更常见的沉淀物是黄铁矿、石膏和硫酸盐还原。研究得出的结论是,在向家庭供水之前,必须对 Pawaga 供水进行处理,以消除微生物、物理和化学污染。研究建议政府加强水干预管理,采取干预措施改善水质,减少水污染对人类健康的影响。可以通过加强对废水排入河流的监测、开展清查和确定水污染源来控制水污染。
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