Kasa Tilahun, Bassa Abeanezer Lukas, Negatu Geleta Tilahun, Sahile Zenebe Amele, Reddythota Daniel
Faculty of Water Supply & Environmental Engineering, AWTI, Arba Minch University, Ethiopia.
Arba Minch Water Technology Institute, Arba Minch University, Ethiopia.
Heliyon. 2022 Nov 29;8(12):e11865. doi: 10.1016/j.heliyon.2022.e11865. eCollection 2022 Dec.
The Wabe River is bordered by 74.84% agricultural area, and farmers rely solely on rainfall. The present research made an attempt to investigate the suitability of the Wabe river water for Agricultural and Industrial purpose. The suitability of river water for agricultural use was evaluated using the sodium adsorption ratio (SAR), potential salinity (PS), magnesium ratio (MR), Kelly index (KI), permeability index (PI), residual sodium carbonate (RSC), sodium percentage (%Na), and heavy metal pollution index (HPI). Additionally, the Ryznar Stability Index (RSI), Aggressive Index (AI), and Langelier Saturation Index (LSI) were used to evaluate the river water's suitability for industrial uses. Furthermore, plot the Gibb's diagrams to identify the sources of pollution and Piper diagrams to determine the hydrochemical composition of Wabe water. According to the HPI, pollution levels in the wet and dry seasons ranged from 53.34 (low) to 317.58 (medium) and 32.24 to 102.42 (low), respectively. The results showed that the Wabe River has very acceptable water quality characteristics and that the trace elements identified did not surpass thresholds that made them dangerous for agricultural usage. The findings showed that domestic wastewater and leachate contamination at sampling point W4 is the cause of the water quality deterioration in the downstream zone. The Ryznar Stability Index (RSI), Aggressive index, and Langelier saturation index readings were less than 9 at all sampling locations during both seasons, suggesting that the river water was corrosive, highly aggressive and unusable for industrial use without treatment.
瓦贝河周边74.84%为农业区,农民完全依赖降雨。本研究试图调查瓦贝河河水用于农业和工业用途的适用性。利用钠吸附比(SAR)、潜在盐度(PS)、镁比(MR)、凯利指数(KI)、渗透率指数(PI)、残留碳酸钠(RSC)、钠百分比(%Na)和重金属污染指数(HPI)评估河水用于农业用途的适用性。此外,还使用赖兹纳稳定指数(RSI)、侵蚀性指数(AI)和朗格利尔饱和指数(LSI)评估河水用于工业用途的适用性。此外,绘制吉布斯图以确定污染源,并绘制派珀图以确定瓦贝河水的水化学组成。根据HPI,湿季和干季的污染水平分别为53.34(低)至317.58(中)和32.24至102.42(低)。结果表明,瓦贝河具有非常良好的水质特征,所识别的微量元素未超过对农业使用构成危险的阈值。研究结果表明,采样点W4处的生活污水和渗滤液污染是下游区域水质恶化的原因。在两个季节的所有采样点,赖兹纳稳定指数(RSI)、侵蚀性指数和朗格利尔饱和指数读数均小于9,这表明河水具有腐蚀性、高度侵蚀性,未经处理无法用于工业用途。