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Water Quality Assessment of Streams and Wetlands in a Fast Growing East African City

机译:快速发展的东非城市河流和湿地的水质评估

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The combination of rapid urbanization, industrialization, population growth, and low environmental awareness poses a major threat to worldwide valuable freshwater resources, which provide important ecosystem services to humans. There is an urgent need to monitor and assess these resources, as this information is indispensable for sustainable decision-making and management. In this context, we analyzed the chemical and ecological water quality of the riverine environment of a fast growing city in Southwest Ethiopia for which we proposed possible remediation options that were evaluated with an empirical model. The chemical and ecological water quality was assessed at 53 sampling locations using the oxygen Prati index and the ETHbios, which is a biotic index based on macroinvertebrates. In addition, a microbiological analysis was performed to estimate the degree of fecal contamination. Finally, we analyzed the relationship between the oxygen content and the organic pollution to simulate the effect of organics removal from waste streams on the chemical water quality. Our results showed that the average values for dissolved oxygen (4.2 mg DO·L ?1 ) and nutrients (0.9 mg oPO 4 3? ·L ?1 and 12.8 mg TAN·L ?1 ) exceeded international standards. Moreover, high turbidity levels revealed that land erosion is a severe problem in the region. Along the rivers, a significant increase in oxygen consumption and in nutrient concentrations was observed, indicating organic pollution originating from different diffuse and point sources of pollution. The lack of proper sanitation also led to exceedingly high abundances of fecal coliforms in the surface water (>320 MPN·mL ?1 ). However, fecal contamination was strongly reduced (>92%) after the polluted river water passed Boye wetland, indicating the purification potential of natural wetlands and the importance of conserving and protecting those ecosystems. The simulation results of the model showed that water quality could be substantially improved if municipal, industrial, and institutional wastewater was efficiently collected and transported to a treatment facility. Waste stabilization ponds and constructed wetlands are highly promising techniques, as they provide a cheap, effective, reliable, and sustainable way to purify wastewater. It is advised that the environmental awareness of the people via sensitization, education, and law enforcement is increased, as this is essential for sustainable development.
机译:快速的城市化,工业化,人口增长和低环境意识相结合,对全球宝贵的淡水资源构成了重大威胁,淡水资源为人类提供了重要的生态系统服务。迫切需要监视和评估这些资源,因为这些信息对于可持续的决策和管理是必不可少的。在此背景下,我们分析了埃塞俄比亚西南部快速发展的城市河流环境的化学和生态水质,为此我们提出了可能的补救方案,并通过经验模型对其进行了评估。使用氧气Prati指数和ETHbios(这是一种基于大型无脊椎动物的生物指数)对53个采样点的化学和生态水质进行了评估。另外,进行了微生物分析以估计粪便污染的程度。最后,我们分析了氧气含量与有机污染之间的关系,以模拟从废水中去除有机物对化学水质量的影响。我们的结果表明,溶解氧(4.2 mg DO·L?1)和营养素(0.9 mg oPO 4 3?·L?1和12.8 mg TAN·L?1)的平均值超过了国际标准。此外,高浊度表明土地侵蚀是该地区的一个严重问题。沿河,观察到氧气消耗量和养分浓度显着增加,表明有机污染源于不同的扩散和点污染源。缺乏适当的卫生设施还导致地表水中粪便大肠菌的含量过高(> 320 MPN·mL?1)。但是,在被污染的河水经过博耶湿地后,粪便污染得到了大大减少(> 92%),这表明天然湿地具有净化潜力,并且具有保护和保护这些生态系统的重要性。该模型的模拟结果表明,如果有效地收集市政,工业和机构废水并将其输送到处理设施,则可以大大改善水质。废物稳定池和人工湿地是非常有前途的技术,因为它们提供了一种廉价,有效,可靠和可持续的净化废水的方式。建议通过宣传,教育和执法提高人们的环保意识,因为这对于可持续发展至关重要。

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