Seasonal Variation and Removal of Organic Pollutants in Wastewater Using Low-Cost Treatment Technologies in Tamale Metropolis, Ghana

F. K. Abagale
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引用次数: 2

Abstract

The use of wastewater as alternative source of water for vegetable crop irrigation has become an eminent component of urban agriculture due to current global water crises in most developing countries, and admits the increasing effects of global climate change. The practise is however noted to be associated with significant health and environment risk due to excessive pollutant load. The study assessed the level of seasonal variation and removal of organic pollutants in wastewater using gravel filters combined with stabilisation ponds at Zagyuri in the Tamale Metropolis. The yard scale experiment consisted of cylindrical containers of different length filled with six different sizes of filter media and connected to stabilisation ponds where wastewater is allowed to pass through for filtration and stabilisation. The results indicated that for both seasons, the average concentration of BOD released into the stream at Zagyuri was 92.98 mg/l and 103.54 mg/l for the dry and wet season respectively whilst the COD was averaged 132.78 mg/l and 143.75 mg/l for the dry and wet seasons respectively. The results of the simple linear regression revealed a strong positive linear relationship between BOD and COD with coefficient of determination (R2) of 0.873 which was statistically highly significantly at Pr value of Pr values of 0.0011 and 5 and COD. The average concentration of BOD was higher than the Ghana EPA recommended levels while that of COD was lower and thus within safety range for discharge into the environment.
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季节变化和使用低成本处理技术去除废水中的有机污染物,加纳Tamale Metropolis
由于大多数发展中国家当前的全球水危机,将废水用作蔬菜作物灌溉的替代水源已成为城市农业的一个重要组成部分,并承认全球气候变化的影响日益严重。然而,由于污染物负荷过大,这种做法与严重的健康和环境风险有关。这项研究评估了季节变化水平,并使用砾石过滤器和Tamale Metropolis Zagyuri的稳定池对废水中有机污染物的去除。庭院规模的实验由不同长度的圆柱形容器组成,容器中填充了六种不同尺寸的过滤介质,并连接到稳定池,废水可以通过稳定池进行过滤和稳定。结果表明,在这两个季节,Zagyuri河流中释放的BOD平均浓度在旱季和雨季分别为92.98 mg/l和103.54 mg/l,而COD在旱季和旱季分别为132.78 mg/l和143.75 mg/l。简单线性回归的结果显示BOD和COD之间具有强的正线性关系,测定系数(R2)为0.873,在Pr值为0.0011和5的Pr值和COD时具有统计学上的高度显著性。BOD的平均浓度高于加纳环保局建议的水平,而COD的平均浓度较低,因此在排放到环境中的安全范围内。
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