Microbiological Assessment of Rainwater and Air Quality of Some Areas in Port Harcourt

A. Owhonka, Nlerum, Godshalom Otokin, Robinson, Victor K., Okafor, Afam Chibuike
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Abstract

The microbiological quality of Rainwater and air of the market, hospital, and residential area was evaluated. Roof-harvested and direct rainwater samples were collected from the three aforementioned locations. The air quality was investigated using the plate sedimentation method. Culture-based techniques were used for the enumeration and isolation of microorganisms in water samples, while the identities were confirmed using morphological, microscopic, and biochemical tests. The range of the total heterotrophic bacterial counts (THBC) of rainwater was 1.2±7.1x106 to 6.1±1.1 x106 cfu/ml, total coliform count (TCC) ranged between 8.0±0.00 x103 to 30.5 ±2.1 x103 cfu/ml, faecal coliform counts (FCC) ranged between 1.0±0.00×103 to 6.0±0.00×103 cfu/ml, fungal counts ranged from 2.0±0.00x103 to 11.0±0.00x103 cfu/ml.  The THB, TCC, and FCC of the air samples, ranged between 0.04±0.02 to 0.13±0.04 cfu/min-m2, 0.01±0.00to 0.03±0.00 cfu/min-m2, and 0.01±0.00 to 0.02±0.00 cfu/min-m2, respectively. There was a significant difference (P≤ 0.05) in the total heterotrophic bacterial load of the roof-harvested rainwater and the direct rainwater of the residential area, roof-harvested and direct rainwater of the hospital. Statistically, there was a significant difference (P≤ 0.05) in the total coliform counts of the water with the coliform counts of the roof-harvested rainwater of the market being significantly higher than the coliform counts recorded in other locations. Seven bacterial genera belonging to Micrococcus sp, Staphylococcus, Escherichia coli, Proteus sp, Pseudomonas sp, Enterobacter sp, and Bacillus sp were isolated. The fungal isolates were Candida sp, Mucor sp, Rhizopus sp, Penicillium sp, Aspergillus niger, and Aspergillus flavus. The results showed that rainwater is not fit for consumption due to its components and can cause harm to individuals if consumed without treatment. proper treatment is recommended before consumption. The results also showed that the microbiological quality of the air samples was influenced by their environment.
哈考特港部分地区雨水与空气质量微生物评价
对雨水和市场、医院、居民区空气微生物质量进行了评价。从上述三个地点收集屋顶收集的雨水和直接雨水样本。采用平板沉降法对空气质量进行了研究。以培养为基础的技术用于枚举和分离水样中的微生物,同时通过形态学,显微镜和生化测试确认其身份。雨水异养细菌总数(THBC)为1.2±7.1x106 ~ 6.1±1.1 x106 cfu/ml,总大肠菌群计数(TCC)为8.0±0.00 x103 ~ 30.5±2.1 x103 cfu/ml,粪大肠菌群计数(FCC)为1.0±0.00×103 ~ 6.0±0.00×103 cfu/ml,真菌计数为2.0±0.00x103 ~ 11.0±0.00x103 cfu/ml。空气样品的THB、TCC和FCC值分别为0.04±0.02 ~ 0.13±0.04 cfu/min-m2、0.01±0.003 ~ 0.03±0.00 cfu/min-m2和0.01±0.00 ~ 0.02±0.00 cfu/min-m2。住宅小区屋面雨水与直接雨水、医院屋面雨水与直接雨水的总异养菌负荷差异有统计学意义(P≤0.05)。水体总大肠菌群数量差异有统计学意义(P≤0.05),其中市场屋顶收集的雨水大肠菌群数量显著高于其他地点。分离到微球菌、葡萄球菌、大肠杆菌、变形杆菌、假单胞菌、肠杆菌和芽孢杆菌7属。分离到的真菌有念珠菌、毛霉、根霉、青霉、黑曲霉和黄曲霉。结果表明,由于雨水的成分,雨水不适合饮用,如果不进行处理,可能会对个人造成伤害。建议在食用前进行适当的处理。结果还表明,空气样品的微生物质量受环境的影响。
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