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Assessment of hydrogen sulfide emission from a sewage treatment plant using AERMOD

机译:使用AERMOD评估污水处理厂的硫化氢排放

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Air quality modeling plays an important role in prediction of air pollutants in urban areas. Moreover, it is also an essential component to make crucial decisions in environmental management. In this study, environmental protection agency (EPA) regulatory model (AERMOD) was implemented in order to assess the urban air quality in the city of Muscat, Sultanate of Oman. Dispersion modeling was employed for the prediction of hydrogen sulfide (H2S) emissions, a neighborhood claimed issue, from Al-Ansab sewage treatment plant (STP). Meteorological, elevation data, and H2S survey results were implemented into the model. From the site survey study, four different H2S emission sources were identified as sewage tanker connection points, biofilter, old odor control unit (OCU), and open channels of raw sewage. It was observed that based on maximum 24-h analysis, the ground level concentration outside the STP exceeded the concentration limit, 40 mu g/m(3), recommended by the local regulating agency in Oman. By applying a sensitivity analysis study, the locations with the highest predicted H2S levels were identified. The most affected area in the worst-case scenario was the nearby expressway with 450.9 mu g/m(3) of H2S. The highest ground level concentration of H2S was detected in March, while the lowest was measured in December. The model also predicted that the impact of odor nuisance is greater at the summer season than that of other seasons due to the elevated temperatures. The study revealed an adverse environmental impact from the STPs on urban air quality, which may pose a threat to the public health.
机译:空气质量建模在预测城市地区的空气污染物中起着重要作用。此外,它也是在环境管理中做出关键决定的重要组成部分。在这项研究中,为了评估阿曼苏丹国马斯喀特的城市空气质量,实施了环境保护机构(EPA)监管模型(AERMOD)。分散模型被用于预测来自Al-Ansab污水处理厂(STP)的硫化氢(H2S)排放,这是一个邻里所声称的问题。气象,海拔数据和H2S调查结果已应用到模型中。通过现场调查研究,确定了四个不同的H2S排放源,分别是污水罐车的连接点,生物滤池,旧臭味控制单元(OCU)和原污水的开放通道。据观察,基于最大的24小时分析,STP外部的地面浓度超过了阿曼当地监管机构建议的浓度极限40μg / m(3)。通过进行敏感性分析研究,确定了预测的H2S水平最高的位置。在最坏情况下受影响最大的区域是附近的高速公路,其H2S含量为450.9μg / m(3)。 3月检测到最高的H2S地面浓度,12月检测到最低的浓度。该模型还预测,由于温度升高,夏季气味异味的影响比其他季节大。该研究表明,污水处理厂对城市空气质量的不利环境影响可能对公众健康构成威胁。

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