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Assessment of Odor Emissions at a Municipal WWTP in the Middle East

机译:中东城市污水处理厂的气味排放评估

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Dispersion models are often used to estimate the impact of odor emissions from unit processes at municipal wastewater treatment plants (WWTP) at the fence line of the property. The typical approach is to assess the emission rates from the various odor sources, and then perform air dispersion modeling to determine the expected odor concentration at the fence line. If the odor concentration at the fence line meets the WWTP's treatment objective, then no further treatment is required. However, if it does not meet the fence line odor objective, then the various odor sources are isolated and treated until the desired fence line odor concentrations are being met. This methodology works well for existing WWTPs, but it becomes challenging when a greenfield WWTP is designed, since no actual odor emission data is available for use in the dispersion model. This paper reports emission data estimations on a greenfield WWTP plant in the Middle East (Plant) to assess the degree of treatment that is required to achieve the Plant's desired fence line odor objectives. Because odor emission data was not available for WWTPs in the Middle East, it created a substantial challenge to perform the dispersion modeling, and emission rates were assumed. After the Plant was constructed, actual emission rates from the entire Plant were measured and compared with the theoretical assumed values, to determine whether the odor capture and treatment methods used at the Plant were sufficient to meet its fence line odor requirements. A comprehensive odor emissions study was performed at the Plant with the following objectives: 1) Measure the emission rate of every unit process identified as an emission source during the design phase of the Plant 2) Compare the measured emission rates to the previously assumed emission rates The data collected during this study forms a valuable database for use with dispersion models for similar future greenfield WWTPs in the Middle Eastern region to ensure that acceptable fence line odor concentrations are achieved. This paper further highlights some of the challenges experienced during the performance of the odor study, and the practical methods developed to perform odor measurements.
机译:分散模型通常用于估算物业围栏线上市政废水处理厂(WWTP)的单位工艺产生的气味排放的影响。典型的方法是评估各种气味源的排放速率,然后执行空气扩散建模以确定围栏线上的预期气味浓度。如果围墙线上的气味浓度符合污水处理厂的处理目标,则无需进一步处理。但是,如果它不符合围栏气味的目标,则隔离并处理各种气味源,直到达到所需的围栏气味浓度。这种方法对于现有的WWTP效果很好,但是当设计未开发的WWTP时,由于没有实际的气味排放数据可用于分散模型,因此该方法具有挑战性。本文报告了中东(植物)未开发的污水处理厂的排放数据估计,以评估达到植物所需的围栏气味目标所需的处理程度。由于中东的污水处理厂没有气味排放数据,因此对进行分散建模提出了巨大的挑战,并假设了排放率。工厂建成后,测量整个工厂的实际排放率,并将其与理论假设值进行比较,以确定工厂使用的气味捕获和处理方法是否足以满足其围栏气味要求。在工厂进行了一项全面的气味排放研究,其目标如下:1)在工厂的设计阶段中,测量被确定为排放源的每个单元过程的排放率; 2)将测得的排放率与先前假定的排放率进行比较这项研究期间收集的数据形成了一个有价值的数据库,可用于中东地区类似的未开发污水处理厂的扩散模型,以确保达到可接受的围栏气味浓度。本文进一步强调了进行气味研究的过程中遇到的一些挑战,以及为进行气味测量而开发的实用方法。

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