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Survey on Odorous Mineral Gases in the Air Around the Wastewater Treatment Plant: A Case Study in a Stabilization Pond

机译:废水处理厂空气中空气矿物气体调查 - 稳定池塘案例研究

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摘要

Malodors are one of the problems of water and wastewater treatment plants, especially in the vicinity of residential areas. Mineral compounds like hydrogen sulfide (H2S) and ammonia (NH3) produce unpleasant smells in the wastewater treatment plants. These gases also have adverse effects on both humans and the environment. After field visits around the plant, a number of 12 sampling stations were determined. Sampling stations were selected from 4 cardinal directions with regard to permanent trade winds and on distances of 0, 2 and 4 km from the plant. Sampling was performed in the morning and evening during the four seasons. Jacob and Indophenol methods were used for measuring the concentration of H2S and NH3. According to analysis of variance (ANOVA) and Tukey test, and concentrations of NH3 and H2S during different seasons, the emissions were more significant in the warm seasons and caused more malodors (P = 0.011, P = 0.004 for NH3 and H2S, respectively). Moreover, there was a significant relationship between the concentration of NH3 and sampling sites (P = 0.000). However, the relationship between the concentration of H2S and sampling stations was not significant (P = 0.179).According to the results, the concentrations of H2S and NH3 in all the seasons except for winter were within the threshold limits. The concentration of H2S in the summer and the concentration of NH3 in all the seasons were higher than USEPA standards and World Health Organization (WHO) guidelines.
机译:恶臭是水和废水处理厂的问题之一,特别是在住宅区附近。硫化氢(H2S)和氨(NH3)等矿物化合物在废水处理厂产生令人不愉快的味道。这些气体对人类和环境也具有不利影响。在植物周围访问田间后,确定了许多12个采样站。在永久性贸易风中,距离植物的永久贸易风以及距离的距离有4个主要方向。抽样在四季早上和晚上进行。 jacob和靛酚方法用于测量H 2 S和NH 3的浓度。根据不同季节的差异(ANOVA)和Tukey检验的分析,以及NH3和H2S的浓度,排放在温暖的季节中更为显着,并导致更多的恶臭(P = 0.011,P = 0.004,对于NH 3和H2S) 。此外,NH 3浓度和取样位点之间存在显着的关系(P = 0.000)。然而,H 2 S浓度与取样站之间的关系不显着(p = 0.179)。根据结果,除了冬季的所有季节中H2S和NH3的浓度都在阈值限制范围内。夏季H2S的浓度和NH3中的NH3浓度高于USEPA标准和世界卫生组织(世卫组织)指导方针。

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