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Treatment of unpleasant odors in municipal wastewater treatment plants

机译:处理市政废水处理厂中难闻的气味

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The purpose of this paper to present a case study on how to address the odor problem from secondary sources within a municipal wastewater treatment plant (WWTP) by first identifying the locations of the problem and second by evaluating alternative treatment technologies. The WWTP of Chania is a typical 100,000 equivalent inhabitants-facility in a warm semi-arid environment which is located close to residential areas. The installation of a chemical scrubber to control major odor sources within the plant did not succeed in eliminating complaints by nearby residents, and additional measures were required. In this case study we identify all major secondary sources of odor within the plant and evaluate the effectiveness of the different technologies that were employed to address this problem (cover installation, gas and liquid phase oxidation, activated carbon/permanganate absorption, FeCl_3 addition). In particular, we found that installation of covers and reduction of turbulence at two key locations within the WWTP was the best strategy to combat unpleasant odors. Furthermore, when the central chemical scrubber was near capacity the installation of an auxiliary system of activated carbon absorption coupled to permanganate oxidation was deemed to be a safe approach. However, despite the very high removal efficiency (>99.5%) of the unit, the addition of FeCl _3 in the liquid phase was required in order to achieve complete deodorization (below the human odor threshold level).
机译:本文的目的是提供一个案例研究,该案例研究如何通过首先确定问题的位置并通过评估替代处理技术来解决市政废水处理厂(WWTP)中来自二次来源的气味问题。干尼亚的污水处理厂是一个典型的100,000个当量居民设施,位于温暖的半干旱环境中,靠近居民区。在工厂内安装化学洗涤器以控制主要气味源未能成功消除附近居民的抱怨,因此需要采取其他措施。在本案例研究中,我们确定了工厂内所有主要的次要气味来源,并评估了用于解决该问题的不同技术的有效性(覆盖装置,气相和液相氧化,活性炭/高锰酸盐吸收,FeCl_3的添加)。尤其是,我们发现在污水处理厂内的两个关键位置安装盖子并减少湍流是消除难闻气味的最佳策略。此外,当中央化学洗涤器接近满负荷时,安装活性炭吸收与高锰酸盐氧化偶联的辅助系统被认为是一种安全的方法。但是,尽管该装置的去除效率非常高(> 99.5%),但仍需要在液相中添加FeCl 3以实现完全除臭(低于人的气味阈值水平)。

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