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Redox Potential as a Means to Control the Treatment of Slurry to Lower H2S Emissions

机译:氧化还原电势作为控制浆料处理以降低H2S排放的手段

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摘要

Slurry can be oxidized to eliminate undesirable emissions, including malodorous hydrogen sulfide (H2S). However, it is difficult to assess the optimal amount of oxidizing agent required. In this study, one cow and one pig manure, each in three particle size ranges were oxidized with 0–350 mg ozone/L manure. Redox and H2S concentration were measured continuously. During ozonation the manures gave equivalent redox potential curves. A relatively rapid rise in redox potential was observed within a range of −275 mV to −10 mV, with all manures changing as a minimum from −200 mV to −80 mV. The gaseous H2S emissions were decreased by 99.5% during the redox increase (−200 mV to −80 mV). This is attributed to H2S oxidation by ozone and oxygen, and is not due to H2S deprotonation or gas flushing. By identifying the initiation of the final redox level following the rise, the amount of ozone required to remove H2S from the manure samples was estimated to be in the range of 6–24 mg O3/L manure, depending on the type of manure. Hence, continuous monitoring of redox potential (termination of the redox rise) during the oxidation treatment is a simple method of achieving cost-effective minimization of H2S emissions from slurry.
机译:可以将浆液氧化以消除有害的排放物,包括恶臭的硫化氢(H2S)。但是,难以评估所需的最佳氧化剂量。在这项研究中,用0–350 mg臭氧/ L肥料氧化了三种粒径范围内的一头牛和一头猪粪。连续测量氧化还原和硫化氢浓度。在臭氧化过程中,粪便给出了等效的氧化还原电位曲线。在-275 mV至-10 mV的范围内观察到氧化还原电位相对较快的上升,所有肥料的最小变化范围为-200 mV至-80 mV。在氧化还原增加期间(-200 mV至-80 mV),气态H2S排放降低了99.5%。这归因于臭氧和氧气对H2S的氧化,而不是由于H2S的去质子化或气体冲洗。通过确定上升后最终氧化还原水平的开始,根据粪便的类型,从粪便样品中去除H2S所需的臭氧量估计为6–24 mg O3 / L粪便。因此,在氧化处理过程中连续监测氧化还原电势(氧化还原上升的终止)是一种简单有效的方法,可实现将浆料中的H2S排放物成本效益降至最低。

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