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Emission Characteristics and Factors of Selected Odorous Compounds at a Wastewater Treatment Plant

机译:废水处理厂的排放特性及选定的有害化合物的影响因素

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摘要

This study was initiated to explore the emission characteristics of Reduced Sulfur Compounds (RSCs: hydrogen sulfide, methyl mercaptan, dimethyl sulfide, dimethyl disulfide), ammonia and trimethylamine from a Wastewater Treatment Plant (WWTP) located at Sun-Cheon, Chonlanam-Do in South Korea. The study also evaluates flux profiles of the six selected odorous compounds and their flux rates (μg/m2/min) and compares their emission characteristics. A Dynamic Flux Chamber DFC was used to measure fluxes of pollutants from the treatment plant. Quality control of odor samples using a non-reactive sulfur dioxide gas determined the time taken for DFC concentration to reach equilibrium. The reduced sulfur compounds were analyzed by interfacing gas chromatography with a Pulsed Flame Photometric Detector (PFPD). Air samples were collected in the morning and afternoon on one day during summer (August) and two days in winter (December and January). Their emission rates were determined and it was observed that during summer relatively higher amounts of the selected odorous compounds were emitted compared to winter. Air samples from primary settling basin, aeration basin, and final settling basin were tested and the total amount of selected odorous compounds emitted per wastewater ton was found to be 1344 μg/m3 from the selected treatment processes. It was also observed that, in this study, the dominant odor intensity contribution was caused by dimethyl disulfide (69.1%).
机译:这项研究的开始是为了探索位于Chonlanam-Do的Sun-Cheon的废水处理厂(WWTP)中的还原硫化合物(RSC:硫化氢,甲硫醇,二甲硫,二甲基二硫),氨和三甲胺的排放特性。韩国。该研究还评估了六种选定气味化合物的通量分布图及其通量率(μg/ m2 / min),并比较了它们的排放特性。动态通量室DFC用于测量来自处理厂的污染物通量。使用非反应性二氧化硫气体对气味样品进行质量控制,确定了DFC浓度达到平衡所需的时间。通过气相色谱仪与脉冲火焰光度检测器(PFPD)进行界面分析,分析还原的硫化合物。在夏季(八月)的一天的早晨和下午和冬季(十二月和一月)的两天收集空气样本。确定了它们的排放速率,并且观察到,与冬季相比,在夏季排放了相对较多的选定气味化合物。测试了来自主要沉降池,曝气池和最终沉降池的空气样品,在选定的处理过程中,每废水吨排放的选定有气味化合物的总量为1344μg/ m3。还观察到,在这项研究中,主要的气味强度贡献是由二甲基二硫化物(69.1%)引起的。

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