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首页> 外文期刊>The Science of the Total Environment >Emissions of volatile sulfur compounds (VSCs) throughout wastewater biosolids processing
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Emissions of volatile sulfur compounds (VSCs) throughout wastewater biosolids processing

机译:整个废水生物固体处理过程中的挥发性硫化物(VSC)排放

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AbstractVolatile sulfur compounds (VSCs) are important contributors to nuisance odours from the processing of wastewater sludge and biosolids. However, emission characteristics are difficult to predict as they vary between sites and are likely to be affected by biosolids processing configuration and operation. VSC emissions from biosolids throughout 6 wastewater treatment plants (WWTPs) in Sydney, Australia were examined in this study. H2S was the VSC found at the highest concentrations throughout the WWTPs, with concentrations ranging from 7 to 39,000μg/m3. Based on odour activity values (OAVs), H2S was typically also the most dominant odorant. However, methyl mercaptan (MeSH) was also found to be sensorially important in the biosolids storage areas given its low odour detection threshold (ODT). High concentrations of VOSCs such as MeSH in the storage areas were shown to potentially interfere with H2S measurements using the Jerome 631-X H2S sensor and these interferences should be investigated in more detail. The VSC composition of emissions varied throughout biosolids processing as well as between the different WWTPs. The primary sludge and biosolids after dewatering and during storage, were key stages producing nuisance odours as judged by the determination of OAVs. Cluster analysis was used to group sampling locations according to VSC emissions. These groups were typically the dewatered and stored biosolids, primary and thickened primary sludge, and waste activated sludge (WAS), thickened WAS, digested sludge and centrate. Effects of biosolids composition and process operation on VSC emissions were evaluated using best subset regression. Emissions from the primary sludge were dominated by H2S and appeared to be affected by the presence of organic matter, pH and Fe content. While volatile organic sulfur compounds (VOSCs) emitted from the produced biosolids were shown to be correlated with upstream factors such as Fe and Al salt dosing, anaerobic digestion and dewatering parameters.Graphical abstractDisplay OmittedHighlightsH2S and methyl mercaptan were key odorants detected above olfactory thresholdsPrimary sludge, dewatered and stored biosolids emitted highest VSC concentrationsIntra and inter site variability in VSC emissions were observedH2S emissions from the primary sludge were related to Fe dosing and organic matterVolatile organic sulfur compounds related to Fe/Al ratio and digester performance
机译: 摘要 挥发性硫化物(VSC)是废水污泥和生物固体加工过程中产生令人讨厌的气味的重要因素。但是,排放特征很难预测,因为它们在站点之间会有所不同,并且很可能会受到生物固体加工配置和操作的影响。在这项研究中,研究了澳大利亚悉尼的6个废水处理厂(WWTP)中来自生物固体的VSC排放。 H 2 S是整个污水处理厂中最高浓度的VSC,浓度范围为7至39,000μg/ m 3 。根据气味活性值(OAVs),H 2 S通常也是最主要的气味物质。但是,由于甲硫醇(MeSH)的气味检测阈值(ODT)低,因此在生物固体存储区域也具有重要的传感意义。已显示,使用Jerome 631-XH 2 S测量。 post“> 2 S传感器,应更详细地研究这些干扰。排放的VSC组成在整个生物固体处理过程以及不同的污水处理厂之间都不同。根据OAVs的测定,脱水后和储存期间的主要污泥和生物固体是产生讨厌气味的关键阶段。聚类分析用于根据VSC排放对采样位置进行分组。这些组通常是脱水和存储的生物固体,主要污泥和增稠的主要污泥,废物活性污泥(WAS),增稠的WAS,消化的污泥和浓缩液。使用最佳子集回归评估了生物固体成分和工艺操作对VSC排放的影响。主要污泥的排放以H 2 S为主,并且似乎受到有机物,pH和Fe含量的影响。虽然从产生的生物固体中释放出的挥发性有机硫化合物(VOSC)与上游因素如铁和铝盐的添加,厌氧消化和脱水参数相关。 图形摘要 省略显示 突出显示 H 2 S和甲硫醇是嗅觉阈值以上的主要气味物质 主要污泥,脱水和储存的生物固体释放出最高的VSC浓度 观测到VSC排放的站点内和站点间差异 H 2 主要污泥中的S排放与铁的添加量和有机物有关< / ce:para> 与Fe / Al比和蒸煮器性能有关的挥发性有机硫化合物

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