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Removal of odorant dimethyl disulfide under alkaline and neutral conditions in biotrickling filters

机译:在碱性和中性条件下,在生物滴滤池中去除二甲基二硫醚

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The aim of this paper was to evaluate the performance of biotrickling filters (BTFs) for treating low concentrations of dimethyl disulfide (DMDS), using different bacterial consortia adapted to consume reduced sulfur compounds under alkaline (pH ≈ 10) or neutral (pH ≈ 7) conditions. Solubility experiments indicated that the partition of DMDS in neutral and alkaline mineral media was similar to the value with distilled water. Respirometric assays showed that oxygen consumption was around ten times faster in the neutrophilic as compared with the alkaliphilic consortium. Batch experiments demonstrated that sulfate was the main product of the DMDS degradation. Two laboratory-scale BTFs were implemented for the continuous treatment of DMDS in both neutral and alkaline conditions. Elimination capacities of up to 17 and 24 g DMDS m ~(-3) h ~(-1) were achieved for the alkaliphilic and neutrophilic reactors with 100% removal efficiency after an initial adaptation and biomass build-up.
机译:本文的目的是评估使用生物滴滤池(BTF)处理低浓度的二甲基二硫(DMDS)的性能,使用不同的细菌联盟来适应在碱性(pH≈10)或中性(pH≈7)下消耗还原的硫化合物。 ) 条件。溶解度实验表明,DMDS在中性和碱性矿物介质中的分配类似于蒸馏水的分配。呼吸测定法显示,嗜中性嗜氧菌的耗氧量比嗜碱嗜热菌群的耗氧快约十倍。批处理实验表明硫酸盐是DMDS降解的主要产物。实施了两个实验室规模的BTF,以在中性和碱性条件下连续处理DMDS。对于碱和中性反应堆,在初始适应和生物质积累后,去除能力高达17和24 g DMDS m〜(-3)h〜(-1),去除效率为100%。

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