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首页> 外文期刊>Journal of Environmental Management >Two-liquid phase partitioning biotrickling filters for methane abatement: Exploring the potential of hydrophobic methanotrophs
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Two-liquid phase partitioning biotrickling filters for methane abatement: Exploring the potential of hydrophobic methanotrophs

机译:两液相分配生物滴流滤池,用于甲烷减排:探索疏水甲烷甲烷的潜力

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摘要

The potential of two-liquid phase biotrickling filters (BTFs) to overcome mass transfer limitations derived from the poor aqueous solubility of CH4 has been scarcely investigated to date. In this context, the abatement of diluted methane emissions in two-liquid phase BTFs was evaluated using two different inocula: a type Ⅱ methanotrophs culture in BTF 1 and a hydrophobic microbial consortium capable of growing inside silicone oil in BTF 2. Both BTFs supported stable elimination capacities above 45 g m~(-3) h~(-1) regardless of the inoculum, whereas no improvement derived from the presence of hydrophobic microorganisms compared to the type Ⅱ metanotrophs culture was observed. Interestingly, the addition of silicone oil mediated a reduced metabolites concentration in the recycling aqueous phase, thus decreasing the needs for mineral medium renewal. Moreover, a 78% similarity was recorded between the microbial communities enriched in both BTFs at the end of the experimental period in spite of the differences in the initial inoculum structure. The results obtained confirmed the superior performance of two-liquid phase BTFs for CH_4 abatement compared with conventional biotrickling filters.
机译:迄今为止,几乎没有研究过两液相生物滴滤池(BTF)克服因CH4水溶性差而引起的传质限制的潜力。在这种情况下,使用两种不同的接种物评估了两液相BTF中稀释的甲烷排放量的减少:BTF 1中的Ⅱ型甲烷营养菌培养物和能够在BTF 2中的硅油内部生长的疏水性微生物财团。两种BTF都支持稳定不论接种量如何,其清除能力均高于45 gm〜(-3)h〜(-1),而与Ⅱ型中性营养培养相比,疏水性微生物的存在并没有改善。有趣的是,硅油的添加介导了再循环水相中代谢物浓度的降低,从而减少了矿物介质更新的需求。此外,尽管初始接种物结构有所不同,但在实验期结束时,在两个BTF中富集的微生物群落之间仍记录有78%的相似性。获得的结果证实了与传统的生物滴滤滤池相比,两液相BTF在CH_4减排方面具有优异的性能。

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