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The Impact of the Bisubstituted Aromatics Functional Groups on the Inhibition of Methane Biosynthesis (Biogas)

机译:双取代的芳香族官能团对甲烷生物合成(沼气)抑制的影响

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Inhibitory compounds are often found to be the leading cause of anaerobic reactor upset and failure since they are present in substantial concentration in wastewaters and organic solid wastes. Among these inhibitory compounds, organic compounds are mentioned and more especially aromatic compounds. The purpose of this work was to evaluate the effect of bisubstituted aromatics functional groups on the methanogenic inhibition. The toxicity to acetoclastic methanogenic bacteria has performed in serum flasks, utilizing digested pig manure as inoculums, by measuring cumulative methane production. The results obtained indicate that some general relationships exist between the bisubstituted aromatic structures and their inhibitory effects on methanogenic bacteria. This demonstrates sufficiently that the grafting of hydrophobic or hydrophilic substituent on the benzene or monofunctional aromatic compound, make the obtained compound more or less toxic as the case and that in the same order of toxicity. A significant correlation was obtained indicating that the partitioning of bisubstituted aromatics into lipophilic membranes in bacteria may have a role in the inhibition of methane biosynthesis.
机译:通常发现抑制性化合物是厌氧反应器故障和失效的主要原因,因为它们以大量浓度存在于废水和有机固体废物中。在这些抑制性化合物中,提及有机化合物,更特别是芳族化合物。这项工作的目的是评估双取代的芳香族官能团对产甲烷抑制作用。对乙破产甲烷菌的毒性在血清瓶中进行,通过测量累积的甲烷产量,利用消化的猪粪作为接种物。获得的结果表明,双取代的芳族结构与其对产甲烷菌的抑制作用之间存在一些一般关系。这充分证明了疏水性或亲水性取代基在苯或单官能芳族化合物上的接枝使得所获得的化合物视情况具有或多或少的毒性,并且具有相同的毒性顺序。获得了显着的相关性,表明细菌中双取代芳烃在亲脂膜中的分配可能在抑制甲烷生物合成中起作用。

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