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The Effect of the Monosubstituted Benzenes Functional Groups on the Inhibition of Methane Gas Biosynthesis

机译:单取代的苯甲酸酯官能团对甲烷气体生物合成的抑制作用

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Aromatic compounds are inhibitors of methane biosynthesis in anaerobic treatment of solid wastes and industrial effluents. Anaerobic treatment of solid wastes and industrial effluents may be limited by the methanogenic bacteria inhibition exerted by these types of compounds, the production of biogas is not possible and the organic matter contained in the effluent is not reduced. These effluents poured in the nature can be the basis of the pollution. The objective of this study is to evaluate the effect of monosubstituted aromatic compounds 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 methane production. The nature of aromatic functional groups was observed to have a profound effect on the toxicity of the monosubstituted aromatics. Among the monosubstituted aromatic, the chlorobenzene was the most toxic with 50% of inhibition occurring at the concentration of 30.08 mg/l. In contrast, benzoic acid is the least inhibitory with IC50 of 2515.20 mg/l. The partition coefficient octanol/water (logPoct), an indicator of hydrophobicity, had a significant correlation with the methanogenic toxicity.
机译:芳香化合物在固体废物和工业废水的厌氧处理中是甲烷生物合成的抑制剂。这些类型的化合物对产甲烷菌的抑制作用可能会限制固体废物和工业废水的厌氧处理,不可能产生沼气,并且废水中所含的有机物不会减少。这些倒入自然界的废水可以成为污染的基础。这项研究的目的是评估单取代的芳香族化合物官能团对产甲烷抑制作用。对乙破产甲烷菌的毒性已经在血清瓶中进行了,通过测量沼气的产生,利用消化的猪粪作为接种物。观察到芳族官能团的性质对单取代芳族化合物的毒性具有深远影响。在单取代的芳族化合物中,氯苯毒性最高,在30.08 mg / l的浓度下抑制率达50%。相反,苯甲酸的抑制作用最小,IC50为2515.20 mg / l。辛醇/水分配系数(logPoct)是疏水性的指标,与产甲烷毒性具有显着相关性。

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