The mechanism of ammonia inhibition in the thermophilic digestion of livestock wastes

W.M. Wiegant, G. Zeeman
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引用次数: 122

Abstract

This paper proposes a scheme for the inhibition of thermophilic methane digestion processes by high ammonia concentrations. Ammonia acts as a strong inhibitor of the formation of methane from H2 and CO2. It has only a minor effect on the formation of methane from acetate, as indicated by the independence of the specific growth rate of acetate-consuming methanogens from the ammonia concentration (up to 4500 mg NH4+-N per litre). On the basis of thermodynamic considerations it is shown that the inhibition of the hydrogen consumption leads to an inhibition of propionate breakdown. Accumulated propionate, in turn, acts as an inhibitor of the acetate-consuming methanogens. This scheme explains the discrepancy between the observed acetate accumulation in thermophilic methane digestion systems with high ammonia levels and the independence of acetate mediated methanogenesis from high ammonia concentrations under laboratory conditions.

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家畜粪便嗜热消化过程中氨抑制的机理
本文提出了一种高氨浓度抑制嗜热甲烷消化过程的方案。氨是H2和CO2生成甲烷的强力抑制剂。从氨浓度(高达每升4500mg NH4+-N)对消耗醋酸盐的产甲烷菌的特定生长速率的独立性可以看出,它对醋酸盐生成甲烷的影响很小。基于热力学的考虑,表明抑制氢消耗导致抑制丙酸分解。积累的丙酸反过来又作为消耗醋酸盐的产甲烷菌的抑制剂。该方案解释了在高氨水平的嗜热甲烷消化系统中观察到的乙酸积累与实验室条件下高氨浓度下醋酸介导的甲烷生成的独立性之间的差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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