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Dynamics of Methane Production Sulfate Reduction and Denitrification in a Permanently Waterlogged Alder Swamp

机译:永久浸水的der木沼泽中甲烷生成硫酸盐还原和反硝化的动力学

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摘要

The dynamics of sulfate reduction, methane production, and denitrification were investigated in a permanently waterlogged alder swamp. Molybdate, an inhibitor of sulfate reduction, stimulated methane production in soil slurries, thus suggesting competition for common substrates between sulfate-reducing and methane-producing bacteria. Acetate, hydrogen, and methanol were found to stimulate both sulfate reduction and methane production, while trimethylamine mainly stimulated methane production. Nitrate addition reduced both methane production and sulfate reduction, either as a consequence of competition or poisoning of the bacteria. Sulfate-reducing bacteria were only slightly limited by the availability of electron acceptors, while denitrifying bacteria were seriously limited by low nitrate concentrations. Arrhenius plots of the three processes revealed different responses to temperature changes in the slurries. Methane production was most sensitive to temperature changes, followed by denitrification and sulfate reduction. No significant differences between slope patterns were observed when comparing summer and winter measurements, indicating similar populations regarding temperature responses.
机译:在永久浸水的al木沼泽中研究了硫酸盐还原,甲烷生成和反硝化的动力学。钼酸盐是硫酸盐还原的抑制剂,它刺激了土壤浆液中甲烷的产生,因此暗示了硫酸盐还原菌和甲烷产生菌之间对常见底物的竞争。发现乙酸盐,氢气和甲醇可刺激硫酸盐的还原和甲烷的产生,而三甲胺主要刺激甲烷的产生。由于细菌竞争或中毒,添加硝酸盐既减少了甲烷的产生,又减少了硫酸盐的减少。还原硫酸盐的细菌仅受电子受体的可用性的轻微限制,而反硝化细菌则受到低硝酸盐浓度的严重限制。这三个过程的Arrhenius图显示了对浆料温度变化的不同响应。甲烷的产生对温度变化最敏感,然后进行反硝化和硫酸盐还原。比较夏季和冬季的测量值时,没有观察到坡度模式之间的显着差异,这表明在温度响应方面相似的人群。

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