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Effect of Sulfide on Nitrogen Fixation in a Stream Sediment-Water System

机译:硫化物对河流沉积物-水系统固氮的影响

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Nitrogen fixation (C2H2 reduction) in a sediment-water system was studied under anaerobic incubation conditions. Sodium sulfide at low concentrations stimulated activity, with a twofold increase in C2H4 production occurring in the presence of 8 μmol of S2? per ml of stream water. Sodium sulfide at concentrations of 16 μmol of S2? per ml or greater inhibited nitrogen fixation, with 64 μmol of S2? per ml being completely inhibitory. Sulfide at levels of 16 μmol/ml or above inhibited CO2 production, and the degree of inhibition increased with increasing concentration of sulfide. Titanium (III) citrate (used to modify Eh levels) stimulated both nitrogen fixation and CO2 production, but could not duplicate, at any concentration tested, the twofold increase in nitrogen fixation caused by 8 μmol of S2? per ml. Sulfide additions caused pH changes in the sediment, and when the sediment was adjusted and maintained at pH 7.0 all concentrations of sulfide inhibited nitrogen fixation activity. From considerations of the redox equilibria of H2, H2S, and other sulfur species at various pH values, it appeared that H2S was the toxic entity and that HS? was less toxic. The observed stimulation of activity was apparently due to a pH change coupled with the concurrent production of HS? from H2S.
机译:在厌氧条件下研究了沉积物-水系统中的固氮作用(减少了C2H2)。低浓度的硫化钠刺激了活性,在8μmolS2?存在下,C2H4产量增加了两倍。每毫升溪流水。硫化钠浓度为16μmol的S2?每毫升或更高时,用64μmolS2?每毫升具有完全抑制作用。浓度为16μmol/ ml或更高的硫化物会抑制CO2的产生,并且抑制程度随硫化物浓度的增加而增加。柠檬酸钛(III)(用于调节Eh水平)既刺激了固氮作用,又刺激了CO2的产生,但是在任何测试浓度下,都无法复制8μmolS2引起的固氮能力增加两倍。每毫升硫化物的添加导致沉积物的pH值发生变化,当调整沉积物并将其保持在pH 7.0时,所有浓度的硫化物均会抑制固氮活性。从在各种pH值下H2,H2S和其他硫物种的氧化还原平衡的考虑,似乎H2S是有毒的实体,而HS?毒性较小。观察到的活性刺激显然是由于pH值变化和同时产生HS?来自H2S。

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