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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Ramifications of increased salinity in tidal freshwater sediments: Geochemistry and microbial pathways of organic matter mineralization
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Ramifications of increased salinity in tidal freshwater sediments: Geochemistry and microbial pathways of organic matter mineralization

机译:潮汐淡水沉积物中盐分增加的后果:有机物矿化的地球化学和微生物途径

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摘要

The effects of salinity intrusion on the anaerobic microbial and geochemical dynamics of tidal freshwater sediments were investigated using flow-through sediment reactors. In freshwater control sediments, organic matter mineralization was dominated by methanogenesis (62%), followed by sulfate reduction (18%), denitrification (10%), and iron reduction (10%). Upon salinity intrusion, nutrient (ammonium, silicate, phosphate) concentrations increased and rates of methanogenesis declined. Iron-oxide bioavailability increased and microbial iron reduction appeared to account for >60% of organic matter oxidation for several days after salinity intrusion. However, sulfate reduction was the dominant pathway (>50%) of organic matter oxidation within 2 weeks of salinity intrusion, and accounted for >95% of total organic matter mineralization after 4 weeks. Total in situ sediment organic matter mineralization doubled following salinity intrusion. Increased nutrient release, decreased methanogenesis and a rapid shift to sulfate reduction, with a coincident increase overall organic matter mineralization, accompanied salinity intrusion into previously freshwater riverine sediments.
机译:使用流通式泥沙反应器研究了盐分入侵对潮汐淡水沉积物厌氧微生物和地球化学动力学的影响。在淡水控制沉积物中,有机物矿化以甲烷生成为主(62%),其次是硫酸盐还原(18%),反硝化(10%)和铁还原(10%)。盐分入侵后,营养物(铵,硅酸盐,磷酸盐)浓度增加而甲烷生成速率下降。盐分入侵后的几天,氧化铁的生物利用度增加,微生物的铁减少似乎占有机物氧化的> 60%。但是,硫酸盐还原是盐分入侵后2周内有机物氧化的主要途径(> 50%),并在4周后占总有机物矿化的95%以上。盐分入侵后,原位沉积物有机物的总矿化量增加了一倍。养分释放的增加,甲烷生成的减少和向硫酸盐还原的快速转变,同时整体有机物矿化增加,同时伴随着盐分侵入先前的淡水河流沉积物中。

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