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首页> 外文期刊>Scientific reports. >Dry habitats sustain high CO 2 emissions from temporary ponds across seasons
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Dry habitats sustain high CO 2 emissions from temporary ponds across seasons

机译:整个季节中,干燥的生境维持临时池塘的高CO 2排放

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Despite the increasing understanding of the magnitude and drivers of carbon gas emissions from inland waters, the relevance of water fluctuation and associated drying on their dynamics is rarely addressed. Here, we quantified CO2 and CH4 fluxes from a set of temporary ponds across seasons. The ponds were in all occasion net CO2 emitters irrespective of the presence or absence of water. While the CO2 fluxes were in the upper range of emissions for freshwater lentic systems, CH4 fluxes were mostly undetectable. Dry habitats substantially contributed to these emissions and were always a source of CO2, whereas inundated habitats acted either as a source or a sink of atmospheric CO2 along the year. Higher concentrations of coloured and humic organic matter in water and sediment were linked to higher CO2 emissions. Composition of the sediment microbial community was related both to dissolved organic matter concentration and composition, but we did not find a direct link with CO2 fluxes. The presence of methanogenic archaea in most ponds suggested the potential for episodic CH4 production and emission. Our results highlight the need for spatially and temporally inclusive approaches that consider the dry phases and habitats to characterize carbon cycling in temporary systems.
机译:尽管人们越来越了解内陆水域的二氧化碳排放量及其驱动因素,但很少讨论水起伏及其相关的干燥对其动态的影响。在这里,我们量化了整个季节中一组临时池塘的CO2和CH4通量。不论有无水,池塘在任何情况下都是二氧化碳净排放者。尽管淡水透镜系统的CO2通量处于排放范围的上限,但CH4通量大多无法检测到。干燥的栖息地在很大程度上造成了这些排放,并且始终是二氧化碳的来源,而淹没的栖息地在一年中既是大气中二氧化碳的来源,也可以是大气中二氧化碳的汇入。水和沉积物中较高浓度的有色和腐殖质有机物与较高的​​CO2排放有关。沉积物微生物群落的组成与溶解有机物的浓度和组成有关,但我们没有发现与CO2通量直接相关。在大多数池塘中存在产甲烷的古细菌表明了CH4产生和散发的可能性。我们的结果突出表明,需要考虑到干旱阶段和栖息地来表征临时系统中碳循环的时空融合方法。

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