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Carbon Dioxide Concentrations and Efflux from Permanent, Semi-Permanent, and Temporary Subalpine Ponds

机译:永久,半永久和临时亚高山池塘的二氧化碳浓度和流出

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摘要

Small ponds account for a disproportionately high percentage of carbon dioxide emissions relative to their small surface area. It is therefore crucial to understand carbon flow in these ponds to refine the current global carbon budget, especially because climate change is affecting pond hydrology. High elevation ponds in the Elk Mountains of western Colorado are drying more frequently as the timing of snowmelt advances. We compared CO2 concentrations and fluxes among ponds of different hydroperiods over diel sampling periods during the course of the 2017 open-water period. CO2 concentrations were significantly negatively correlated with pond depth and averaged 77.6 +/- 24.5 mu mol L-1 (mean +/- S.E.) across all ponds and sampling events. Ponds were up to twenty times supersaturated in CO2 with respect to the atmosphere. Flux was highly variable within individual ponds but correlated with time of sampling and was highest at night. Flux averaged 19.7 +/- 18.8 mg CO2 m(-2) h(-1) across all ponds and sampling events. We also compared flux values obtained using modeled and empirical methods and found that widely-applied models of gas exchange rates using wind-based gas exchange (K) values yielded estimates of CO2 flux that were significantly higher than those obtained using the floating chamber approach, but estimates of CO2 flux using globally averaged convection-based K values were lower than those obtained using the floating chambers. Lastly, we integrated soil vs. water efflux measurements with long-term patterns in hydrology to predict how total season-long efflux might change under the more rapid drying regimes and longer seasons that are already occurring in these systems. Because soil CO2 efflux averaged 277.0 +/- 49.0 mg CO2 m(-2) h(-1), temporary ponds emitted 674.1 +/- 99.4 kg CO2 m(-2) over the course of the 2017 season from ice-out to refreezing, which was over twice as much as permanent and semi-permanent ponds. Our results emphasize that contributions of CO2 from small ponds to the global carbon budget estimates will vary with pond hydroperiod and sampling methodology, which have been overlooked given that most previous estimates were collected from limited sampling periods and from pond waters alone. Furthermore, pond CO2 contributions are predicted to increase over time as pond areas transition from efflux from water to efflux from soil.
机译:相对于其较小的表面积,小型池塘占二氧化碳排放量的比例过高。因此,至关重要的是要了解这些池塘中的碳流量,以完善当前的全球碳预算,尤其是因为气候变化正在影响池塘水文。随着融雪时间的提前,科罗拉多州西部麋鹿山的高海拔池塘越来越干燥。我们比较了2017年开阔水域期间diel采样期间不同水周期池塘之间的CO2浓度和通量。在所有池塘和采样事件中,CO2浓度与池塘深度呈显着负相关,平均为77.6 +/- 24.5μmol L-1(平均+/- S.E.)。相对于大气,池塘的二氧化碳饱和度最高可达二十倍。单个池塘内的通量变化很大,但与采样时间相关,在晚上最高。所有池塘和采样事件的通量平均为19.7 +/- 18.8 mg CO2 m(-2)h(-1)。我们还比较了通过建模和经验方法获得的通量值,发现使用风基气体交换(K)值的广泛应用的气体交换率模型产生的CO2通量估计值明显高于使用浮室法获得的通量,但是使用基于全球平均对流的K值估算的CO2通量要低于使用浮动室获得的估算值。最后,我们将土壤与水的流量测量结果与水文学的长期模式进行了集成,以预测在这些系统中已经出现的更快速的干燥条件和更长的季节下,整个季节的总流量会如何变化。由于土壤CO2外排平均为277.0 +/- 49.0 mg CO2 m(-2)h(-1),因此从冰冻期到2017年整个季节,临时池塘的排放量为674.1 +/- 99.4 kg CO2 m(-2)。重新冷冻,是永久性和半永久性池塘的两倍多。我们的结果强调,小池塘对二氧化碳的贡献对全球碳概算的影响会随着池塘水周期和采样方法的变化而变化,鉴于以前的大多数估计都是从有限的采样期间和仅从池塘水中收集的,因此这些被忽略了。此外,随着池塘面积从水外排过渡到土壤外排,池塘CO2贡献预计会随着时间增加。

著录项

  • 来源
    《Wetlands》 |2019年第5期|955-969|共15页
  • 作者

  • 作者单位

    Rocky Mt Biol Labs POB 519 Crested Butte CO 81224 USA|North Carolina State Univ Dept Appl Ecol Raleigh NC 27695 USA|Allegheny Coll Dept Biol Meadville PA 16335 USA;

    Rocky Mt Biol Labs POB 519 Crested Butte CO 81224 USA|North Carolina State Univ Dept Appl Ecol Raleigh NC 27695 USA;

    Rocky Mt Biol Labs POB 519 Crested Butte CO 81224 USA|Allegheny Coll Dept Biol Meadville PA 16335 USA;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Carbon dioxide; Temporary ponds; Greenhouse gas efflux; Pond hydroperiod;

    机译:二氧化碳;临时池塘;温室气体外流;池塘水周期;

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