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Soil respiration under climate change: prolonged summer drought offsets soil warming effects

机译:气候变化下的土壤呼吸:夏季干旱延长抵消了土壤变暖的影响

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Climate change may considerably impact the carbon (C) dynamics and C stocks of forest soils. To assess the combined effects of warming and reduced precipitation on soil CO2 efflux, we conducted a two-way factorial manipulation experiment (4 similar to degrees C soil warming similar to+similar to throughfall exclusion) in a temperate spruce forest from 2008 until 2010. Soil was warmed by heating cables throughout the growing seasons. Soil drought was simulated by throughfall exclusions with three 100 similar to m2 roofs during 25 similar to days in July/August 2008 and 2009. Soil warming permanently increased the CO2 efflux from soil, whereas throughfall exclusion led to a sharp decrease in soil CO2 efflux (45% and 50% reduction during roof installation in 2008 and 2009, respectively). In 2008, CO2 efflux did not recover after natural rewetting and remained lowered until autumn. In 2009, CO2 efflux recovered shortly after rewetting, but relapsed again for several weeks. Drought offset the increase in soil CO2 efflux by warming in 2008 (growing season CO2 efflux in t C similar to ha-1: control: 7.1 similar to+/-similar to 1.0; warmed: 9.5 similar to+/-similar to 1.7; warmed similar to+similar to roof: 7.4 similar to+/-similar to 0.3; roof: 5.9 similar to+/-similar to 0.4) and in 2009 (control: 7.6 similar to+/-similar to 0.8; warmed similar to+similar to roof: 8.3 similar to+/-similar to 1.0). Throughfall exclusion mainly affected the organic layer and the top 5 similar to cm of the mineral soil. Radiocarbon data suggest that heterotrophic and autotrophic respiration were affected to the same extent by soil warming and drying. Microbial biomass in the mineral soil (05 similar to cm) was not affected by the treatments. Our results suggest that warming causes significant C losses from the soil as long as precipitation patterns remain steady at our site. If summer droughts become more severe in the future, warming induced C losses will likely be offset by reduced soil CO2 efflux during and after summer drought.
机译:气候变化可能会严重影响森林土壤的碳(C)动态和碳储量。为了评估变暖和降水减少对土壤CO2外流的综合影响,我们从2008年到2010年在温带云杉林中进行了双向分解实验(4个类似于摄氏温度的土壤变暖,相似于+类似于通透性排除)。在整个生长季节,土壤都通过电缆加热。通过在2008年7月/ 8月和2009年的25个相似天中的3个100个与m2相似的屋顶进行穿透通水排除,模拟了土壤干旱。土壤变暖永久增加了土壤中的CO2排出量,而穿透通水导致土壤CO2排出量急剧下降(在2008年和2009年,屋顶安装期间分别减少了45%和50%)。在2008年,自然再润湿后,CO2的外流没有恢复,直到秋天才降低。 2009年,CO2外排在重新润湿后不久就恢复了,但又再次复发了几周。干旱抵消了2008年变暖引起的土壤CO2外流的增加(t C中生长季节的CO2外流类似于ha-1:对照:7.1类似+/-类似1.0;变暖:9.5类似+/-类似1.7;变暖类似至+与屋顶相似:7.4与+/-相似,类似于0.3;屋顶:5.9与+/-相似,类似于0.4)和2009年(控制:7.6与+/-相似,类似于0.8;升温与屋顶相似+相似:8.3类似于+/-类似于1.0)。穿透物排阻主要影响有机层和与土壤厘米数相近的前5个有机层。放射性碳数据表明,土壤变暖和干燥对异养和自养呼吸的影响程度相同。矿物土壤中的微生物生物量(05类似于厘米)不受处理的影响。我们的结果表明,只要我们站点的降水模式保持稳定,变暖就会导致土壤中大量的C损失。如果将来夏季干旱变得更加严重,则夏季干旱期间和干旱之后土壤CO2外排量的减少可能会抵消由增温引起的碳损失。

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