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首页> 外文期刊>Global change biology >Soil respiration under prolonged soil warming: are rate reductions caused by acclimation or substrate loss?
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Soil respiration under prolonged soil warming: are rate reductions caused by acclimation or substrate loss?

机译:长时间土壤变暖下的土壤呼吸:速率降低是由于驯化或基质损失引起的吗?

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The world's soils contain a large amount of carbon so that even a fractionally small loss or gain could have a quantitatively important feedback effect on net CO2 emissions to the atmosphere. It is therefore important to fully understand the temperature dependence of soil-carbon decomposition. Evidence from various observations can be used to quantify the temperature dependence of carbon efflux, but it is important to ensure that confounding factors, such as changing water relations or availability of readily decomposable substrate, are fully considered in inferring an underlying temperature response from observed response patterns.A number of recent findings from soil-warming experiments have led to the suggestion that stimulation of soil-carbon efflux by increasing temperature is only transitory before acclimation takes place and carbon efflux rates return to similar rates as before the increase in temperature. It is shown here that this response pattern can be explained through a simple two-pool soil-carbon model with no acclimation response needing to be invoked. The temporal pattern is, instead, due to depletion of readily decomposable substrate. It shows that findings of reduced respiration rate in soil-warming experiments are consistent with unchanged high temperature sensitivity of organic carbon decomposition and affirms that there is, indeed, a danger of positive feedback between global warming and the release of soil organic carbon that can lead to further warming.
机译:世界土壤中含有大量的碳,因此,即使是很小的损失或增加,也可能对大气中的二氧化碳净排放量产生重要的定量反馈作用。因此,重要的是要充分了解土壤碳分解的温度依赖性。来自各种观察的证据可用于量化碳流出的温度依赖性,但是重要的是要确保在从观察到的响应推断出潜在的温度响应时,充分考虑混杂因素,例如水关系的变化或易分解的底物的可用性。来自土壤变暖实验的最新发现表明,通过增加温度来刺激土壤碳排泄只是在适应发生之前是短暂的,碳排泄率恢复到与温度增加之前相似的速率。此处显示,可以通过简单的两池土壤-碳模型解释这种响应模式,而无需调用适应性响应。相反,时间模式是由于易分解的基质的耗尽。结果表明,在升温试验中降低呼吸速率的结果与有机碳分解的高温敏感性保持不变相一致,并肯定了全球变暖与土壤有机碳释放之间可能存在正反馈的危险,这可能导致进一步变暖。

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