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The temperature sensitivity of soil organic carbon decomposition is greater in subsoil than in topsoil during laboratory incubation

机译:在实验室培养期间土壤中有机碳分解的温度敏感性比表土更大

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摘要

The turnover of soil organic carbon (SOC) in cropland plays an important role in terrestrial carbon cycling, but little is known about the temperature sensitivity (Q 10) of SOC decomposition below the topsoil layer of arable soil. Here, samples of topsoil (0–20 cm) and subsoil (20–40 cm) layers were obtained from paddy fields and upland croplands in two regions of China. Using a sequential temperature changing method, soil respiration rates were calculated at different temperatures (8 °C to 28 °C) and fitted to an exponential equation to estimate Q 10 values. The average SOC decomposition rate was 59% to 282% higher in the topsoil than in the subsoil layer because of higher labile carbon levels in the topsoil. However, Q 10 values in the topsoil layer (5.29 ± 1.47) were significantly lower than those in the subsoil layer (7.52 ± 1.84). The pattern of Q 10 values between the topsoil and subsoil was significantly negative to labile carbon content, which is consistent with the carbon quality-temperature hypothesis. These results suggest that the high temperature sensitivity of SOC decomposition in the subsoil layer needs to be considered in soil C models to better predict the responses of agricultural SOC pools to global warming.
机译:农田土壤有机碳的周转在陆地碳循环中起着重要作用,但对耕地表层以下SOC分解的温度敏感性(Q 10)知之甚少。在这里,从中国两个地区的水田和高地农田获得了表层土壤(0–20 cm)和地下土壤(20–40 cm)的样品。使用顺序温度变化方法,计算了在不同温度(8 C至28 C)下的土壤呼吸速率,并将其与指数方程拟合以估算Q 10值。由于表层土壤中的不稳定碳含量较高,表层土壤中的平均SOC分解速率比下层土壤层高59%至282%。然而,表土层的Q 10值(5.29±1.47)显着低于地下层(7.52±1.84)。表层土壤和下层土壤之间的Q 10值模式对不稳定的碳含量具有显着的负性,这与碳质-温度假说是一致的。这些结果表明,在土壤碳模型中需要考虑土壤中SOC分解的高温敏感性,以便更好地预测农业SOC库对全球变暖的响应。

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