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Dynamic characteristics of soil respiration in Yellow River Delta wetlands, China

机译:黄河三角洲湿地土壤呼吸动态特征

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The stable soil carbon (C) pool in coastal wetlands, referred to as "blue C", which has been extensively damaged by climate change and soil degradation, is of importance to maintain global C cycle. Therefore, to investigate the dynamic characteristics of soil respiration rate and evaluate C budgets in coastal wetlands are urgently. In this study, the diurnal and seasonal variation of soil respiration rate in the reed wetland land (RL) and the bare wetland land (BL) was measured in situ with the dynamic gas-infrared CO2 method in four seasons, and the factors impacted on the dynamic characteristics of soil respiration were investigated. The results showed that the diurnal variation of soil respiration rate consistently presented a "U" curve pattern in April, July, and September, with the maximum values at 12: 00 a.m. and the minimum values at 6: 00 a.m. In the same season, the diurnal soil respiration rate in RL was significantly greater than those in BL (P 0.05). In April, July, and September, the mean diurnal soil respiration rate was 0.14, 0.42, and 0.39 mu mol m(-2) s(-1) in RL, 0.05, 0.22, 0.13, and 0.01 mmol m(-2) s(-1) in BL, respectively. Soil surface temperature was the primary factor that influenced soil respiration, which was confirmed by the exponential positive correlation between the soil respiration rate and soil surface temperature in BL and RL (P 0.05). In addition, the high salinity of soils suppressed soil respiration, confirming by the significantly negative correlation between soil respiration rate and the content of soluble salt. These results will be useful for understanding the mechanisms underlying soil respiration and elevating C sequestration potential in the coastal wetlands. (C) 2017 Elsevier Ltd. All rights reserved.
机译:沿海湿地的稳定土壤碳(C)池被称为“蓝色C”,这被气候变化和土壤退化受到广泛损坏,这是维持全球C循环的重要性。因此,为了探讨土壤呼吸率的动态特征,迫切需要评估沿海湿地的C预算。在这项研究中,在四季中使用动态气体红外二氧化碳方法(RTL)和裸湿地陆地(BL)中土壤呼吸速率的昼夜呼吸率和季节性变化与四季中的动态气体红外二氧化碳方法,影响因素研究了土壤呼吸的动态特征。结果表明,土壤呼吸率的日元变异始终如一地呈现了4月,7月和9月的“U”曲线模式,最大值为12:00 AM,最低价值在同一季节为6:00, R1中的昼夜土壤呼吸速率明显大于BL(P <0.05)中的呼吸率。 4月,7月和9月,平均昼夜土壤呼吸速率为0.14,0.42和0.39μmolm(-2)s(-2)s(-2)s(-1),0.05,0.22,0.13和0.01mmol m(-2) S(-1)分别在BL中。土壤表面温度是影响土壤呼吸的主要因素,通过BL和R1的土壤呼吸速率和土壤表面温度之间的指数正相关来证实了(P <0.05)。此外,土壤的高盐度抑制了土壤呼吸,通过土壤呼吸速率与可溶性盐含量的显着负相关性。这些结果对于了解沿海湿地的土壤呼吸机制和升高C封存潜力的有用。 (c)2017 Elsevier Ltd.保留所有权利。

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