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Interannual Variation in Carbon Sequestration Depends Mainly on the Carbon Uptake Period in Two Croplands on the North China Plain

机译:华北平原两片农田碳汇的年际变化主要取决于碳吸收时期。

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摘要

Interannual variation in plant phenology can lead to major modifications in the interannual variation of net ecosystem production (NEP) and net biome production (NBP) as a result of recent climate change in croplands. Continuous measurements of carbon flux using the eddy covariance technique were conducted in two winter wheat and summer maize double-cropped croplands during 2003–2012 in Yucheng and during 2007–2012 in Luancheng on the North China Plain. Our results showed that the difference between the NEP and the NBP, i.e., the crop economic yield, was conservative even though the NEP and the NBP for both sites exhibited marked fluctuations during the years of observation. A significant and positive relationship was found between the annual carbon uptake period (CUP) and the NEP as well as the NBP. The NEP and the NBP would increase by 14.8±5.2 and 14.7±6.6 g C m−2 yr−1, respectively, if one CUP-day was extended. A positive relationship also existed between the CUP and the NEP as well as the NBP for winter wheat and summer maize, respectively. The annual air temperature, through its negative effect on the start date of the CUP, determined the length of the CUP. The spring temperature was the main indirect factor controlling the annual carbon sequestration when a one-season crop (winter wheat) was considered. Thus, global warming can be expected to extend the length of the CUP and thus increase carbon sequestration in croplands.
机译:由于耕地最近的气候变化,植物物候的年际变化可能导致净生态系统产量(NEP)和净生物群落产量(NBP)的年际变化发生重大变化。在2003年至2012年间,在禹城和2007年至2012年间,在华北平原的两个冬小麦和夏玉米双季农田中,使用涡度协方差技术连续测量了碳通量。我们的结果表明,即使在观察年中两个站点的NEP和NBP都显示出明显的波动,NEP和NBP之间的差异(即作物经济产量)还是保守的。在年度碳吸收期(CUP)与NEP和NBP之间发现了显着的正相关关系。如果延长一个CUP天,则NEP和NBP分别增加14.8±5.2和14.7±6.6 g C m -2 yr -1 。冬小麦和夏玉米的CUP和NEP以及NBP之间也存在正相关关系。年度空气温度通过其对CUP开始日期的负面影响,确定CUP的长度。当考虑使用一季作物(冬小麦)时,春季温度是控制年度碳固存的主要间接因素。因此,可以预料全球变暖将延长银联的长度,从而增加农田中的碳固存。

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