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首页> 外文期刊>Agronomy Journal >Carbon balance of no-till soybean with winter wheat cover crop in the Southeastern United States.
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Carbon balance of no-till soybean with winter wheat cover crop in the Southeastern United States.

机译:美国东南部免耕大豆与冬小麦覆盖作物的碳平衡。

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The southeastern United States is an economically important agricultural region, yet its role in the regional C budget is not fully understood. There is concern that climate change, particularly altered precipitation patterns, may induce a shift in how crops exchange CO2 with the atmosphere. This study examined the seasonal and interannual variation in net ecosystem exchange (NEE) of a winter wheat cover crop (Triticum aestivum L.) and soybean [Glycine max (L.) Merr.] using the eddy covariance (EC) method. This was conducted at Winfred Thomas Agricultural Research Station, Hazel Green, AL (2007-2009). Annual C balance ranged from a source in 2007 (NEE=100 g C m-2 yr-1) to a sink (-20 g C m-2 yr-1) in 2009. Annual ecosystem respiration (Re) ranged between 750 and 1013 g C m-2 yr-1, while gross ecosystem productivity was between 650 and 1034 g C m-2 yr-1. Seasonal NEE for soybean ranged between 42 and -66 g C m-2. The uptake rates from the cover crop (NEE=-80.0, -80.4, and -40.0 g C m-2 for 2007, 2008, and 2009, respectively) suggested the importance of winter C uptake offsetting C losses caused by summer droughts. The Re varied between 286 and 542 g C m-2 for soybean and between 160 and 313 g C m-2 for the cover crop. Annual variations in NEE and Re were primarily due to precipitation and air temperature, respectively, indicating a tight coupling between biophysical factors and C uptake. Our results were compared with those from other reported NEE crop estimates using EC.
机译:美国东南部是经济上重要的农业地区,但其在区域C预算中的作用尚未完全了解。令人担忧的是,气候变化,尤其是降水模式的改变,可能导致农作物与大气交换CO 2 的方式发生变化。这项研究使用涡度协方差(EC)方法研究了冬小麦覆盖作物(Triticum aestivum L.)和大豆[Glycine max(L.)Merr。]的净生态系统交换(NEE)的季节性和年际变化。这是在阿拉巴马州Hazel Green的Winfred Thomas农业研究站进行的(2007-2009年)。年度C余额从2007年的NEE = 100 g C m -2 yr -1 到沉(-20 g C m -2 yr -1 )。每年的生态系统呼吸(R e )范围为750至1013 g C m -2 yr -1 ,而生态系统总生产力在650和1034 g C m -2 yr -1 之间。大豆的季节性NEE介于42和-66 g C m -2 之间。覆盖作物的吸收速率(分别为2007年,2008年和2009年的NEE = -80.0,-80.4和-40.0 g C m -2 )表明冬季吸收C抵消C的重要性夏季干旱造成的损失。大豆的R e 在286至542 g C m -2 之间变化,而覆被作物的R e 在160至313 g C m -2 之间变化。 NEE和R e 的年变化分别主要是由于降水和气温,这表明生物物理因素与C吸收之间存在紧密的联系。我们的结果与使用EC的其他报告的NEE作物估计值进行了比较。

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