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Effects of Atmospheric CO2 Enrichment on Crop Nutrient Dynamics under No-Till Conditions

机译:免耕条件下大气CO2浓度升高对作物养分动态的影响

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摘要

Increasing atmospheric CO2 concentration could increase crop productivity and alter crop nutrient dynamics. This study was conducted (3 yrs) with two crops ([Glycine max (L.) Merr.] and grain sorghum [Sorghum bicolor (L.) Moench.]) grown under two CO2 levels (ambient and twice ambient) using open top field chambers on a Blanton loamy sand under no-tillage. Macronutrient and micronutrient concentrations and contents were determined for grain, stover, and roots. Although elevated CO2 tended to reduce nutrient concentrations, high CO2 consistently increased nutrient content especially in grain tissue; this response pattern was more notable with macronutrients. The CO2 effect was observed primarily in soybean. The consistent CO2-induced increases in grain macronutrient contents favors reliable predictions of system outputs, however, predictions of crop nutrient inputs (i.e., stover and root contents) to the soil are less robust due to observed variability. Again, this is particularly true in regards to micronutrient dynamics in CO2-enriched cropping systems.
机译:大气中二氧化碳浓度的增加可以提高作物的生产力并改变作物的养分动态。这项研究(3年)是在两个二氧化碳水平(环境温度和环境温度两倍)下生长的两种农作物([Glycine max(L.)Merr。]和谷物高粱[Sorghum bicolor(L.)Moench。])进行的(3年)不耕作的布兰顿沃土上的田间小室。确定了谷物,秸秆和根的常量营养素和微量营养素的浓度和含量。尽管升高的二氧化碳倾向于降低养分含量,但是高的二氧化碳持续增加养分含量,特别是在谷物组织中。大量营养素时这种反应模式更为明显。主要在大豆中观察到了CO2效应。由CO2引起的谷物中大量营养素含量的持续增加有利于系统输出的可靠预测,但是,由于观测到的变异性,对土壤中作物营养素输入(即秸秆和根系含量)的预测不那么可靠。同样,就富CO2的种植系统中的微量营养素动态而言,这尤其正确。

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