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Quantification of nitrogen inputs from biological nitrogen fixation to whole farm nitrogen budgets of two dairy farms in Atlantic Canada

机译:从生物固氮到加拿大大西洋两个奶牛场的整个农场氮预算的氮输入的量化

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Legume biological N fixation (BNF) is a large source of uncertainty in farm N budgets. This study sought to quantify the BNF-N input to two whole farm nitrogen budgets and establish a simple and accurate method for incorporating BNF values as inputs in whole farm N budgets. Nitrogen inputs and outputs as well as flows of N between animal and crop production components were determined for a dairy farm in New Brunswick (NB) and Prince Edward Island (PE) over a two year period. The 15N natural abundance method was used to determine the %N derived from the atmosphere (%Ndfa) through BNF at both sites. Red clover (Trifolium pratense) at the PE site derived 77 % of its N from BNF and alfalfa (Medicago sativa) collected at both the PE and NB farms derived 72 % of its N from BNF. Total BNF-N present in legume biomass from mixed forage fields measured with the 15N natural abundance method ranged from 39 to 116 kg N ha−1 year−1. A legume dry matter conversion model adjusted with %Ndfa and %N of red clover and alfalfa samples from both farm sites was selected to estimate BNF-N inputs from mixed forage fields on the farms. Averaged across the entire cropland area at each farm site, the BNF-N inputs ranged from 27 to 52 kg N ha−1 year−1. The farmgate BNF-N inputs are low in comparison to other studies, possibly due to low legume contents in forage fields. BNF accounted for 18–29 % of farmgate N inputs at the farms. Surpluses of N found at both farm sites ranged from 98 to 135 kg N ha−1 year−1, typical to the whole farm N budgets of similar dairy farms.
机译:豆类生物固氮(BNF)是农场氮预算不确定性的很大来源。这项研究试图量化BNF-N对两个农场氮预算的投入,并建立一种简单准确的方法将BNF值纳入整个农场N预算的投入。确定了为期两年的新不伦瑞克(NB)和爱德华王子岛(PE)的一家奶牛场的氮素投入和产出以及动物和作物生产组成部分之间的氮流量。使用15N自然丰度方法确定两个位置处通过BNF源自大气的%N(%Ndfa)。 PE部位的红三叶草(Trifolium pratense)从BNF提取77%的氮,在PE和NB农场收集的紫花苜蓿(Medicago sativa)从BNF提取72%的氮。用15N自然丰度法测得的混合饲草田中豆类生物量中存在的总BNF-N从39到116 kg N·ha-1年-1。选择了用两个农场的红三叶草和苜蓿样品的%Ndfa和%N进行调整的豆类干物质转化模型,以估算来自农场混合饲料田的BNF-N投入。平均每个农田的整个农田面积,BNF-N投入的范围从27到52 kg N·ha-1年-1。与其他研究相比,农场大门的BNF-N输入量较低,这可能是由于饲草田中的豆类含量较低。 BNF占农场农场主N投入的18–29%。在两个农场场址发现的N剩余量范围从98到135 kg N·ha-1年-1,这是类似奶牛场的整个农场N预算的典型值。

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