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首页> 外文期刊>Soil Use and Management >Application technique affects the potential of mineral concentrates from livestock manure to replace inorganic nitrogen fertilizer.
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Application technique affects the potential of mineral concentrates from livestock manure to replace inorganic nitrogen fertilizer.

机译:施用技术会影响牲畜粪便中的矿物精矿替代无机氮肥的潜力。

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摘要

It has been suggested that mineral concentrates (MCs) produced from livestock manure might partly replace inorganic N fertilizers, thereby further closing the nitrogen (N) cycle. Here, we quantified nitrogen use efficiency (NUE) and N loss pathways associated with MCs, compared with inorganic fertilizer and manure. In a 26-day greenhouse experiment with ryegrass (Lolium perenne L.), the effects of application technique (surface application vs. injection) and N source (control, two types of MC, three inorganic fertilizers or pig slurry) were compared. We measured yield, ammonia volatilization, nitrous oxide emission and denitrification. With surface application, NUE for MCs (38% for MC1 and 22% for MC2) was significantly lower than for calcium ammonium nitrate (CAN; 61%) and comparable with PS (25%). This was most likely due to higher ammonia emissions. After injection, the NUE of MC was comparable with that of CAN. Denitrification and N2O emission from surface-applied MC were comparable with those from surface-applied PS. After injection, MC behaved similarly to inorganic fertilizers. We conclude that MCs should be injected to maximize NUE and to fulfil their potential as inorganic fertilizer replacement. Significant NUE differences between MCs suggest the possibility for further optimization of the MC production process.
机译:已经提出,由牲畜粪便产生的矿物质精矿(MCs)可能部分替代无机氮肥,从而进一步结束氮(N)循环。在这里,与无机肥料和肥料相比,我们量化了与MC相关的氮利用效率(NUE)和N损失途径。在为期26天的黑麦草(Lolium perenne L.)温室试验中,比较了施用技术(表面施用与注射)和氮源(对照,两种MC,三种无机肥料或猪粪浆)的效果。我们测量了产量,氨气挥发,一氧化二氮排放和反硝化作用。表面处理后,MC的NUE(MC1为38%,MC2为22%)显着低于硝酸钙铵(CAN; 61%),与PS相当(25%)。这很可能是由于更高的氨排放量。注射后,MC的NUE与CAN相当。表面施涂的MC的反硝化和N 2 O排放与表面施涂的PS的反硝化和N 2 O排放相当。注射后,MC的行为类似于无机肥料。我们得出的结论是,应该注入MC来最大化NUE并发挥其作为无机肥料替代品的潜力。 MC之间显着的NUE差异表明可能进一步优化MC生产工艺。

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