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首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >On-farm trial on the effectiveness of the nitrification inhibitor DMPP indicates no benefits under commercial Australian farming practices
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On-farm trial on the effectiveness of the nitrification inhibitor DMPP indicates no benefits under commercial Australian farming practices

机译:关于硝化抑制剂DMPP的有效性的农场试验表明,在商业澳大利亚农业实践下没有益处

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摘要

The trend of increasing nitrogen (N) fertilisation in commercial agriculture demands mitigation of negative impacts on the environment, such as emissions of the potent greenhouse gas nitrous oxide (N2O). Laboratory and controlled field experiments have demonstrated that the nitrification inhibitor 3,4-Dimethylpyrazole phosphate (DMPP) has the potential to effectively mitigate N2O emissions from dairy pasture and crop farming, and may increase yields. Yet, this has not been investigated in on-farm research trials under commercial production conditions. During the winter growing seasons 2014-2016 we performed an on-farm trial on five commercial broad-acre cropping and five dairy farms in North-East Victoria, Australia, to compare the performance of DMPP + urea (treatment) against conventional urea (control) fertiliser in mitigating N2O emissions and increasing crop and pasture yields. Application rate was fixed at the regional industry standard of 46 kg N ha(-1), yet timing, number of applications and all other management decisions were left to the judgement of the participating farmers. Emissions of N2O were highly variable over time and between farms. We recorded emission spikes of up to 250 g N2O-N ha(-1) d(-1), but 90% of measurements ranged between 1.0-62 g N2O-N ha(-1) d(-1). Thus, N2O emissions were dominated by peak fluxes and correlated with soil moisture and the time since fertiliser application. However, there was no significant difference between N2O emissions from DMPP-treated and control plots in all three seasons. Similarly, crop and pasture yield did not differ significantly between treatment and control. It is likely that the high N application rate was responsible for the poor performance of DMPP under commercial production conditions. Consequently, simply replacing conventional fertiliser with a DMPP-containing product cannot be recommended. Any commercial application of DMPP will need to be accompanied by changes in fertiliser management, of which reducing the N application rate appears most promising.
机译:增加氮气(N)施肥在商业农业中施肥的趋势要求减轻对环境的负面影响,例如有效的温室气体氧化物的排放(N2O)。实验室和受控场实验表明,硝化抑制剂3,4-二甲基吡唑磷酸盐(DMPP)有可能有效地减轻乳制品牧场和作物养殖的N2O排放,并可能增加产量。然而,这尚未在商业生产条件下在农场研究试验中进行调查。 2014 - 2016年冬季生长季节在2014 - 2016年期间,我们在澳大利亚东北维多利亚维多利亚州的五种商业广播裁剪和五个乳制品农场进行了一项农场试验,以比较DMPP +尿素(治疗)对常规尿素的表现(控制)肥料在减轻N2O排放和增加作物和牧场的产量。申请率在46公斤公顷(-1)的区域行业标准中固定,但时间,申请人数和所有其他管理决策都留给了参与农民的判决。随着时间的推移和农场之间,N2O的排放是高度变化的。我们记录了高达250g N2O-n HA(-1)D(-1)的排放穗,但90%的测量范围在1.0-62g N2O-n HA(-1)D(-1)之间。因此,N 2 O排放由峰值助熔剂主导,与土壤水分和施肥应用的时间相关。然而,在所有三个季节的DMPP处理和控制地块之间没有显着差异。类似地,治疗和控制之间的作物和牧场产量没有显着差异。在商业生产条件下,高N申请率责任DMPP的差异不佳。因此,只需推荐使用含DMPP产品的常规肥料更换常规肥料。 DMPP的任何商业申请都需要伴有肥料管理的变化,其中减少了N个申请率似乎最有前途。

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