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Fertiliser management effects on dissolved inorganic nitrogen in runoff from Australian sugarcane farms

机译:化肥管理对澳大利亚甘蔗农场径流中溶解性无机氮的影响

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摘要

Dissolved inorganic nitrogen (DIN) movement from Australian sugarcane farms is believed to be a major cause of crown-of-thorns starfish outbreaks which have reduced the Great Barrier Reef coral cover by ~21% (1985–2012). We develop a daily model of DIN concentration in runoff based on >200 field monitored runoff events. Runoff DIN concentrations were related to nitrogen fertiliser application rates and decreased after application with time and cumulative rainfall. Runoff after liquid fertiliser applications had higher initial DIN concentrations, though these concentrations diminished more rapidly in comparison to granular fertiliser applications. The model was validated using an independent field dataset and provided reasonable estimates of runoff DIN concentrations based on a number of modelling efficiency score results. The runoff DIN concentration model was combined with a water balance cropping model to investigate temporal aspects of sugarcane fertiliser management. Nitrogen fertiliser application in December (start of wet season) had the highest risk of DIN movement, and this was further exacerbated in years with a climate forecast for ‘wet’ seasonal conditions. The potential utility of a climate forecasting system to predict forthcoming wet months and hence DIN loss risk is demonstrated. Earlier fertiliser application or reducing fertiliser application rates in seasons with a wet climate forecast may markedly reduce runoff DIN loads; however, it is recommended that these findings be tested at a broader scale.
机译:人们认为,澳大利亚甘蔗养殖场中溶解的无机氮(DIN)的移动是荆棘冠海星暴发的主要原因,该暴发使大堡礁的珊瑚覆盖率降低了约21%(1985-2012年)。我们基于200多个现场监测的径流事件,开发了径流中DIN浓度的每日模型。 DIN的径流浓度与氮肥的施用量有关,施用后随时间和累积降雨而降低。液体肥料施用后的径流具有较高的初始DIN浓度,尽管与颗粒肥料施用相比,这些浓度降低得更快。该模型使用独立的现场数据集进行了验证,并基于许多建模效率得分结果提供了径流DIN浓度的合理估计。将径流DIN浓度模型与水平衡作物模型相结合,以研究甘蔗肥料管理的时间方面。在12月(雨季开始)施用氮肥具有最高的DIN运动风险,随着对“潮湿”季节条件的气候预测,这种情况在几年后进一步加剧。事实证明,气候预测系统可以预测即将到来的潮湿月份,从而避免DIN损失的风险。在气候潮湿的季节中,较早施肥或降低施肥率可能会显着减少径流DIN负荷;但是,建议对这些发现进行更广泛的测试。

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