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首页> 外文期刊>Animal Production Science >Sustaining productivity of a Vertisol at Warra, Queensland, with fertilisers, no-tillage or legumes. 3. Effects of nitrate accumulated in fertilised soil on crop response and profitability
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Sustaining productivity of a Vertisol at Warra, Queensland, with fertilisers, no-tillage or legumes. 3. Effects of nitrate accumulated in fertilised soil on crop response and profitability

机译:使用肥料,免耕或豆类维持昆士兰州Warra的Vertisol生产效率。 3.施肥土壤中累积的硝酸盐对作物响应和获利的影响

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Unreliable rainfall during the crop growing season leads to a variable use of applied fertiliser nitrogen (N) by the crop, which may leave substantial fertiliser N residue in the soil. Residual effects of fertiliser N (0-150 kg/ha) applied to a succession of wheat crops over the period 1987-94 were studied in terms of increased crop returns ($A/ha) from fertiliser application and increased soil mineral N for the subsequent crop. In spite of the unreliability of wheat responses to applied N in this region, increases in financial returns over this sequence of crops suggest that a strategy of routine N application to wheat was highly profitable on this fertility-depleted soil. When increases in returns from 1 fertiliser application were summed over successive crops, financial returns generally increased with increasing rate of N applied up to the highest N rate (100 or 150 kg/ha). When N was applied to each successive crop, financial returns were similarly increased but applications >50 kg/ha were less profitable than rates <50 kg/ha. Increased financial returns for the 7 crops grown with conventional tillage increased by $A306/ha, $794/ha, $867/ha and $867/ha for fertiliser N applied at rates of 12.5, 25, 50 and 75 kg N/ha to each crop, respectively. Total N fertiliser costs for the 7 crops were $A63ha, $126ha, $253/ha and $380/ha. Increased financial returns of $608/ha and $962/ha were derived from applications of 25 and 75 kg N/ha to each of the 7 crops with zero tillage. When N uptake by wheat was reduced by water deficit, or where a longer fallow period created much higher nitrate levels, a single fertiliser N application of 75 or 150 kg/ha resulted in nitrate accumulated to 1.2 m depth in the following May. Where N was applied to each crop in the sequence, application of 75 kg/ha increased soil nitrate to 1.2 m in the following May, except in 1989 and 1990. The 3-crop sequence, 1988-90, placed high demands on soil N supplies, with high wheat yields (about 4.5 t/ha) and grain N contents (100-115 kg/ha) in 1988 but lower yields (>2t/ha) in 1989 and 1990. Consequently, low levels (46-63 kg/ha) of soil mineral N were apparently carried over for crops in 1989 and 1990 even where 75 kg N/ha was applied to the preceding crop. Subsequent recovery of financial losses, incurred in years of water deficit, made the routine application of 75 kg N/ha to fertility-depleted soils of this region profitable.
机译:作物生长季节降雨不可靠会导致作物对肥料氮(N)的使用量出现变化,这可能会在土壤中留下大量肥料氮残留。研究了1987-94年间施用于一系列小麦作物上的氮肥(0-150千克/公顷)的残留效应,研究结果表明:施肥增加了农作物的收成($ A / ha),土壤氮素增加了。随后的作物。尽管该地区小麦对施用氮素的反应不可靠,但在这一系列作物上的经济收益增加表明,在这种贫瘠的土壤上,向小麦常规施用氮素的战略非常有利。如果将连续施用的一种肥料的收益加起来,通常随着氮肥施用量增加到最高氮肥施用量(100或150 kg / ha),财务收益通常会增加。当将氮施用于每个连续的作物时,财务收益也得到类似的增加,但施用> 50千克/公顷比施用<50千克/公顷的施肥利润少。以传统耕作方式耕种的7种作物的经济收益分别增加了A306 / ha,794 / ha,$ 867 / ha和867 / ha,每种作物分别施用12.5、25、50和75 kg N的肥料N , 分别。 7种作物的总氮肥成本分别为A63ha,126ha,253 / ha和380 / ha。通过对零耕种的7种作物分别施用25和75 kg N / ha,可以增加608美元/公顷和962美元/公顷的经济回报。当缺水减少了小麦对氮的吸收,或者更长的休耕期产生了更高的硝酸盐水平时,单次施氮75或150 kg / ha导致在接下来的5月硝酸盐累积至1.2 m深度。在按此顺序对每种农作物施氮的情况下,除1989年和1990年外,次年5月施用75 kg / ha的土壤硝态氮使土壤硝酸盐增加至1.2 m。3茬序列(1988-90年)对土壤氮有很高的要求。供应,1988年小麦单产较高(约4.5吨/公顷),氮素含量(100-115千克/公顷),而1989年和1990年单产较低(> 2吨/公顷)。因此水平较低(46-63千克) 1989年和1990年,土壤矿物质N显然已经运用于农作物,即使以前的农作物施用了75 kg N / ha。随后因多年缺水而蒙受的经济损失得以恢复,使该地区贫瘠的土壤常规施用75千克氮/公顷的土地可获利。

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    《Animal Production Science》 |1996年第6期|p.675-682|共8页
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