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首页> 外文期刊>Animal Production Science >The agronomic effectiveness of reactive phosphate rocks 4. Early season lag in herbage production when reactive phosphate rock is used as a pasture fertiliser
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The agronomic effectiveness of reactive phosphate rocks 4. Early season lag in herbage production when reactive phosphate rock is used as a pasture fertiliser

机译:活性磷酸盐岩石的农艺效果4.使用活性磷酸盐岩石作为牧草肥料时,牧草生产的早期季节滞后

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摘要

The agronomic effectiveness of highly reactive North Carolina phosphate rock (NCPR), relative to triple superphosphate (TSP), was determined for individual harvests at 26 permanent pasture sites in the National Reactive Phosphate Rock Project from 1992 to 1995. The aim was to determine whether the performance of NCPR relative to TSP was consistent over the growing season. Poor performance of NCPR early in the growing season (early seasonal lags), and its subsequent improvement later in the season, was observed at 15 of the 26 sites in this project and for 20 of the 103 possible site x year combinations. At 3 additional sites the apparent early season lag in NCPR performance was followed by harvests where there was no phosphorus (P) response. At one P-leaching site with a long growing season the relative yields from NCPR plots increased as the year progressed and exceeded those from TSP late in th e season. The duration of the early season lag phase was associated with the rate of build-up in plant-available P over the 4-year duration of the trials. The lag disappeared after 1 or 2 years at sites with low P-sorbing, sandy soils where there was a significant build-up in Colwell P, but persisted for 4 years on high P-sorbing soils where limited increases in Colwell P occurred. The average early season yield reduction associated with use of NCPR, compared with using TSP, was 28%. Colwell soil test values alone did not provide a good indication of the likelihood of a seasonal effect occurring. The occurrence of an early season lag phase needs to be taken into account by farmers considering the use of RPR as reductions in feed supply at this time of the year have the potential to reduce stocking rates and farm profitability. The use of partially acidulated NCPR, or large applications of NCPR applied in the first year, were management strategies that minimised the occurrence of these seasonal effects. The suggestion that the early season lag effect is due to the inability of NCPR to meet P demands from newly establishing pasture legumes, and increased P requirements by pasture plants in cold conditions is also discussed.
机译:从1992年至1995年,在国家活性磷酸盐岩项目的26个永久性牧场中,对单个收获物确定了相对于三重过磷酸钙(TSP)而言,高活性北卡罗来纳州磷酸盐岩(NCPR)的农艺学有效性。目的是确定是否在整个生长季节,相对于TSP,NCPR的表现是一致的。在该项目的26个站点中的15个站点和103个可能站点x年组合中的20个站点中,观察到NCPR在生长季节初期表现不佳(早期的季节滞后),随后在季节后期有所改善。在另外3个地点,NCPR表现明显的早期季节滞后,随后是收成,没有磷(P)响应。在一个生长季节长的P淋浸地点,NCPR地块的相对产量随年份的增长而增加,并超过了季节后期TSP的产量。在试验的4年时间里,早期季节滞后阶段的持续时间与植物体内磷积累的速率有关。在低P吸附的沙土土壤(在Colwell P上大量积聚)的位置,滞后1或2年后消失,而在高P吸附的土壤上Colwell P的增加有限的地方持续了4年。与使用TSP相比,使用NCPR的平均早季单产降低了28%。单独的Colwell土壤测试值并不能很好地表明发生季节效应的可能性。农民应考虑到出现早期季节滞后阶段,因为考虑到RPR的使用,因为一年中这个时候的饲料供应减少有可能降低放养率和农场盈利能力。使用部分酸化的NCPR或在第一年大量使用NCPR是将这些季节性影响的发生率降至最低的管理策略。关于早期季节滞后效应的建议是由于NCPR无法满足新建立的牧草豆类对磷的需求,并且讨论了寒冷条件下牧草植物对磷的需求增加。

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  • 来源
    《Animal Production Science》 |1997年第8期|p.957-968|共12页
  • 作者单位

    A Tasmanian DPIF, PO Box 46, Kings Meadow, Tas. 7249, Australia.B School of Agriculture, La Trobe University, Bundoora, Vic. 3083, Australia.C Pastoral and Veterinary Institute, Private Bag 105, Hamilton, Vic. 3300, Australia.D Author for correspondence;

    e-mail: P.Sale@latrobe.edu.au;

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