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Improved phosphorus and potassium fertiliser management: redefining the soil test and lupin response relationships in WA

机译:改善磷钾肥管理:重新定义西澳的土壤试验和羽扇豆响应关系

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摘要

When phosphorus requirement experiments in lupins were started in the early 1970s, most soils were highly deficient in phosphorus and consequently lupin yields were highly correlated (r2=0.72) with the Colwell soil phosphorus test, with a critical value defined as 20 mg P/kg soil. However, as phosphorus was applied to the soil the phosphorus status improved and this has, in turn, altered the ability of the Colwell soil phosphorus test to predict phosphorus response. Over time, various measurements of soil ability to adsorb phosphorus have been developed. The phosphorus retention index (PRI) was introduced during the early 1990s while the phosphorus buffer index (PBI) was introduced during the early 2000s (Bolland et al., 2006). Incursion of an indicator of phosphorus sorption into the phosphorus calibration curves can improve the ability of the phosphorus soil test procedure to predict phosphorus requirements of pastures (Bolland and Russell, 2010). In general, lupins are grown on sands that have a relatively low capacity to adsorb phosphorus. Within the available data base of phosphorus experiments done with lupins, PRI levels can be grouped into PRI=1, PRI=2 and PRI=3. These different PRI levels are known to have an impact on the shape of the phosphorus calibration curve for pastures (Bolland et al., 2010). The aim of this paper was to examine whether inclusion of PRI levels in the phosphorus soil test procedure could improve the ability of the Colwell soil phosphorus test to predict phosphorus deficiency in lupins.ududWhile WA soils initially contained adequate indigenous soil potassium for cropping, removal of potassium over time in harvested grain gradually resulted in some soils becoming potassium deficient for grain production. While studies have been done to determine the potassium requirements of lupins grown on grey sands, a calibration for the relationship between relative yield and Colwell soil potassium test has not been reported. An additional aim of this paper was to examine the ability of the Colwell soil potassium test to predict potassium deficiency in lupin grown on grey sands.
机译:1970年代初期开始在羽扇豆中进行磷需求试验时,大多数土壤中的磷含量严重不足,因此羽扇豆产量与Colwell土壤磷试验高度相关(r2 = 0.72),其临界值定义为20 mg P / kg泥。但是,由于将磷施用到土壤中,磷的状况有所改善,这反过来又改变了Colwell土壤磷测试预测磷响应的能力。随着时间的流逝,已经开发出各种测量土壤吸附磷的能力的方法。磷保持指数(PRI)是在1990年代初引入的,而磷缓冲指数(PBI)是在2000年代初引入的(Bolland等,2006)。将磷吸收指标引入磷校准曲线可以提高磷土壤测试程序预测牧场对磷的需求的能力(Bolland and Russell,2010)。通常,羽扇豆生长在吸附磷的能力相对较低的沙子上。在利用羽扇豆进行的磷实验的可用数据库中,PRI水平可分为PRI = 1,PRI = 2和PRI = 3。已知这些不同的PRI水平会对牧场的磷校准曲线的形状产生影响(Bolland等,2010)。本文的目的是研究在土壤磷测试过程中是否包含PRI水平是否可以提高Colwell土壤磷测试预测羽扇豆磷缺乏的能力。 ud ud西澳大利亚州土壤最初含有足够的本地土壤钾用于种植,随着时间的流逝,收获谷物中钾的去除逐渐导致某些土壤缺钾,无法进行谷物生产。虽然已经进行了研究以确定在灰色沙滩上生长的羽扇豆的钾需求量,但尚未报告相对产量与Colwell土壤钾测试之间关系的校准。本文的另一个目的是检验Colwell土壤钾测试预测灰沙丘上羽扇豆生长中钾缺乏的能力。

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