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History of phosphorus fertilizer usage and its impact on the agronomic phosphorus status of sugarcane soils in Mauritius

机译:毛里求斯使用磷肥的历史及其对甘蔗土壤农用磷状况的影响

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The intensive use of phosphorus (P) fertilizers during more than 100 years of sugarcane production in Mauritius is believed to have built up the P status of the soils to excessive levels. Hence there may be a scope for reducing P fertilizer usage in order to lessen production costs in sugarcane cultivation and alleviate its hazard to surface water quality. A review of P fertilizer usage in sugarcane showed that the amount of P fertilizer used by the sugarcane industry rose from 790 tons P_2O_5 (mainly as rock/guano phosphates) in the early 20th century to a peak of 5 675 tons P_2O_5 in the 1970s before declining thereafter to 3 350 tons P_2O_5 in 2008, mainly in the form of ammonium phosphates. The currently adopted 0.1M H_2SO_4 extraction method was used to assess soil P available in the sugarcane soils. Soil test P data showed that in 2005/2006, 36% of the land still required P fertilization (P < 80 mg kg~(-1)) while approximately 52% had an excess of P (P > 100 mg kg~(-1)). Fields with excessive P belong to all soil groups and can be encountered throughout the island. Less than 15% of the soils had an optimum soil P (80 ≤ P < 100 mg kg~(-1)). With only 31 % of the soils having a highly excessive P status (P≥ 150 mg kg~(-1), this study indicates the belief that past P fertilization had invariably led to an excessive soil P status in Mauritius is unfounded. Also variation in soil P status as a result of differences in management between small and large planters could also not be discerned.
机译:人们认为,在毛里求斯的甘蔗生产100多年中,大量使用磷(P)肥料已使土壤的P状况达到了过量水平。因此,为了减少甘蔗种植的生产成本并减轻其对地表水质量的危害,可能存在减少磷肥使用的范围。一项对甘蔗中磷肥使用的回顾表明,甘蔗业使用的磷肥数量从20世纪初的790吨P_2O_5(主要是岩石/鸟粪磷酸盐)上升到1970年代之前的峰值5675吨P_2O_5。此后在2008年下降到3 350吨P_2O_5,主要为磷酸铵形式。目前采用的0.1M H_2SO_4提取方法用于评估甘蔗土壤中可利用的土壤P。土壤测试P数据显示,在2005/2006年,仍有36%的土地需要P施肥(P <80 mg kg〜(-1)),而大约52%的土壤过量P(P> 100 mg kg〜(- 1))。磷含量过高的田地属于所有土壤类别,在整个岛屿上都会遇到。少于15%的土壤具有最佳土壤P(80≤P <100 mg kg〜(-1))。在仅有31%的土壤中,P含量过高(P≥150 mg kg〜(-1)),这项研究表明,过去的磷肥一直导致毛里求斯土壤P含量过高的观点是没有根据的。大小种植者之间管理差异的结果也无法确定土壤磷状况。

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