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首页> 外文期刊>Pure and Applied Biology >Effect of acidulated levels and application techniques of rock phosphate on phosphorus use efficiency and yield of wheat in calcareous soil of Peshawar-Pakistan
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Effect of acidulated levels and application techniques of rock phosphate on phosphorus use efficiency and yield of wheat in calcareous soil of Peshawar-Pakistan

机译:酸化水平和磷矿的施用技术对白沙瓦-巴基斯坦石灰性土壤中小麦磷素利用效率和产量的影响

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The present study investigated the effect of different levels of acidulated rock phosphate (RP), liquid or solid and application methods on phosphorus use efficiency and wheat yield under calcareous soils of Peshawar during 2015-16. Treatments included acidulation of 100 kg RP with 7.5, 15, 30 and 45 kg HSUB2/SUBSOSUB4/SUB equivalent to 25, 50, 100 and 150 % acidulation, applied in the form of either liquid or solid as single (no split) or two equal splits at sowing and knee height stage. The rate of P in all treatment was equal to 90 kg PSUB2/SUBOSUB5/SUB haSUP-1/SUP. Our results showed that acidulation levels significantly increased wheat yield, post-harvest soil and plant tissue phosphorus optimum at 100 % acidulation level. Solid form of the acidulated RP was more effective than liquid revealing that lesser the contact of soil, could improve P availability from the source. It was further affirmed by the split application where it significantly increased the crop yield and P availability over no split irrespective of solid and liquid form. Our results suggest that solid RP with 100 % acidulation applied in two splits improved the crop yield, P use efficiency and could substitute commercial fertilizers under the prevailing soil and agro-climactic conditions.
机译:本研究调查了不同含量的酸化磷酸盐,液体或固体以及施用方法对白沙瓦石灰性土壤在2015-16年间磷利用效率和小麦产量的影响。处理方法包括用7.5、15、30和45公斤H 2 SO 4 酸化100公斤RP,相当于酸化25%,50%,100%和150%,以以下形式施用在播种和膝盖高度阶段,液体或固体为单次(不分流)或两个相等的分流。所有处理中的磷含量等于90 kg P 2 O 5 ha -1 。我们的结果表明,在100%的酸化水平下,酸化水平显着提高了小麦的产量,收获后土壤和植物组织中的最佳磷水平。固体形式的酸化RP比液体更有效,这表明较少的土壤接触可以从源头提高磷的利用率。拆分应用进一步证实了这一点,无论固体和液体形式如何,在不拆分的情况下,它显着提高了作物产量和磷的利用率。我们的结果表明,在两次分裂中施用100%酸化的固体RP可以提高作物产量,磷的利用率,并可以在普遍的土壤和农业气候条件下替代商业肥料。

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