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首页> 外文期刊>Environmental Science and Pollution Research >Phosphate fertilizer premixing with farmyard manure enhances phosphorus availability in calcareous soil for higher wheat productivity
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Phosphate fertilizer premixing with farmyard manure enhances phosphorus availability in calcareous soil for higher wheat productivity

机译:用野地粪便预混合的磷肥可增强钙质土壤中的磷可用性,以获得更高的小麦生产率

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摘要

Fixation reactions reduce the concentration of soluble phosphorus (P) and affect crop growth in alkaline calcareous soils. In lab and greenhouse studies, phosphoric acid (PA) or diammonium phosphate (DAP) were evaluated at various P rates (0, 18, 36 and 54 mg kg(-1) soil), either as non-mix (designated as NM-PA and NM-DAP, respectively) or after premixing with farmyard manure (FYM) at 400 mg kg(-1) soil (designated as PM-PA and PM-DAP, respectively). The amended soil was incubated at 25 degrees C and 70% water holding capacity for 7 weeks; thereafter, P-32 dynamics were measured using the Freundlich kinetic model. A greenhouse study was also conducted using the same thirteen treatments (as used in incubation experiment) and wheat cultivar (Galaxy 2013) was grown following standard agronomic practices. The results showed that application of PM-PA at the highest rate, which caused maximum change in Pr (Delta Pr = 59%) in laboratory condition, also produced maximum P uptake by grain (190.3 mg pot(-1)) and grain yield (44.1 g pot(-1)) of wheat in greenhouse experiment. Similarly, regression analysis showed that an increase in Pr values caused a corresponding increase in crop parameters. The results suggested that pre-mixing P fertilizer with FYM could be a viable technique to increase P supply and enhance productivity of wheat in alkaline calcareous soils.
机译:固定反应降低可溶性磷(P)的浓度,并影响碱性钙质土壤中的作物生长。在实验室和温室研究中,以各种p速率(0,18,36和54mg(-1)土)评价磷酸(Pa)或磷酸二铵(DAP),如非混合(指定为NM- PA和NM-DAP分别或用仓库粪便(FYM)以400mg kg(-1)土壤(分别指定为PM-PA和PM-DAP)。将修正的土壤在25℃和70%的水持续容量中孵育7周;此后,使用Freundlich动力学模型测量P-32动态。使用相同的十三次治疗(如潜水实验中使用)和小麦品种(Galaxy 2013)进行了一项温室研究,并在标准农艺实践之后种植。结果表明,在实验室条件下引起PM-PM-PM-PA的最大速率,也产生了谷物(190.3mg罐(-1))和籽粒产量的最大p吸收(44.1克(-1)小麦在温室实验中。类似地,回归分析表明,PR值的增加导致作物参数的相应增加。结果表明,用FYM预混合P肥料可以是增加P供应和提高碱性钙质土壤中小麦生产率的可行技术。

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