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Combined application of polymer coated potassium chloride and urea improved fertilizer use efficiencies, yield and leaf photosynthesis of cotton on saline soil

机译:聚合物包膜氯化钾和尿素的组合施用提高了盐渍土上棉花的肥料利用率,产量和叶片的光合作用

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Conventional potassium fertilizers had been used widely, but few studies paid attention to controlled release potassium fertilizer. The objective of this study was to explore the effects of polymer coated potassium chloride (PCPC) -an innovation product, especially the interaction application of PCPC and polymer coated urea (PCU) on cotton yield, fiber quality, leaf photosynthesis and fertilizer use efficiencies under salinity stressed conditions. A two-year experiment was conducted in two nearby fields with the similar fertility but varying salinity, using a split-plot design in the Yellow River Delta area of China. The main plots were assigned to the types of K fertilizers (K1-180 kg ha(-1) K from potassium sulfate, K2-90 kg ha(-1) K from potassium sulfate +90 kg ha(-1) K from PCPC, K3-54 kg ha(-1) K from potassium sulfate+ 126 kg ha(-1) K from PCPC, hereafter referred to as 0, 50% and 70% PCPC), while the types of N fertilizers (N1-220 kg ha(-1) N from urea, N2-110 kg ha(-1) N from urea + 110 kg ha(-1) N from PCU, N3-66 kg ha(-1) N from urea + 154 kg ha-1 N from PCU, hereafter referred to as 0, 50% and 70% PCU) were assigned to the subplots. The results indicated that the lint yield, number of bolls, boll weight, lint percentage, fiber qualities, leaf photosynthesis and fertilizer use efficiencies were significantly affected by the types of K, N fertilizers and their interaction. The K and N release characteristics of PCPC and PCU under field condition were closely matched to the nutrients requirements of cotton growth. The contents of soil available K and inorganic N were significantly augmented from the first bloom stage to the initial boll opening stage by using PCPC and PCU compared to potassium sulfate and urea treatments. Meanwhile, PCPC and PCU interaction increased lint yields by 11.16-26.44% and 14.17-32.11% in comparison with potassium sulfate and urea in 2014 and 2015, respectively, and the maximum lint yield was achieved by the combination of 70% PCPC and 50% PCU. Besides, the boll number and boll weight were improved 5.2-18.2% and 4.75-10.29% by the PCPC and PCU treatments compared to both potassium sulfate and urea treatments, respectively. The potassium recovery efficiency (KRE) and nitrogen recovery efficiency (NRE) of PCPC and PCU treatments were significantly raised by 24.34-33.77% and 19.68-36.25%, respectively, compared with potassium sulfate and urea treatments in 2014 and 2015. PCPC owned the great potential to alter the current application of potassium fertilizer due to its ubiquitous traits. The interaction of PCPC and PCU at optimal dose was significant on cotton growth in saline soil. Consequently, the application of 70% PCPC in combination with 50% PCU is recommended to increase cotton yield and fertilizer use efficiency, and to improve the fiber quality and leaf photosynthesis properties in the Yellow River Delta area of China. (C) 2016 Published by Elsevier B.V.
机译:常规钾肥已被广泛使用,但很少有研究关注控释钾肥。这项研究的目的是探索创新产品聚合物包衣氯化钾(PCPC)的效果,尤其是PCPC和聚合物包衣尿素(PCU)的相互作用对棉花产量,纤维品质,叶片光合作用和肥料使用效率的影响。盐度压力条件。在中国黄河三角洲地区,采用分块设计,在两个附近的田间进行了为期两年的试验,田间肥力相似但盐度不同。主要地块分配给了钾肥类型(硫酸钾K1-180 kg ha(-1)K,硫酸钾K2-90 kg ha(-1)K + PCPC 90 kg ha(-1)K) ,硫酸钾K3-54 kg ha(-1)K + PCPC 126 kg ha(-1)K,以下称为0、50%和70%PCPC,而氮肥的类型(N1-220 kg ha(-1)N来自尿素,N2-110 kg ha(-1)N来自尿素+ 110 kg ha(-1)N来自PCU,N3-66 kg ha(-1)N来自尿素+ 154 kg ha-将来自PCU的1 N(以下称为0、50%和70%PCU)分配给子图。结果表明,钾,氮肥的种类及其相互作用对皮棉产量,棉铃数,棉铃重,皮棉百分比,纤维品质,叶片的光合作用和肥料使用效率都有显着影响。田间条件下PCPC和PCU的钾和氮释放特征与棉花生长所需的养分紧密匹配。与硫酸钾和尿素处理相比,通过使用PCPC和PCU,从第一开花阶段到初生铃打开阶段,土壤有效钾和无机氮的含量显着增加。同时,PCPC和PCU的交互作用使皮棉产量在2014年和2015年分别比硫酸钾和尿素提高了11.16-26.44%和14.17-32.11%,最大的皮棉产量是70%PCPC和50%的组合获得的PCU。此外,与硫酸钾和尿素处理相比,通过PCPC和PCU处理,铃数和铃重分别提高了5.2-18.2%和4.75-10.29%。与2014年和2015年的硫酸钾和尿素处理相比,PCPC和PCU处理的钾回收效率(KRE)和氮回收效率(NRE)分别显着提高了24.34-33.77%和19.68-36.25%。由于其普遍存在的性状,具有改变钾肥当前应用的巨大潜力。最佳剂量下PCPC和PCU的相互作用对盐碱地棉花生长具有显着影响。因此,建议在中国黄河三角洲地区将70%PCPC与50%PCU结合使用,以提高棉花产量和肥料利用率,并改善纤维质量和叶片光合作用特性。 (C)2016由Elsevier B.V.发布

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