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首页> 外文期刊>Scientific Research and Essays >Integrated nutrient management and LCC based nitrogen management on soil fertility and yield of rice (Oryza Sativa L.)
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Integrated nutrient management and LCC based nitrogen management on soil fertility and yield of rice (Oryza Sativa L.)

机译:综合营养管理和基于LCC的氮肥管理对水稻(Oryza Sativa L.)的土壤肥力和产量

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The experiment was conducted at lowland series of wet lands, International Rice Research Institute (IRRI) Farm, Los Banos, Laguna, Philippines. The rice variety PSBRc 82 was raised during wet season (June – October), and the experiment was laid out in randomized block design with four replications. There were eleven treatments viz., control, recommended NPK fertilizer, -N, -P, -K, LCC 3, LCC 4, LCC 5, 100% N as fresh rice straw, 50% N through rice straw compost and 50% N as poultry manure and 50% N as combined organic manures (RSC + PM). The P and K were applied to all the treatments except -P and –K treatments, respectively. The fertilizer N @ 90 kg ha-1, P2O5 @ 40 kg ha-1 and K2O @ 60 kg ha-1 were applied in the form of urea, super phosphate and muriate of potash respectively. The application of N at 90 kg level as 50% through RSC + 50% N as PM registered higher available N, P and K contents of soil during different growth stages as compared to the other treatment combinations including recommended NPK fertilizers. The growth and yield attributes were also found to be improved by the above treatment resulting in more grain and straw yield. With regard to N management, LCC 4 and 5 based N applications recorded higher grain yield as a result of higher soil available nutrients during the critical growth stages.
机译:该实验是在菲律宾拉古纳洛斯巴诺斯国际水稻研究所(IRRI)农场的低地湿地系列上进行的。水稻品种PSBRc 82在雨季(6月至10月)进行了育种,并以四次重复的随机区组设计进行了实验。共有11种处理方法,即对照,推荐的NPK肥料,-N,-P,-K,LCC 3,LCC 4,LCC 5,新鲜稻草的100%N,通过稻草堆肥的50%N和50%N用作家禽粪便,50%氮用作有机粪便(RSC + PM)。 P和K分别应用于除-P和-K处理之外的所有处理。分别以尿素,过磷酸钙和钾肥的形式施用氮肥90千克ha-1,P2O5 40千克ha-1和K2O 60千克ha-1。与其他处理组合(包括推荐的NPK肥料)相比,在90%的氮水平下通过RSC + 50%的氮以50%的比例通过RSC + 50%的氮施用,表现出在不同生长阶段土壤中的有效氮,磷和钾含量更高。还发现通过上述处理改善了生长和产量属性,导致更多的谷物和稻草产量。关于氮素管理,基于LCC 4和5的氮素施用记录了较高的谷物产量,这是由于在关键生长阶段土壤有效养分含量较高。

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