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首页> 外文期刊>Chemical geology >Effect of long-term balanced and imbalanced inorganic fertilizer and FYM application on chemical fraction of DTPA-extractable micronutrients and yields under rice-wheat cropping system in mollisols
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Effect of long-term balanced and imbalanced inorganic fertilizer and FYM application on chemical fraction of DTPA-extractable micronutrients and yields under rice-wheat cropping system in mollisols

机译:长期平衡和不受约理的无机肥和FYM应用对苗玉米米饭种植系统中DTPA可提取的微量营养素的化学级分和产量的影响

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摘要

The imbalanced use of chemical fertilizers under intensive cultivation practices over a period of years leads to various soil-associated problems particularly nutrient availability. Thus, to examine the effect of long-term application of balanced and imbalanced inorganic fertilizer and farm yard manure (FYM) application on the chemical fraction of DTPA-extractable micronutrients under rice-wheat cropping system after 29 years, the observations were recorded from the ongoing field experiment at Govind Ballabh Pant University of Agriculture and Technology, Pantnagar, India. An application of balanced inorganic fertilizer with FYM in rice, while without FYM in wheat significantly improved the DTPA-extractable Zn, Fe, Mn and Cu after rice and wheat crops in both the surface and sub-surface soil layers. Lowest DTPA-extractable Zn, Fe, Mn and Cu were recorded, in surface and sub-surface soil under rice and wheat crops in control. The highest DTPA-extractable Zn, in both surface and sub-surface layers of rice (3.31, 1.62 mg kg(-1), respectively) and wheat (2.96, 0.99 mg kg(-1), respectively) was recorded because of application of N-180+P-80+K-40+Zn(F) + FYM in rice and N-180+P-80+K-40+Zn(F) in wheat. However, the DTPA-extractable Fe, Mn and Cu were highest in rice and wheat because of N-120+P-40+K-40+FYM and N-120+P-40+K-40 application, respectively. The balanced use of inorganic fertilizer with FYM (N-180+P-80+K-40+Zn(F) + FYM) in rice and without FYM [N-180+P-80+K-40+Zn(F)] in wheat supported the highest rice (6.74 t ha(-1)) and wheat (3.50 t ha(-1)) grain yields, while lowest in control. Based on the study results, long-term application of FYM at 5 tonnes ha(-1) in rice crop sustained the availability of DTPA-extractable cationic micronutrients to rice and wheat in Mollisols.
机译:在一段时间内的密集栽培实践下的化学肥料在化学肥料下的不平衡使用导致各种土壤相关问题特别是营养的可用性。因此,为了检查29年后米小麦种植系统下DTPA可提取的微量营养素的化学级分的长期应用的效果,从29岁后,从中记录了观察持续的野外实验在Govind Ballabh裤子农业大学,印度潘纳格尔省潘纳尔。稻米稻米均衡无机肥料的应用,但小麦的FYM显着改善了水稻和小麦作物后的DTPA可提取的Zn,Fe,Mn和Cu。记录最低DTPA可萃取的Zn,Fe,Mn和Cu,在稻米和小麦作物下的表面和亚表面土壤中进行控制。由于应用,记录了稻米表面和稻米表面和亚表面层(分别为3.31,1.62mg kg(-1))和小麦(2.96,0.99mg kg(-1)的最高DTPA可提取的Zn在水稻中的N-180 + P-80 + K-40 + Zn(F)+ Zn(F)+ Zn(F)+ Zn(F)在小麦中的N-180 + P-80 + K-40 + Zn(F)。然而,由于N-120 + P-40 + K-40 + FYM和N-120 + P-40 + K-40 + 40倍,DTPA可提取的Fe,Mn和Cu在水稻和小麦中最高。稻米和没有FYM的FYM(N-180 + P-80 + K-40 + Z-40 + Zn(F)+ Fym)的无机肥的平衡用途[N-180 + P-80 + K-40 + Zn(F)在小麦中,支撑着最高水稻(6.74 t ha(-1))和小麦(3.50 t ha(-1))谷物产量,而对照中最低。基于研究结果,在水稻作物中5吨HA(-1)的MYM长期应用于Mollisols中DTPA可溶液可溶液可溶液的阳离子微量营养素的可用性。

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