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Effect of Nickel and Farmyard Manure on Wheat Yield and Nickel Concentration in Texturally Different Soils

机译:镍和养牛器粪肥对纹理不同土壤产量和镍浓度的影响

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A screen house experiment was conducted to study the interactive effect of nickel and Farmyard manure on wheat crop raised in texturally different soils. The treatments comprised of seven nickels levels (0, 5, 10, 20, 40, 80 and 120 mg kg~(-1) soil), four FYM levels (0, 0.25, 0.5 and 1.0%) and two soil textures (sand, clay loam), which were replicated thrice in completely randomized design. Application of nickel reduced the grain and straw yield of wheat significantly in sand. In clay loam soil there was no significant decrease in grain and straw yield of wheat with increasing nickel application up to 120 mg Ni Kg~(-1) of soil. Application of FYM increased the grain and straw yield in both the soils without application of nickel, however the increase in yield was not significant. Application of FYM mitigated the deleterious effect of Ni in sand. The increase in grain yield was to the tune of about 20 times at 120 mg Ni Kg~(-1) soil with application of 1% of FYM. It has also been observed that application of FYM could mitigate the adverse effect of 40 mg Ni Kg~(-1) soil on wheat yield. Application of nickel increased the Ni content of grain and straw in both the soils. However the Ni concentration was almost two times more in sand as compared to clay loam soil. There was no significant effect of FYM application on Ni concentration in wheat grain and straw in the absence of soil applied Nickel. Application of 1% of FYM decreased the Ni concentration of wheat grain and straw in sand. Besides increase in productivity, the Ni concentration of food material (grain and straw) could be harmful for the living beings fed on it.
机译:进行了一个筛选的房屋实验,研究了在纹理不同土壤中饲养的小麦作物上镍和养殖粪便的互动效果。该处理包括七个镍水平(0,5,10,20,40,80和120mg kg〜(-1)土壤),四种Fym水平(0,0.25,0.5和1.0%)和两种土壤纹理(沙子,粘土壤土),其在完全随机设计中被复制三次。镍的应用在沙子中显着降低了小麦的粒度和秸秆屈服。在粘土壤土土壤中,小麦的谷物和秸秆产量没有显着降低,镍涂层增加120毫克土壤土壤。 FYM在没有施加镍的情况下增加谷物和秸秆屈服的谷物和秸秆屈服,但产量的增加并不显着。 FYM减轻Ni在沙滩中的有害作用的应用。籽粒产量的增加是在120毫克Ni Kg〜(-1)土壤中的约20倍,施用1%的FYM。还观察到,FYM的应用可以减轻40mg Ni Kg〜(-1)土壤对小麦产量的不利影响。镍的应用增加了两种土壤中谷物的Ni含量。然而,与粘土壤土土壤相比,Ni浓度几乎是砂中的两倍。未经土壤施加镍的小麦籽粒和秸秆中Ni浓度对Ni浓度没有显着影响。 1%的FYM在砂中的液体籽粒浓度下降。除了生产力的增加外,食品材料的NI浓度(谷物和稻草)可能对送给它的生物有害。

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