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Effect of Organic and Inorganic Fertilizers on ZincFractions and Their Contribution to Zinc Uptakeunder Rice-wheat System

机译:稻麦系统中有机肥和无机肥对锌形态的影响及其对锌吸收的贡献

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The long-term effect of organic and inorganic fertiliser on Zn fractions in soil and their relation with Zn uptake in the rice-wheat system was studied in calciorthents of the Dr. Rajendra Prasad Central Agricultural University, Pusa Samastipur, Bihar. Application of NPK and compost and crop residue increased the water-soluble + exchangeable, carbonate and amorphous oxide, organically bound, complexed, crystalline oxide, residual and total Zn in the soil. The decreasing order of dominance of different fractions in soil was: total Zn > residual Zn >Zn bound to crystalline oxide > complexed Zn > Zn bound carbonate and amorphous oxide > organically bound Zn > water soluble plus exchangeable Zn. All the soil Zn fractions were significantly correlated among themselves indicating the existence of dynamic equilibrium with each other. Zinc uptake by rice-wheat was improved with NPK along with crop residue plus compost. Among the different Zn fractions, Zn bound to crystalline oxide followed by Zn bound to carbonate and amorphous oxide play a key role in explaining the variation in yield and nutrient uptake by rice and wheat.
机译:在比哈尔邦Pusa Samastipur的Rajendra Prasad中央农业大学的钙化研究了有机和无机肥料对土壤中Zn组分的长期影响及其与稻麦系统中Zn吸收的关系。施用氮磷钾,堆肥和农作物残渣增加了土壤中水溶性+可交换的碳酸盐和无定形氧化物,有机结合的,复合的,结晶的氧化物,残留锌和总锌。土壤中不同部分的优势度递减顺序为:总锌>残留锌>与结晶氧化物结合的锌>络合锌>与锌结合的碳酸盐和无定形氧化物>有机结合锌>水溶性加可交换锌。土壤中所有锌组分之间均存在显着相关,表明彼此之间存在动态平衡。氮磷钾,作物残渣和堆肥可改善稻麦对锌的吸收。在不同的锌组分中,结合于结晶氧化物的Zn,结合于碳酸盐和无定形氧化物的Zn在解释水稻和小麦的产量和养分吸收变化方面起着关键作用。

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