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Journal of Pharmacognosy and Phytochemistry

Journal of Pharmacognosy and Phytochemistry

Vol. 7, Issue 4 (2018)

Long-term effect of residual zinc and crop residue on zinc fractionation with different path

Author(s):

Kamini Kumari, Ravish Choudhary, J Prasad and Ishwar Singh Solanki

Abstract:
The long term effect of crop residue and residual zinc on Zn fractions in soil and their contribution to Zn uptake in rice-wheat system was studied in calciorthents of the Rajendra Agricultural University, Pusa, Samastipur, (Bihar), India, during 2010-11 and 2011-12. Application of zinc and crop residue increased the water soluble + exchangeable, complexed, organically bound, carbonate and amorphous oxide, crystalline oxide, residual and total Zn in the soil. The order of dominance of different fractions in soil was total Zn (164.35 mgkg-1) > residual – Zn (156.41 mgkg-1) > Zn bound to crystalline oxide (3.06 mgkg-1) > complexed Zn (2.27 mgkg-1) > organically bound Zn (1.14 mg kg-1) > water soluble plus exchangeable Zn (0.84 mgkg-1) and Zn bound carbonate and amorphous oxide (0.73 mg kg-1). All the soil Zn fractions were significantly correlated among themselves indicating existence of a dynamic equilibrium with each other. Zinc uptake by rice-wheat was improved with zinc along with crop residue. Among 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. The highest zinc uptake by rice and wheat was reported with the conjoint use of 100 % crop residue and 10 kg Zn ha-1.

Pages: 2801-2807  |  1015 Views  342 Downloads


Journal of Pharmacognosy and Phytochemistry Journal of Pharmacognosy and Phytochemistry
How to cite this article:
Kamini Kumari, Ravish Choudhary, J Prasad and Ishwar Singh Solanki. Long-term effect of residual zinc and crop residue on zinc fractionation with different path. J Pharmacogn Phytochem 2018;7(4):2801-2807.

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