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Dynamics of Potassium Fractions in a Calcareous Vertic Haplustepts Under AICRP-LTFE Soils


Affiliations
1 Department of Agricultural Chemistry and Soil Science, Junagadh Agricultural University, Junagadh (Gujarat), India
2 Department of Bio Chemistry, Junagadh Agricultural University, Junagadh (Gujarat), India
3 Cotton Research Centre, Junagadh Agricultural University, Junagadh (Gujarat), India
     

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The application of FYM also maintained or increased potassium status of LTFE soils. In treatments of FYM (T8 and T9), the status of potassium fractions increased. There was overall decrease in available-K2O status of LTFE soils after 8 year, except in treatments which received FYM (T8 and T9), where K2O status of soil increased as compared to initial status. Water soluble-K also decreased in LTFE soil after a span of 8 years, except in treatments which received FYM (T8 and T9). Same results were also recorded in case of exchangeable-K, HNO3 soluble-K, reserve-K and total-K, here also approved that for maintaining K fertility of soil at long run, it is essential to add organic fertilizer with inorganic ones for maintaining available potassium level in soil, application of organic manure is essential. In fact, all fractions of potassium decreased after a long run in intensive cropping of LTFE soils without addition of FYM. So it is alarming us to use organic fertilizer with inorganic one for maintaining K fertility status of soil in long run. At initial stage of experiment (1st year) available-K2O status of LTFE soils showed high category (> 280 Kg K2O ha-1), but after long run (8th year) it decreased to medium category (140-280 Kg K2O ha-1), except in treatment of FYM application (T8 and T9), where increment in K2O level was found rather than its depletion. Further it was established that, FYM is essential for maintaining soil fertility at long run. Similar results were also recorded in case of all other fractions of potassium.

Keywords

Potassium Fractions, AICRP-LTFE Soils, Total Potassium, Available Potassium, Nitric Acid Soluble Potassium (1N HNO3 Soluble K), Exchangeable Potassium, Reserve Potassium, Total Potassium.
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  • Dynamics of Potassium Fractions in a Calcareous Vertic Haplustepts Under AICRP-LTFE Soils

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Authors

A. V. Rajani
Department of Agricultural Chemistry and Soil Science, Junagadh Agricultural University, Junagadh (Gujarat), India
B. M. Butani
Department of Agricultural Chemistry and Soil Science, Junagadh Agricultural University, Junagadh (Gujarat), India
H. K. Shobhana
Department of Bio Chemistry, Junagadh Agricultural University, Junagadh (Gujarat), India
J. N. Naria
Cotton Research Centre, Junagadh Agricultural University, Junagadh (Gujarat), India
B. A. Golakiya
Department of Bio Chemistry, Junagadh Agricultural University, Junagadh (Gujarat), India

Abstract


The application of FYM also maintained or increased potassium status of LTFE soils. In treatments of FYM (T8 and T9), the status of potassium fractions increased. There was overall decrease in available-K2O status of LTFE soils after 8 year, except in treatments which received FYM (T8 and T9), where K2O status of soil increased as compared to initial status. Water soluble-K also decreased in LTFE soil after a span of 8 years, except in treatments which received FYM (T8 and T9). Same results were also recorded in case of exchangeable-K, HNO3 soluble-K, reserve-K and total-K, here also approved that for maintaining K fertility of soil at long run, it is essential to add organic fertilizer with inorganic ones for maintaining available potassium level in soil, application of organic manure is essential. In fact, all fractions of potassium decreased after a long run in intensive cropping of LTFE soils without addition of FYM. So it is alarming us to use organic fertilizer with inorganic one for maintaining K fertility status of soil in long run. At initial stage of experiment (1st year) available-K2O status of LTFE soils showed high category (> 280 Kg K2O ha-1), but after long run (8th year) it decreased to medium category (140-280 Kg K2O ha-1), except in treatment of FYM application (T8 and T9), where increment in K2O level was found rather than its depletion. Further it was established that, FYM is essential for maintaining soil fertility at long run. Similar results were also recorded in case of all other fractions of potassium.

Keywords


Potassium Fractions, AICRP-LTFE Soils, Total Potassium, Available Potassium, Nitric Acid Soluble Potassium (1N HNO3 Soluble K), Exchangeable Potassium, Reserve Potassium, Total Potassium.