1993•Journal of the Indian Society of Soil ScienceOpen access

Effect of Water Regimes and Organic Matter on the Transformation of Applied Zinc in Soils

Jagat Pal Singh, V. Phogat, D.J. Daidya

Open full text 3 citations

Abstract

A laboratory incubation experiment was conducted with two rice growing soils (Aquic Ustochrept and Typic Natrustalf) to study the influence of water regimes and organic matter on the recovery of applied Zn. The recovery of zinc in various fractions was always higher in the Aquic Ustochrept than in the Typic Natrustalf. The magnitu.de of transformation of applied zinc to organically, amorphous Fe-oxide and Mn-oxide bound fractions was relatively higher under the continuously than under the alternately submerged conditions and the results were reverse in respect of water soluble plus exchan,geable and crystalline Fe-oxide bound fractions. Application of organic matter enhanced the transformation of applied. Zn to Mn-oxide, organically and amorphous Fe-oxide boundforms but it discouraged such transformations to the water soluble plus exchangeable and crystalline Fe-oxide fractions. At the end of 48 days of incubation study, higher amounts of Zn were recovered in Mn-oxide. organically and amorphous Fe-oxide boundfractions in 5 mg Zn kg−1 than in 10 mg Zn kg−1) treatment but the reverse was true in respect of the other two Zn fractions.

About this research paper

What this paper is about

A laboratory incubation experiment was conducted with two rice growing soils (Aquic Ustochrept and Typic Natrustalf) to study the influence of water regimes and organic matter on the recovery of applied Zn. The recovery of zinc in various fractions was always higher in the Aquic Ustochrept than in the Typic Natrustalf. The magnitu.de of transformation of applied zinc to organically, amorphous Fe-oxide and Mn-oxide bound fractions was relatively higher under the continuously than under the alternately submerged conditions and the results were reverse in respect of water soluble plus exchan,geable and crystalline Fe-oxide bound fractions. Application of organic matter enhanced the transformation of applied. Zn to Mn-oxide, organically and amorphous Fe-oxide boundforms but it discouraged such transformations to the water soluble plus exchangeable and crystalline Fe-oxide fractions. At the end of 48 days of incubation study, higher amounts of Zn were recovered in Mn-oxide. organically and amorphous Fe-oxide boundfractions in 5 mg Zn kg−1 than in 10 mg Zn kg−1) treatment but the reverse was true in respect of the other two Zn fractions.

Why it matters

OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

A laboratory incubation experiment was conducted with two rice growing soils (Aquic Ustochrept and Typic Natrustalf) to study the influence of water regimes and organic matter on the recovery of applied Zn. The recovery of zinc in various fractions was always higher in the Aquic Ustochrept than in the Typic Natrustalf. The magnitu.de of transformation of applied zinc to organically, amorphous Fe-oxide and Mn-oxide bound fractions was relatively higher under the continuously than under the alternately submerged conditions and the results were reverse in respect of water soluble plus exchan,geable and crystalline Fe-oxide bound fractions. Application of organic matter enhanced the transformation of applied. Zn to Mn-oxide, organically and amorphous Fe-oxide boundforms but it discouraged such transformations to the water soluble plus exchangeable and crystalline Fe-oxide fractions. At the end of 48 days of incubation study, higher amounts of Zn were recovered in Mn-oxide. organically and amorphous Fe-oxide boundfractions in 5 mg Zn kg−1 than in 10 mg Zn kg−1) treatment but the reverse was true in respect of the other two Zn fractions.

Key concepts: Zinc, Amorphous solid, Incubation, Organic matter, Oxide, Chemistry, Soil water, Inceptisol

Related papers

Back to paper searchBrowse research topicsOriginal source
Effect of Water Regimes and Organic Matter on the Transformation of Applied Zinc in Soils — Research Paper | ScholarLens