1997•Journal of the Indian Society of Soil ScienceOpen access

Adsorption-Desorption of Isoproturon on Eight Soils of Hyderabad, Andhra Pradesh

G. Shanti, Parvathy Chandrasekhar, Saroja Raman

Open full text 1 citations

Abstract

Adsorption-desorption was studied by batch equilibrium technique at 37 ± 1°C at five different initial concentrations of isoproturon. Adsorption isotherms conformed to Freundlich equation (A = KC1/n). Desorption isotherms showed considerable hysteresis which was more prominent when desorption was carried out at higher concentrations of adsorbed isoproturon. Desorption isotherms from lowest level of adsorbed isoproturon concentration were close to adsorption isotherms. The cumulative desorption after five desorption steps was significantly different for all the initial concentrations of adsorbed herbicide and for all the soilS. Desorption isotherms conformed to Freundlich's equation and the Freundlich's constants ‘K’ and ‘n’ increased with increasing initial concentration of adsorbed herbicide thus confirming the irreversible nature of the adsorption of isoproturon on these soils.

About this research paper

What this paper is about

Adsorption-desorption was studied by batch equilibrium technique at 37 ± 1°C at five different initial concentrations of isoproturon. Adsorption isotherms conformed to Freundlich equation (A = KC1/n). Desorption isotherms showed considerable hysteresis which was more prominent when desorption was carried out at higher concentrations of adsorbed isoproturon. Desorption isotherms from lowest level of adsorbed isoproturon concentration were close to adsorption isotherms. The cumulative desorption after five desorption steps was significantly different for all the initial concentrations of adsorbed herbicide and for all the soilS. Desorption isotherms conformed to Freundlich's equation and the Freundlich's constants ‘K’ and ‘n’ increased with increasing initial concentration of adsorbed herbicide thus confirming the irreversible nature of the adsorption of isoproturon on these soils.

Why it matters

OpenAlex reports 1 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

Adsorption-desorption was studied by batch equilibrium technique at 37 ± 1°C at five different initial concentrations of isoproturon. Adsorption isotherms conformed to Freundlich equation (A = KC1/n). Desorption isotherms showed considerable hysteresis which was more prominent when desorption was carried out at higher concentrations of adsorbed isoproturon. Desorption isotherms from lowest level of adsorbed isoproturon concentration were close to adsorption isotherms. The cumulative desorption after five desorption steps was significantly different for all the initial concentrations of adsorbed herbicide and for all the soilS. Desorption isotherms conformed to Freundlich's equation and the Freundlich's constants ‘K’ and ‘n’ increased with increasing initial concentration of adsorbed herbicide thus confirming the irreversible nature of the adsorption of isoproturon on these soils.

Key concepts: Freundlich equation, Desorption, Adsorption, Soil water, Chemistry, Environmental chemistry, Analytical Chemistry (journal), Chromatography

Related papers

Back to paper searchBrowse research topicsOriginal source
Adsorption-Desorption of Isoproturon on Eight Soils of Hyderabad, Andhra Pradesh — Research Paper | ScholarLens