Javascript must be enabled to continue!
Speciation of Iodide and Iodate Anions in Geochemical Environments: A Theory Driven Experimental Study
View through CrossRef
Speciation of heavy metal ions in geochemical environment is utmost importance due to its environmental relevance. Iodine exists as iodide and iodate anions and are heavier anions, and they can be more labile in the absence of humic environments. This study particularly focusses on iodine speciation in Humic Acid (HA) environments. First, we have carried out extensive quantum chemical calculations to understand the structure-function relationship of iodide and iodate binding in humic acids. We predict that iodide anion binds through hydrogen bonding and are thus weak in acidic conditions. Iodate anion binds at the macrocyclic pocket of the humic acid, and is somewhat pH independent. Computed structure of the complex and binding energies explain the binding affinities of iodide and iodate with HA and quantum theory of atoms and molecules QTAIM analysis reveal the nature of forces involved in each case. To justify our computational claim, sorption experimental studies are carried out on the uptake of iodine species with humic acid. The studies are quite encouraging and there is a close agreement between the theoretical and experimental results.
Austin Publishing Group
Title: Speciation of Iodide and Iodate Anions in Geochemical Environments: A Theory Driven Experimental Study
Description:
Speciation of heavy metal ions in geochemical environment is utmost importance due to its environmental relevance.
Iodine exists as iodide and iodate anions and are heavier anions, and they can be more labile in the absence of humic environments.
This study particularly focusses on iodine speciation in Humic Acid (HA) environments.
First, we have carried out extensive quantum chemical calculations to understand the structure-function relationship of iodide and iodate binding in humic acids.
We predict that iodide anion binds through hydrogen bonding and are thus weak in acidic conditions.
Iodate anion binds at the macrocyclic pocket of the humic acid, and is somewhat pH independent.
Computed structure of the complex and binding energies explain the binding affinities of iodide and iodate with HA and quantum theory of atoms and molecules QTAIM analysis reveal the nature of forces involved in each case.
To justify our computational claim, sorption experimental studies are carried out on the uptake of iodine species with humic acid.
The studies are quite encouraging and there is a close agreement between the theoretical and experimental results.
Related Results
Iodate reduction by marine aerobic bacteria
Iodate reduction by marine aerobic bacteria
Iodate reductase (Idr) gene cluster (
idrABP
1
P
2
...
Surface Inorganic Iodine Speciation in the Indian and Southern Oceans from 12o N to 70o S
Surface Inorganic Iodine Speciation in the Indian and Southern Oceans from 12o N to 70o S
Marine iodine speciation has emerged as a potential tracer of primary
productivity, sedimentary inputs, and ocean oxygenation. The reaction of
iodide with ozone at the sea surface ...
Sequential Speciation and Cascading Divergence
Sequential Speciation and Cascading Divergence
A central, long-standing, and largely untested premise in evolutionary ecology is that “biodiversity begets biodiversity” in a process referred to as “sequential” or “cascading” di...
Grp78 alleviates sodium iodate-induced retinal cell injury in vivo and in vitro
Grp78 alleviates sodium iodate-induced retinal cell injury in vivo and in vitro
Abstract
Objective
Glucose-regulated protein 78 (Grp78) has been regarded as a main member of the endoplasmic reticulum protein...
Electrostatic Adsorption of Anions
Electrostatic Adsorption of Anions
Electrostatic adsorption of anions is one of the important characteristics of variable charge soils. This is caused by the fundamental feature that these soils carry a large quanti...
Iodine Biofortificationin Tomato with a Strategy to Prevent Iodine Deficiency
Iodine Biofortificationin Tomato with a Strategy to Prevent Iodine Deficiency
A field experiment was conducted to investigate the potential of iodine biofortification in tomato fruits by fertilizing potassium iodate in soil, foliar form and chitosan complex ...
Effect of Iodide in Diethylenetriamine Oxidation in CO2 Capture: Role of iron ions and Enhancement by chelating agents
Effect of Iodide in Diethylenetriamine Oxidation in CO2 Capture: Role of iron ions and Enhancement by chelating agents
Oxidative degradation remains a key challenge in amine-based CO₂ capture, limiting solvent stability, increasing costs, and creating risk of environmental impact. Chain polyamines ...
In-Vessel Headspace Liquid Phase Microextraction Coupled to Spectrophotometry for Iodate Determination
In-Vessel Headspace Liquid Phase Microextraction Coupled to Spectrophotometry for Iodate Determination
A new, highly sensitive and selective method for the spectrophotometric determination of iodate is developed based on the in-vessel mode of headspace liquid phase microextraction (...

