Related Experiment Video
Updated: Apr 16, 2026

Experimental Column Setup for Studying Anaerobic Biogeochemical Interactions Between Iron OxyHydroxides, Trace Elements, and Bacteria
Published on: December 19, 2017
Oxidation process of dissolvable sulfide by synthesized todorokite in aqueous systems
Tianyu Gao1, Ying Shi1, Fan Liu1
1Key Laboratory of Arable Land Conservation (Middle and Lower Reaches of Yangtse River), Ministry of Agriculture, College of Resources and Environment, Huazhong Agricultural University, Wuhan 430070, PR China.
Abstract:
Todorokite, formed from Mn(II) in supergene environments, can affect the transformation and migration of dissolvable sulfides in soils and water. In this work, todorokite was synthesized with different degrees of crystallinity, and the redox mechanism of dissolvable sulfide and todorokite was studied in both closed and open aqueous systems. The influences of pH, temperature, crystallinity, the amount of manganese oxides, and oxygen gas on S(2-) oxidation process were investigated. It is found that S(2-) was oxidized to S(0), SO3(2-), S2O3(2-) and SO4(2-), and about 90% of S(2-) was converted into S(0) in closed systems. The participation of oxygen facilitated the further oxidation of S(0) to S2O3(2-). S(0) and S2O3(2-) were formed with the conversion rates of S(2-) about 45.3% and 38.4% after 1h of reaction, respectively, and the conversion rate for S2O3(2-) increased as reaction prolonged for a longer period. In addition, todorokite was reduced to Mn(OH)2 in the presence of nitrogen gas, and its chemical stability increased when oxygen gas was admitted into the reaction system during the process. The oxidation rate of dissolvable sulfide followed a pseudo-first-order kinetic law in the initial stage (within 10 min), and the initial oxidation rate constant of S(2-) increased with elevating temperature, increasing the quantity and decreasing crystallinity of todorokite. The initial oxidation rate of dissolvable sulfide decreased with continuous feeding of O2 into the test solution, possibly due to a decrease in active Mn(III) content in todorokite. The present work demonstrates the redox behaviors and kinetics of dissolvable sulfide and todorokite in aquatic environments.
More Related Videos
09:09A Facile Synthetic Method to Obtain Bismuth Oxyiodide Microspheres Highly Functional for the Photocatalytic Processes of Water Depuration
Published on: March 29, 2019
08:34A Dual-Functional Electroactive Filter Towards Simultaneously SbIII Oxidation and Sequestration
Published on: December 5, 2019
Related Concept Videos
Preparation and Reactions of Sulfides
Acid Mine Drainage
Microbes and the Sulfur Cycle
Preparation and Reactions of Thiols
Redox Reactions
Redox Titration: Other Oxidizing and Reducing Agents