The dissolution of goethite in aqueous media containing EDTA, experimental study of the influence of Fe III addition on the Fe(II), and Fe(III) has been studied. The main dissolution pathrate of goethite dissolution by ferrous EDTA in acidic media. ## ways involve the inner or outer sphere electron
Influence of Nitrate and Perchlorate Anions on the Kinetics of the Goethite Formation
β Scribed by Aida Frini; Mohamed El Maaoui
- Publisher
- Elsevier Science
- Year
- 1998
- Tongue
- English
- Weight
- 125 KB
- Volume
- 208
- Category
- Article
- ISSN
- 0021-9797
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β¦ Synopsis
The synthesis of goethite by oxidation of ferrous iron solutions in the presence of metallic iron has been carried out at temperatures ranging from 20 to 70Β°C and initial pH form 1 to 4; air flow rate is kept constant at 1 L/min. The influence of nitrate and perchlorate anions has been studied for salt concentrations ranging from 0 to 1 mol/L. The rates of iron oxidation and goethite precipitation are significantly enhanced. As expected, the nitrate anion presents many more marked oxidative properties than perchlorate. Domains of precipitation of goethite have been determined and presented in diagrams based on the factors cited above. In the presence of nitrate, magnetite precipitates in large domains corresponding to an increase in either temperature or pH. Ferrous iron concentrations are very low during magnetite precipitation, below 2 Ψ 10 Ψ3 g/L. They remain constant during the precipitation of goethite, in the range 12-18 Ψ 10 Ψ3 g/L.
π SIMILAR VOLUMES
The synthesis of goethite by oxidation of Fe 2/ in presence of droxides; it consists of the hydrolysis of Fe 3/ cations. This metallic iron was undertaken in an aqueous medium containing is achieved by pouring freshly prepared ferric solutions into indifferent salts such as Na 2 SO 4 , (NH 4 ) 2 SO
## Abstract Guanylurea nitrate (GUN) and guanylurea perchlorate (GUP) were prepared from cyanoguanidine (CG) and concentrated nitric or perchloric acid, respectively. Both compounds were fully characterized by analytical and spectroscopic methods. Crystals of GUP were grown from water, and its crys