Anaerobic and aerobic reductive dissolutions of iron-rich nickel laterite overburden by Acidithiobacillus
-
Add time:07/26/2019 Source:sciencedirect.com
Aerobic reductive dissolution (AeRD) of iron, nickel, cobalt and manganese from laterite overburden using Acidithiobacillus (At.) thiooxidans and anaerobic reductive dissolution (AnRD) using At. ferrooxidans were examined in laboratory bioreactors. A chemical mobilization of ferric iron occurred in the anaerobic bioreactor inoculated with At. ferrooxidans maintained at pH 0.8 but not at pH 1.8. Increasing the pH from 0.8 to 1.8 after seven days was required to provoke an increase of the dissolution rate by biological ferric iron reduction. The aerobic reactors maintained at pH 0.8, either inoculated or non-inoculated with At. thiooxidans, showed higher ferric iron release from laterite overburden than the corresponding anaerobic reactors. The aerobic reductive dissolution (AeRD) process using At. thiooxidans was far more efficient in extracting total iron, ferrous iron and dissolving manganese, cobalt and nickel than the anaerobic reductive dissolution (AnRD) process using At. ferrooxidans. The current study highlights the presence of dioxygen, until yet unconsidered, as key factor to enhance the bio-reductive dissolution of iron-containing minerals.
We also recommend Trading Suppliers and Manufacturers of NICKEL COPPER IRON MANGANESE (cas 11105-19-4). Pls Click Website Link as below: cas 11105-19-4 suppliers
Prev:Facile preparation of trace-iron doped manganese oxide/N-doped ketjenblack carbon composite for efficient ORR electrocatalyst
Next:Preparation a nickel-aluminide bonded diamond tool by self-propagating high-temperature synthesis and strengthening by nickel-chromium-phosphorus alloy and copper) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Facile preparation of trace-iron doped manganese oxide/N-doped ketjenblack carbon composite for efficient ORR electrocatalyst07/25/2019
- Spin scattering in manganese doped nickel07/24/2019
- Structurally unstable pseudoalloys powder nickel-molybdenum steel-copper07/23/2019
- Novel hydro-electrometallurgical technology for simultaneous production of manganese metal, electrolytic manganese dioxide, and manganese sulfate monohydrate07/22/2019
- Highly adsorptive polysulfone/hydrous iron-nickel-manganese (PSF/HINM) nanocomposite hollow fiber membrane for synergistic arsenic removal07/20/2019
- Thermal and spectroscopic study of zinc, manganese, copper, cobalt and nickel 2,3-pyrazinedicarboxylate07/21/2019
- Computational and experimental investigation of dimethyldithiocarbamate for effective recovery of cobalt and nickel from the leach liquor of high manganese slag07/19/2019
- Recovery of manganese and nickel from polymetallic manganese nodule using commercial extractants07/18/2019
- Zinc, copper, nickel, and arsenic monitoring in natural streams using in-situ iron–manganese oxide coated stream pebbles07/17/2019
-
Health and Chemical more >


