Electrocoagulation of colloidal biogenic selenium
Creators
- 1. University of Paris
- 2. UNESCO-IHE Institute for Water Education
- 3. Colorado State University
Description
Colloidal elemental selenium (Se(0)) adversely affects membrane separation processes and aquatic ecosystems. As a solution to this problem, we investigated for the first time the removal potential of Se(0) by electrocoagulation process. Colloidal Se(0) was produced by a strain of Pseudomonas fluorescens and showed limited gravitational settling. Therefore, iron (Fe) and aluminum (Al) sacrificial electrodes were used in a batch reactor under galvanostatic conditions. The best Se(0) turbidity removal (97 %) was achieved using iron electrodes at 200 mA. Aluminum electrodes removed 96 % of colloidal Se(0) only at a higher current intensity (300 mA). At the best Se(0) removal efficiency, electrocoagulation using Fe electrode removed 93 % of the Se concentration, whereas with Al electrodes the Se removal efficiency reached only 54 %. Due to the less compact nature of the Al flocs, the Se-Al sediment was three times more voluminous than the Se-Fe sediment. The toxicity characteristic leaching procedure (TCLP) test showed that the Fe-Se sediment released Se below the regulatory level (1 mg L−1), whereas the Se concentration leached from the Al-Se sediment exceeded the limit by about 20 times. This might be related to the mineralogical nature of the sediments. Electron scanning micrographs showed Fe-Se sediments with a reticular structure, whereas the Al-Se sediments lacked an organized structure. Overall, the results obtained showed that the use of Fe electrodes as soluble anode in electrocoagulation constitutes a better option than Al electrodes for the electrochemical sedimentation of colloidal Se(0).
Open Access
Publisher Website
Access full text
Publication Details
Journal article
Journal:
Environmental science and pollution research international
Publisher:
Springer Science + Business Media
ISSN:
16147499
Volume:
22
Pages:
3127-3137
Persistent Identifiers
References
Mechelhoff M, Kelsall GH, Graham NJD (2013) Super-faradaic charge yields for alu...
Read more
Mouedhen G, Feki M, Wery MDP, Ayedi HF (2008) Behavior of aluminum electrodes in...
Read more
Picard T, Cathalifaud-Feuillade G, Mazet M, Vandensteendam C (2000) Cathodic dis...
Read more
Schlekat CE, Dowdle PR, Lee BG, Luoma SN, Oremland RS (2000) Bioavailability of ...
Read more
Purkerson DG, Doblin MA, Bollens SM, Luoma SN, Cutter GA (2003) Selenium in San ...
Read more
Showing first 5 of 54 references.
Scholarly Citations
MeSH Terms
MeSH (Medical Subject Headings) is the NLM controlled vocabulary for indexing biomedical articles.
Click any term to view its definition and hierarchy.
Chemical Substances
6 chemical substances identified from Medical Subject Headings (MeSH).