Extractive recovery and valorisation of arsenic from contaminated soil through phytoremediation using Pteris cretica. (October 2018)
- Record Type:
- Journal Article
- Title:
- Extractive recovery and valorisation of arsenic from contaminated soil through phytoremediation using Pteris cretica. (October 2018)
- Main Title:
- Extractive recovery and valorisation of arsenic from contaminated soil through phytoremediation using Pteris cretica
- Authors:
- Eze, Valentine C.
Harvey, Adam P. - Abstract:
- Abstract: Contamination of ground water and soil by arsenic poses serious environmental challenges globally. A possible solution to this problem is through phytoremediation using hyper-accumulating plants. This study investigates phytoremediation of soil containing 200 ± 3 mg kg −1 of arsenic using Pteris cretica ferns, and the strategies for arsenic extraction from the ferns biomass and subsequent conversions to valuable arsenic products. The Pteris cretica ferns achieved maximum arsenic accumulations of 4427 ± 79 to 4875 ± 96 mg of arsenic per kg dry biomass after 30 days. Extraction efficiencies of arsenic in the ferns fronds were 94.3 ± 2.1% for ethanol-water (1:1 v/v), 81.5 ± 3.2% for 1:1 (v/v) methanol-water, and 70.8 ± 2.9% for water alone. Molybdic acid process was used to recover 90.8 ± 5.3% of the arsenic, and 95.1 ± 4.6% of the phosphorus in the biomass extract. Quantitative precipitation of Mg3 (AsO4 )2 and Mg3 (PO4 )2 occurred on treatment of the aqueous solutions of arsenic and phosphorus after stripping at pH of 8–10. The efficiencies of Mg3 (AsO4 )2 and Mg3 (PO4 )2 precipitation were 96 ± 7.2% and 94 ± 3.4%, respectively. Arsenic nanoparticles produced from the recovered Mg3 (AsO4 )2, using two-stage reduction process, had average particle diameters of 45.5 ± 11.3 nm. These nanoparticles are potentially valuable for medical applications, while the Mg3 (AsO4 )2 could be converted to more valuable forms of arsenic or used as a pesticide, and the Mg3 (PO4 )2 inAbstract: Contamination of ground water and soil by arsenic poses serious environmental challenges globally. A possible solution to this problem is through phytoremediation using hyper-accumulating plants. This study investigates phytoremediation of soil containing 200 ± 3 mg kg −1 of arsenic using Pteris cretica ferns, and the strategies for arsenic extraction from the ferns biomass and subsequent conversions to valuable arsenic products. The Pteris cretica ferns achieved maximum arsenic accumulations of 4427 ± 79 to 4875 ± 96 mg of arsenic per kg dry biomass after 30 days. Extraction efficiencies of arsenic in the ferns fronds were 94.3 ± 2.1% for ethanol-water (1:1 v/v), 81.5 ± 3.2% for 1:1 (v/v) methanol-water, and 70.8 ± 2.9% for water alone. Molybdic acid process was used to recover 90.8 ± 5.3% of the arsenic, and 95.1 ± 4.6% of the phosphorus in the biomass extract. Quantitative precipitation of Mg3 (AsO4 )2 and Mg3 (PO4 )2 occurred on treatment of the aqueous solutions of arsenic and phosphorus after stripping at pH of 8–10. The efficiencies of Mg3 (AsO4 )2 and Mg3 (PO4 )2 precipitation were 96 ± 7.2% and 94 ± 3.4%, respectively. Arsenic nanoparticles produced from the recovered Mg3 (AsO4 )2, using two-stage reduction process, had average particle diameters of 45.5 ± 11.3 nm. These nanoparticles are potentially valuable for medical applications, while the Mg3 (AsO4 )2 could be converted to more valuable forms of arsenic or used as a pesticide, and the Mg3 (PO4 )2 in fertiliser. Recovery of these valuable products from phytoremediation biomass would incentivise and drive commercial industries' participation in remediation of contaminated lands. Highlights: Phytoremediation of 200 ± 3 mg kg −1 arsenic-contaminated soil using Pteris cretica. Arsenic accumulations between 4427 and 4875 mg kg −1 were achieved after 30 days. Molybdic acid process extracted 90.8 ± 5.3% arsenic and 95.1 ± 4.6% phosphorus. Arsenic and phosphorus recovered as Mg3 (AsO4 )2 and Mg3 (PO4 )2 at >94% efficiencies. Arsenic nanoparticles of 45.5 ± 11.3 nm diameters produced from the Mg3 (AsO4 )2 . … (more)
- Is Part Of:
- Chemosphere. Volume 208(2018)
- Journal:
- Chemosphere
- Issue:
- Volume 208(2018)
- Issue Display:
- Volume 208, Issue 2018 (2018)
- Year:
- 2018
- Volume:
- 208
- Issue:
- 2018
- Issue Sort Value:
- 2018-0208-2018-0000
- Page Start:
- 484
- Page End:
- 492
- Publication Date:
- 2018-10
- Subjects:
- Phytoremediation -- Hyper-accumulator -- Pteris cretica -- Solvent extraction -- Molybdic acid process -- Arsenic nanoparticles
Pollution -- Periodicals
Pollution -- Physiological effect -- Periodicals
Environmental sciences -- Periodicals
Atmospheric chemistry -- Periodicals
551.511 - Journal URLs:
- http://www.sciencedirect.com/science/journal/00456535/ ↗
http://www.elsevier.com/journals ↗ - DOI:
- 10.1016/j.chemosphere.2018.06.027 ↗
- Languages:
- English
- ISSNs:
- 0045-6535
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 3172.280000
British Library DSC - BLDSS-3PM
British Library STI - ELD Digital store - Ingest File:
- 12397.xml