Arsenic (As) is an ubiquitous trace metalloid found in all environmental media. Its presence at elevated concentrations in soils derives from both anthropogenic and natural inputs. Arsenic is a toxic and carcinogenic element, which has caused severe environmental and health problem worldwide. Technologies currently available for the remediation of arsenic-contaminated sites are expensive, environmentally disruptive, and potentially hazardous to workers. Phytoextraction, a strategy of phytoremediation, uses plants to clean up contaminated soils and has been successfully applied to arsenic contaminated soils. It has the advantage of being cost-effective and environmentally friendly. A major step towards the development of phytoextraction of a...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...
Arsenic (As) contaminated soils and waters are becoming major global environmental and human health ...
O crescente acúmulo de arsênio (As) em corpos d´água e solos tem causado grande preocupação com a ex...
Phytoremediation of metal contaminated soil and water is a low cost method of remediation, which all...
Trabalho completo: acesso restrito, p.4711–4716Better understanding of the processes controlling ars...
Phytoremediation is a promising green technique for the restoration of a polluted environment, but t...
Phytoremediation is a promising green technique for the restoration of a polluted environment, but t...
Arsenic (As) contaminated soils and waters are becoming major global environmental and human health ...
Phytoextraction is a promising technique for the remediation of soils contaminated by metals and met...
Phytoextraction is a promising technique for the remediation of soils contaminated by metals and met...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...
Phytoextraction is a promising technique for the remediation of soils contaminated by metals and met...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...
Arsenic (As) contaminated soils and waters are becoming major global environmental and human health ...
O crescente acúmulo de arsênio (As) em corpos d´água e solos tem causado grande preocupação com a ex...
Phytoremediation of metal contaminated soil and water is a low cost method of remediation, which all...
Trabalho completo: acesso restrito, p.4711–4716Better understanding of the processes controlling ars...
Phytoremediation is a promising green technique for the restoration of a polluted environment, but t...
Phytoremediation is a promising green technique for the restoration of a polluted environment, but t...
Arsenic (As) contaminated soils and waters are becoming major global environmental and human health ...
Phytoextraction is a promising technique for the remediation of soils contaminated by metals and met...
Phytoextraction is a promising technique for the remediation of soils contaminated by metals and met...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...
Phytoextraction is a promising technique for the remediation of soils contaminated by metals and met...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...