A greenhouse pot experiment was carried out to evaluate the efficiency of arsenic phytoextraction by the fern Pteris vittata growing in arsenic-contaminated soil, with or without the addition of selected rhizobacteria isolated from the polluted site. The bacterial strains were selected for arsenic resistance, the ability to reduce arsenate to arsenite, and the ability to promote plant growth. P. vittata plants were cultivated for 4 months in a contaminated substrate consisting of arsenopyrite cinders and mature compost. Four different experimental conditions were tested: (i) non-inoculated plants; (ii) plants inoculated with the siderophore-producing and arsenate-reducing bacteria Pseudomonas sp. P1III2 and Delftia sp. P2III5 (A); (iii) pla...
Phytoremediation, a cost-effective, eco-friendly alternative to conventional remediation, could expa...
The use of arsenic (As) for various industrial and agricultural applications has led to worldwide en...
This study was aimed at evaluating the phytoextraction efficiency of the fern Pteris vittata, recent...
A greenhouse pot experiment was carried out to evaluate the efficiency of arsenic phytoextraction by...
Arsenic is a common contaminant in soils and water. It is well established that the fern Pteris vitt...
In the present study, the effect of PGP (plant growth-promoting) bacterial inocula, resistant to ars...
A greenhouse study was conducted to evaluate the phytoextraction of arsenic (As) by Chinese brake fe...
This study evaluated the phytoextraction capacity of the fern Pteris vittata grown on a natural arse...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...
The Chinese brake fern Pteris vittata is a well known arsenic hyperaccumulator plant and possesses f...
Arsenic contamination in soil is a serious problem as the toxic metalloid impacts both environmental...
Mitigation of arsenic (As) pollution is a topical environmental issue of high R&D priority. The pres...
Phytoextraction is a promising technique for the remediation of soils contaminated by metals and met...
Mitigation of arsenic (As) pollution is a topical environmental issue of high R & D priority. The pr...
Phytoremediation, a cost-effective, eco-friendly alternative to conventional remediation, could expa...
The use of arsenic (As) for various industrial and agricultural applications has led to worldwide en...
This study was aimed at evaluating the phytoextraction efficiency of the fern Pteris vittata, recent...
A greenhouse pot experiment was carried out to evaluate the efficiency of arsenic phytoextraction by...
Arsenic is a common contaminant in soils and water. It is well established that the fern Pteris vitt...
In the present study, the effect of PGP (plant growth-promoting) bacterial inocula, resistant to ars...
A greenhouse study was conducted to evaluate the phytoextraction of arsenic (As) by Chinese brake fe...
This study evaluated the phytoextraction capacity of the fern Pteris vittata grown on a natural arse...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...
The Chinese brake fern Pteris vittata is a well known arsenic hyperaccumulator plant and possesses f...
Arsenic contamination in soil is a serious problem as the toxic metalloid impacts both environmental...
Mitigation of arsenic (As) pollution is a topical environmental issue of high R&D priority. The pres...
Phytoextraction is a promising technique for the remediation of soils contaminated by metals and met...
Mitigation of arsenic (As) pollution is a topical environmental issue of high R & D priority. The pr...
Phytoremediation, a cost-effective, eco-friendly alternative to conventional remediation, could expa...
The use of arsenic (As) for various industrial and agricultural applications has led to worldwide en...
This study was aimed at evaluating the phytoextraction efficiency of the fern Pteris vittata, recent...