A greenhouse study was conducted to evaluate the phytoextraction of arsenic (As) by Chinese brake fern (Pteris vittata L.) from a highly contaminated Typic Haplustept soil treated with different phosphatic fertilizers (di-ammonium phosphate (DAP) and single superphosphate (SSP)). The fern was grown in two repeated growing cycles and the resultant changes in soil biological activities were examined in pot culture experiments. The biomass yield of the fern was recorded 8.17–12.33 g pot−1 in the first growing cycle and 5.73–10.90 g pot−1 in the second growing cycle. The fronds of P. vittata accumulated the highest quantity of As ranging from 2884 to 4504 mg kg−1 in the first growing cycle and from 2254 to 3803 mg kg−1 in the second growing cyc...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...
Plant-soil interactions affect arsenic and nutrient availability in arsenic-contaminated soils, with...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...
A greenhouse study was conducted to evaluate the phytoextraction of arsenic (As) by Chinese brake fe...
The Chinese brake fern Pteris vittata is a well known arsenic hyperaccumulator plant and possesses f...
The Chinese brake fern Pteris vittata is a well known arsenic hyperaccumulator plant and possesses f...
The Chinese brake fern Pteris vittata is a well known arsenic hyperaccumulator plant and possesses f...
Recently discovered As-hyperaccumulator ferns hold promise for phytoremediation of As-polluted soils...
A greenhouse pot experiment was carried out to evaluate the efficiency of arsenic phytoextraction by...
A greenhouse pot experiment was carried out to evaluate the efficiency of arsenic phytoextraction by...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...
Pteris vittata L. has been demonstrated to absorb heavy metals, especially arsenic (As) from the soi...
A brake fern, Pteris vittata L. has been demonstrated to absorb heavy metals, especially arsenic (As...
An arsenic hyperaccumulator Pteris vittata L. (Chinese brake) was first discovered in China by means...
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...
Plant-soil interactions affect arsenic and nutrient availability in arsenic-contaminated soils, with...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...
A greenhouse study was conducted to evaluate the phytoextraction of arsenic (As) by Chinese brake fe...
The Chinese brake fern Pteris vittata is a well known arsenic hyperaccumulator plant and possesses f...
The Chinese brake fern Pteris vittata is a well known arsenic hyperaccumulator plant and possesses f...
The Chinese brake fern Pteris vittata is a well known arsenic hyperaccumulator plant and possesses f...
Recently discovered As-hyperaccumulator ferns hold promise for phytoremediation of As-polluted soils...
A greenhouse pot experiment was carried out to evaluate the efficiency of arsenic phytoextraction by...
A greenhouse pot experiment was carried out to evaluate the efficiency of arsenic phytoextraction by...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...
Pteris vittata L. has been demonstrated to absorb heavy metals, especially arsenic (As) from the soi...
A brake fern, Pteris vittata L. has been demonstrated to absorb heavy metals, especially arsenic (As...
An arsenic hyperaccumulator Pteris vittata L. (Chinese brake) was first discovered in China by means...
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...
Plant-soil interactions affect arsenic and nutrient availability in arsenic-contaminated soils, with...
The fern Pteris vittata, recently identified as a arsenic hyperaccumulator, has rapid biomass growth...