An arsenic hyperaccumulator Pteris vittata L. (Chinese brake) was first discovered in China by means of field survey and greenhouse cultivation. Field survey showed that Chinese brake had large accumulating capacity to arsenic ; the orders of arsenic content in different parts of the fern were as follows: leaves>leafstalks>roots, which is totally different from that of ordinary plants; bioaccamulation coefficients of the above ground parts of the fern decreased as a power function of soil arsenic contents. In the control of pot trials with normal unpolluted soil containing 9 mg/kg of arsenic, the bioaccumulation coefficients of the above ground parts and rhizoids of Chinese brake were as high as 71 and 80 respectively. Greenhouse cultivatio...
An incubation experiment was carried out to better understand the fate of As during the decompositio...
An incubation experiment was carried out to better understand the fate of As during the decompositio...
Arsenic (As) contaminated soils and waters are becoming major global environmental and human health ...
In an area near an arsenic mine in Hunan Province of south China, soils were often found with elevat...
In an area near an arsenic mine in Hunan Province of south China, soils were often found with elevat...
4Pteris vittata may effectively reduce arsenite in its fronds. This study examined the roles of arse...
The discovery of the arsenic hyperaccumulator, Pteris vittata (Chinese brake fern), has contributed ...
The metalloid arsenic is a toxic environmental pollutant. Arsenic pollution becomes serious due to m...
Abstract. A greenhouse study was conducted to evaluate and compare arsenic accumulation from four ar...
The objective of this study reported here was to characterize arsenic (As) accumulation by Pteris fe...
Pteris vittata, the first reported arsenic hyperaccumulating plant, is potentially used in phytoreme...
Pteris vittata, the first reported arsenic hyperaccumulating plant, is potentially used in phytoreme...
Arsenic (As) contamination poses a high risk to human health. Phytoremediation based on As hyperaccu...
A field study was conducted to determine the efficiency of Chinese brake fern (Pteris vittata L.), a...
A brake fern, Pteris vittata L. has been demonstrated to absorb heavy metals, especially arsenic (As...
An incubation experiment was carried out to better understand the fate of As during the decompositio...
An incubation experiment was carried out to better understand the fate of As during the decompositio...
Arsenic (As) contaminated soils and waters are becoming major global environmental and human health ...
In an area near an arsenic mine in Hunan Province of south China, soils were often found with elevat...
In an area near an arsenic mine in Hunan Province of south China, soils were often found with elevat...
4Pteris vittata may effectively reduce arsenite in its fronds. This study examined the roles of arse...
The discovery of the arsenic hyperaccumulator, Pteris vittata (Chinese brake fern), has contributed ...
The metalloid arsenic is a toxic environmental pollutant. Arsenic pollution becomes serious due to m...
Abstract. A greenhouse study was conducted to evaluate and compare arsenic accumulation from four ar...
The objective of this study reported here was to characterize arsenic (As) accumulation by Pteris fe...
Pteris vittata, the first reported arsenic hyperaccumulating plant, is potentially used in phytoreme...
Pteris vittata, the first reported arsenic hyperaccumulating plant, is potentially used in phytoreme...
Arsenic (As) contamination poses a high risk to human health. Phytoremediation based on As hyperaccu...
A field study was conducted to determine the efficiency of Chinese brake fern (Pteris vittata L.), a...
A brake fern, Pteris vittata L. has been demonstrated to absorb heavy metals, especially arsenic (As...
An incubation experiment was carried out to better understand the fate of As during the decompositio...
An incubation experiment was carried out to better understand the fate of As during the decompositio...
Arsenic (As) contaminated soils and waters are becoming major global environmental and human health ...