نتایج جستجو برای: pteris vittata

تعداد نتایج: 572  

Journal: :Environmental science & technology 2004
Jianwei W Huang Charissa Y Poynton Leon V Kochian Mark P Elless

Arsenic contamination of drinking water poses serious health risks to millions of people worldwide. Current technologies used to clean arsenic-contaminated water have significant drawbacks, such as high cost and generation of large volumes of toxic waste. In this study, we investigated the potential of using recently identified arsenic-hyperaccumulating ferns to remove arsenic from drinking wat...

Journal: :Bioresource technology 2010
Shiny Mathews Lena Q Ma Bala Rathinasabapathi Seenivasan Natarajan Uttam K Saha

This study determined the role of plant and microbes in arsenite (AsIII) oxidation in the growth media and the location of AsIII oxidation and arsenate (AsV) reduction in Pteris vittata tissues. P. vittata grew in 0.10-0.27mM AsV or AsIII solution under aerated or sterile condition for 1h to 14d. Arsenic speciation was conducted in the growth media, biomass (roots, rhizomes, rachis, pinnae, and...

Journal: :Environmental science & technology 2008
Xiu-Lan Yan Tong-Bin Chen Xiao-Yong Liao Ze-Chun Huang Jia-Rong Pan Tian-Dou Hu Can-Jun Nie Hua Xie

Safe incineration of harvested hyperaccumulators containing high content of heavy metals to avoid secondary environmental pollution is a problem for popularizing phytoremediation technology. The As volatilization behavior and its mechanism during incineration of Pteris vittata, an As-hyperaccumulator, was investigated. Incineration results reveal that 24% of total As accumulated by P. vittata (...

Journal: :Chemosphere 2016
Yanshan Chen Jing-Wei Fu Yong-He Han Bala Rathinasabapathi Lena Q Ma

Arsenite (AsIII) efflux is an important mechanism for arsenic (As) detoxification in plants. Low AsIII efflux has been observed in As-hyperaccumulator Pteris vittata, which may contribute to its highly efficient As translocation and accumulation; however, the results may be compromised by microbial AsIII oxidation, relatively low As concentration in the medium and short-term As exposure. Here, ...

Journal: :Chemosphere 2006
Chao-Yang Wei Tong-Bin Chen

In an area near an arsenic mine in Hunan Province of south China, soils were often found with elevated arsenic levels. A field survey was conducted to determine arsenic accumulation in 8 Cretan brake ferns (Pteris cretica) and 16 Chinese brake ferns (Pteris vittata) growing on these soils. Three factors were evaluated: arsenic concentration in above ground parts (fronds), arsenic bioaccumulatio...

Journal: :Bioresource technology 2011
Piyasa Ghosh Bala Rathinasabapathi Lena Q Ma

The role of arsenic-resistant bacteria (ARB) in arsenic solubilization from growth media and growth enhancement of arsenic-hyperaccumulator Pteris vittata L. was examined. Seven ARB (tolerant to 10 mM arsenate) were isolated from the P. vittata rhizosphere and identified by 16S rRNA sequencing as Pseudomonas sp., Comamonas sp. and Stenotrophomonas sp. During 7-d hydroponic experiments, these ba...

Journal: :International journal of phytoremediation 2012
Q Yang S Tu G Wang X Liao X Yan

Arsenic is a common contaminant in soils and water. It is well established that the fern Pteris vittata L. is an As hyperaccumulator and therefore has potential to phyroremediate As-polluted soils. Also, it is accepted that rhizosphere microflora play an enhancing role in plant uptake of metallic elements from soils. Studies showed that hydroponiclly grown P. Vittata accumulated arsenite more t...

Journal: :Journal of environmental sciences 2008
Xiyuan Xiao Tongbin Chen Zhizhuang An Mei Lei Zechun Huang Xiaoyong Liao Yingru Liu

Field investigation and greenhouse experiments were conducted to study the tolerance of Pteris vittata L. (Chinese brake) to cadmium (Cd) and its feasibility for remediating sites co-contaminated with Cd and arsenic (As). The results showed that P. vittata could survive in pot soils spiked with 80 mg/kg of Cd and tolerated as great as 301 mg/kg of total Cd and 26.8 mg/kg of diethyltriaminepenta...

Journal: :Environmental pollution 2008
Maria I S Gonzaga Jorge A G Santos Lena Q Ma

This greenhouse experiment evaluated arsenic removal by Pteris vittata and its effects on arsenic redistribution in soils. P. vittata grew in six arsenic-contaminated soils and its fronds were harvested and analyzed for arsenic in October, 2003, April, 2004, and October, 2004. The soil arsenic was separated into five fractions via sequential extraction. The ferns grew well and took up arsenic f...

Journal: :Chemosphere 2017
Yong-He Han Meng-Ru Jia Xue Liu Ying Zhu Yue Cao Deng-Long Chen Yanshan Chen Lena Q Ma

Arsenic (As)-resistant bacteria are abundant in the rhizosphere and tissues of As-hyperaccumulator Pteris vittata. However, little is known about their roles in As transformation and As uptake in P. vittata. In this study, the impacts of P. vittata tissue extracts with or without surface sterilization on As transformation in solutions containing 100 μg L-1 AsIII or AsV were investigated. After ...

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