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  5. Pathways and Relative Contributions to Arsenic Volatilization from Rice Plants and Paddy Soil

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Article
English
2012

Pathways and Relative Contributions to Arsenic Volatilization from Rice Plants and Paddy Soil

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English
2012
Environmental Science & Technology
Vol 46 (15)
DOI: 10.1021/es300499a

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Fang-jie Zhao
Fang-jie Zhao

Nanjing Agricultural University

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Yan Jia
Hai Huang
Guo‐Xin Sun
+2 more

Abstract

Recent studies have shown that higher plants are unable to methylate arsenic (As), but it is not known whether methylated As species taken up by plants can be volatilized. Rice (Oryza sativa L.) plants were grown axenically or in a nonsterile soil using a two-chamber system. Arsenic transformation and volatilization were investigated. In the axenic system, uptake of As species into rice roots was in the order of arsenate (As(V)) > monomethylarsonic acid (MMAs(V)) > dimethylarsinic acid (DMAs(V)) > trimethylarsine oxide (TMAs(V)O), but the order of the root-to-shoot transport index (Ti) was reverse. Also, volatilization of trimethylarsine (TMAs) from rice plants was detected when plants were treated with TMAs(V)O but not with As(V), DMAs(V), or MMAs(V). In the soil culture, As was volatilized mainly from the soil. Small amounts of TMAs were also volatilized from the rice plants, which took up DMAs(V), MMAs(V), and TMAs(V)O from the soil solution. The addition of dried distillers grain (DDG) to the soil enhanced As mobilization into the soil solution, As methylation and volatilization from the soil, as well as uptake of different As species and As volatilization from the rice plants. Results show that rice is able to volatilize TMAs after the uptake of TMAs(V)O but not able to convert inorganic As, MMAs(V) or DMAs(V) into TMAs and that the extent of As volatilization from rice plants was much smaller than that from the flooded soil.

How to cite this publication

Yan Jia, Hai Huang, Guo‐Xin Sun, Fang-jie Zhao, Yong‐Guan Zhu (2012). Pathways and Relative Contributions to Arsenic Volatilization from Rice Plants and Paddy Soil. Environmental Science & Technology, 46(15), pp. 8090-8096, DOI: 10.1021/es300499a.

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Publication Details

Type

Article

Year

2012

Authors

5

Datasets

0

Total Files

0

Language

English

Journal

Environmental Science & Technology

DOI

10.1021/es300499a

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