Issue 5, 2017

Occurrence of perchlorate in groundwater, paired farmland soil, lettuce, and rhizosphere soil from Chengdu, China

Abstract

A total of 28 groundwater, paired farmland soil, lettuce, and its rhizosphere soil samples were collected from Chengdu, China to detect perchlorate levels and to evaluate the relationships of perchlorate concentrations among these matrices. The perchlorate concentrations in the groundwater, farmland soil, lettuce, and rhizosphere soil samples ranged from below detection limit to 60.2 μg L−1, from below detection limit to 249 μg kg−1 dry weight (dw), from 2.07 to 1010 μg kg−1 wet weight, and from below detection limit to 314 μg kg−1 dw, respectively. Significant correlation was found in the perchlorate levels among the farmland soil, lettuce, and rhizosphere soil, suggesting that they have common pollution sources, or perchlorate might transfer from farmland soil-rhizosphere soil-plant. However, there is no significant correlation between groundwater and the other three matrices, indicating that infiltration from perchlorate contaminated farmland soil was not the predominant source for groundwater pollution in Chengdu. The perchlorate concentrations in the farmland soil and lettuce samples were significantly higher than those in the rhizosphere soil, primarily due to uptake of perchlorate through the rhizosphere micro-environment by lettuce, or accelerated degradation by rhizospheric microorganisms, which contributed more needs further investigation.

Graphical abstract: Occurrence of perchlorate in groundwater, paired farmland soil, lettuce, and rhizosphere soil from Chengdu, China

Supplementary files

Article information

Article type
Paper
Submitted
08 Mar 2017
Accepted
06 Apr 2017
First published
07 Apr 2017

Environ. Sci.: Processes Impacts, 2017,19, 752-757

Occurrence of perchlorate in groundwater, paired farmland soil, lettuce, and rhizosphere soil from Chengdu, China

Y. Tang, B. Zhong, B. Qu, S. Feng, S. Ding, S. Su, Z. Li and Z. Gan, Environ. Sci.: Processes Impacts, 2017, 19, 752 DOI: 10.1039/C7EM00114B

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