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Uptake of Cd, Zn and Mn by willow increases during terrestrialisation of initially ponded polluted sediments

B VANDECASTEELE, P QUATAERT and Filip Tack UGent (2007) SCIENCE OF THE TOTAL ENVIRONMENT. 380(1-3). p.133-143
Please use this url to cite or link to this publication:
author
organization
year
type
journalArticle (original)
publication status
published
subject
journal title
SCIENCE OF THE TOTAL ENVIRONMENT
Sci. Total Environ.
volume
380
issue
1-3
pages
133-143 pages
Web of Science type
Article
Web of Science id
000247737700015
JCR category
ENVIRONMENTAL SCIENCES
JCR impact factor
2.182 (2007)
JCR rank
37/154 (2007)
JCR quartile
1 (2007)
ISSN
0048-9697
language
English
UGent publication?
yes
classification
A1
id
429799
handle
http://hdl.handle.net/1854/LU-429799
date created
2008-09-12 15:37:00
date last changed
2016-12-19 15:44:38
@article{429799,
  author       = {VANDECASTEELE, B and QUATAERT, P and Tack, Filip},
  issn         = {0048-9697},
  journal      = {SCIENCE OF THE TOTAL ENVIRONMENT},
  language     = {eng},
  number       = {1-3},
  pages        = {133--143},
  title        = {Uptake of Cd, Zn and Mn by willow increases during terrestrialisation of initially ponded polluted sediments},
  volume       = {380},
  year         = {2007},
}

Chicago
VANDECASTEELE, B, P QUATAERT, and Filip Tack. 2007. “Uptake of Cd, Zn and Mn by Willow Increases During Terrestrialisation of Initially Ponded Polluted Sediments.” Science of the Total Environment 380 (1-3): 133–143.
APA
VANDECASTEELE, B., QUATAERT, P., & Tack, F. (2007). Uptake of Cd, Zn and Mn by willow increases during terrestrialisation of initially ponded polluted sediments. SCIENCE OF THE TOTAL ENVIRONMENT, 380(1-3), 133–143.
Vancouver
1.
VANDECASTEELE B, QUATAERT P, Tack F. Uptake of Cd, Zn and Mn by willow increases during terrestrialisation of initially ponded polluted sediments. SCIENCE OF THE TOTAL ENVIRONMENT. 2007;380(1-3):133–43.
MLA
VANDECASTEELE, B, P QUATAERT, and Filip Tack. “Uptake of Cd, Zn and Mn by Willow Increases During Terrestrialisation of Initially Ponded Polluted Sediments.” SCIENCE OF THE TOTAL ENVIRONMENT 380.1-3 (2007): 133–143. Print.