Register      Login
Environmental Chemistry Environmental Chemistry Society
Environmental problems - Chemical approaches

Articles citing this paper

Distribution of arsenic species in an open seagrass ecosystem: relationship to trophic groups, habitats and feeding zones

A. Price A B , W. Maher A E , J. Kirby A C , F. Krikowa A , E. Duncan A , A. Taylor A and J. Potts A D
+ Author Affiliations
- Author Affiliations

A Ecochemistry Laboratory, Institute for Applied Ecology, Faculty of Applied Science, University of Canberra, ACT 2601, Australia.

B Murray–Darling Freshwater Centre, PO Box 991, Wodonga, VIC 3685, Australia.

C CSIRO Land and Water, PMB2 Glen Osmond, SA 5064, Australia.

D Coastal Water Science Unit, NSW Office of Environment and Heritage, Department of Premier and Cabinet, 59–61 Goulburn Street, Sydney, NSW 2000, Australia.

E Corresponding author. Email: bill.maher@canberra.edu.au

Environmental Chemistry 9(1) 77-88 https://doi.org/10.1071/EN11105
Submitted: 1 August 2011  Accepted: 11 October 2011   Published: 10 January 2012



25 articles found in Crossref database.

The potential of arsenic biomagnification in marine ecosystems: A systematic investigation in Daya Bay in China
Du Sen, Zhou Yanyan, Zhang Li
Science of The Total Environment. 2021 773 p.145068
Process study of biogeochemical cycling of dissolved inorganic arsenic during spring phytoplankton bloom, southern Yellow Sea
Li Lei, Ren Jing-Ling, Cao Xiu-Hong, Liu Su-Mei, Hao Qiang, Zhou Feng, Zhang Jing
Science of The Total Environment. 2017 593-594 p.430
Measurement of arsenic species in environmental, biological fluids and food samples by HPLC-ICPMS and HPLC-HG-AFS
Maher W. A., Ellwood M. J., Krikowa F., Raber G., Foster S.
Journal of Analytical Atomic Spectrometry. 2015 30(10). p.2129
The formation and fate of organoarsenic species in marine ecosystems: do existing experimental approaches appropriately simulate ecosystem complexity?
Duncan Elliott G., Maher William A., Foster Simon D.
Environmental Chemistry. 2015 12(2). p.149
Factors influencing arsenic concentrations and species in mangrove surface sediments from south-east NSW, Australia
Hettiarachchi S. R., Maher W. A., Krikowa F., Ubrihien R.
Environmental Geochemistry and Health. 2017 39(1). p.209
Arsenic Toxicity Remediation (2024)
Okpashi Victor Eshu
Contribution of Arsenic Species in Unicellular Algae to the Cycling of Arsenic in Marine Ecosystems
Duncan Elliott G., Maher William A., Foster Simon D.
Environmental Science & Technology. 2015 49(1). p.33
Characterization of Arsenic Biotransformation Products from an Open Anaerobic Degradation of Fucus distichus by Hydride Generation Gas Chromatography Atomic Absorption Spectrometry and High Performance Liquid Chromatography Inductively Coupled Plasma Mass Spectrometry
Ojo Abiodun A., Onasanya Amos
ISRN Spectroscopy. 2013 2013 p.1
Bioaccumulation and biotransformation of inorganic arsenic in zhikong scallop (Chlamys farreri) after waterborne exposure
Zhao Yanfang, Kang Xuming, Ding Haiyan, Ning Jinsong, Zhai Yuxiu, Sheng Xiaofeng
Chemosphere. 2021 277 p.130270
The use of zirconium stationary phase to determine the four major arsenoriboses concentrations in marine organisms by high-performance liquid chromatography coupled to inductively coupled plasma–mass spectrometry
Alkasasbeh Eman, Maher William A., Adly Frady G., Foster Simon, Krikowa Frank
Microchemical Journal. 2019 150 p.104099
Major, trace, and rare-earth elements in the zooplankton of the Laptev Sea in relation to community composition
Lobus Nikolay V., Arashkevich Elena G., Flerova Ekaterina A.
Environmental Science and Pollution Research. 2019 26(22). p.23044
Community structure and dietary pathways for invertebrates on intertidal coral reef flats
Davis Jean P., Pitt Kylie A., Connolly Rod M., Fry Brian
Food Webs. 2015 3 p.7
Arsenic biokinetics and bioavailability in deposit-feeding clams and polychaetes
Zhang Wei, Wang Wen-Xiong
Science of The Total Environment. 2018 616-617 p.594
Atomic spectrometry update. Elemental speciation review
Clough Robert, Harrington Chris F., Hill Steve J., Madrid Yolanda, Tyson Julian F.
Journal of Analytical Atomic Spectrometry. 2013 28(8). p.1153
Bioaccumulation of Arsenic Species in Rays from the Northern Adriatic Sea
Šlejkovec Zdenka, Stajnko Anja, Falnoga Ingrid, Lipej Lovrenc, Mazej Darja, Horvat Milena, Faganeli Jadran
International Journal of Molecular Sciences. 2014 15(12). p.22073
A benthic bioindicator reveals distinct land and ocean–Based influences in an urbanized coastal embayment
Munroe Samantha E. M., Coates-Marnane Jack, Burford Michele A., Fry Brian, Chapman Maura (Gee) Geraldine
PLOS ONE. 2018 13(10). p.e0205408
Arsenic speciation analysis of environmental samples
Ardini Francisco, Dan Greta, Grotti Marco
Journal of Analytical Atomic Spectrometry. 2020 35(2). p.215
Comparison of Bioavailability and Biotransformation of Inorganic and Organic Arsenic to Two Marine Fish
Zhang Wei, Wang Wen-Xiong, Zhang Li
Environmental Science & Technology. 2016 50(5). p.2413
Closed Anaerobic Biotransformation Products of Organoarsenic Compounds inFucus distichus
Ojo Abiodun A., Onasanya Amos
ISRN Environmental Chemistry. 2013 2013 p.1
Element-specific behaviour and sediment properties modulate transfer and bioaccumulation of trace elements in a highly-contaminated area (Augusta Bay, Central Mediterranean Sea)
Signa Geraldina, Mazzola Antonio, Di Leonardo Rossella, Vizzini Salvatrice
Chemosphere. 2017 187 p.230
The high diversity of arsenolipids in herring fillet (Clupea harengus)
Lischka S., Arroyo-Abad U., Mattusch J., Kühn A., Piechotta Ch.
Talanta. 2013 110 p.144
Is arsenic biotransformation a detoxification mechanism for microorganisms?
Rahman M. Azizur, Hassler Christel
Aquatic Toxicology. 2014 146 p.212
Ecological factors affecting the accumulation and speciation of arsenic in twelve Australian coastal bivalve molluscs
Maher William, Waring Joel, Krikowa Frank, Duncan Elliott, Foster Simon
Environmental Chemistry. 2018 15(2). p.46
Physiologically based pharmacokinetic model revealed the distinct bio-transportation and turnover of arsenobetaine and arsenate in marine fish
Xiong Haiyan, Tan Qiao-Guo, Zhang Jichao, Wang Wen-Xiong, Yuan Xiangzhou, Zhang Wei, Yan Bing
Aquatic Toxicology. 2021 240 p.105991
Freshwater phytoplankton: biotransformation of inorganic arsenic to methylarsenic and organoarsenic
Hasegawa Hiroshi, Papry Rimana Islam, Ikeda Eri, Omori Yoshiki, Mashio Asami S., Maki Teruya, Rahman M. Azizur
Scientific Reports. 2019 9(1).

Committee on Publication Ethics


Abstract Supplementary MaterialSupplementary Material (158 KB) Export Citation Get Permission