期刊
CHEMOSPHERE
卷 135, 期 -, 页码 304-311出版社
PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2015.04.071
关键词
Soil pollution; Engineered silver nanoparticles; Geochemical reactivity; In vitro bioaccessibility; Bioavailability
资金
- European Funds through COMPETE
- National Funds through Portuguese Science Foundation (FCT) [PEst-C/MAR/LA0017/2013]
- FCT [IF/01637/2013/C P1162/CT0020]
- Programa Operacional Factores de Competitividade - COMPETE [FCOMP-01-01 24-FEDER-02800 (FCT PTDC/AGR-PRO/4091/2012)]
- Fundação para a Ciência e a Tecnologia [PTDC/AGR-PRO/4091/2012] Funding Source: FCT
To assess if the geochemical reactivity and human bioaccessibility of silver nanoparticles (AgNPs) in soils can be determined by routine soil tests commonly applied to other metals in soil, colloidal Ag was introduced to five pots containing urban soils (equivalent to 6.8 mg Ag kg(-1) soil). Following a 45 days stabilization period, the geochemical reactivity was determined by extraction using 0.43 M and 2 M HNO3. The bioaccessibility of AgNPs was evaluated using the Simplified Bioaccessibility Extraction Test (SBET) the Unified BARGE Method (UBM), and two simulated lung fluids (modified Gamble's solution (MGS) and artificial lysosomal fluid (ALF)). The amount of Ag extracted by 0.43 M and 2 M HNO3 soil tests was <8% and <50%, respectively of the total amount of Ag added to soils suggesting that the reactivity of Ag present in the soil can be relatively low. The bioaccessibility of Ag as determined by the four in vitro tests ranged from 17% (ALF extraction) to 99% (SBET) indicating that almost all Ag can be released from soil due to specific interactions with the organic ligands present in the simulated body fluids. This study shows that to develop sound soil risk evaluations regarding soil contamination with AgNPs, aspects of Ag biochemistry need to be considered, particularly when linking commonly applied soil tests to human risk assessment. (C) 2015 Elsevier Ltd. All rights reserved.
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