Influence of size and aggregation on the reactivity of an environmentally and industrially relevant nanomaterial (PbS)

Liu, J; Aruguete, DM; Murayama, M; Hochella, MF, Jr

HERO ID

175695

Reference Type

Journal Article

Year

2009

Language

English

PMID

19924941

HERO ID 175695
In Press No
Year 2009
Title Influence of size and aggregation on the reactivity of an environmentally and industrially relevant nanomaterial (PbS)
Authors Liu, J; Aruguete, DM; Murayama, M; Hochella, MF, Jr
Journal Environmental Science & Technology
Volume 43
Issue 21
Page Numbers 8178-8183
Abstract Rarely observed nanoparticle dissolution rate data have been collected and explained for an environmentally and industrially relevant nanomaterial (PbS, the mineral galena) as a function of its particle size and aggregation state using high-resolution transmission electron microscopy (HRTEM) and solution analysis. Under identical anoxic acidic conditions (pH 3 HCl), it has been determined that the dissolution rate of PbS galena varies by at least 1 order of magnitude simply as a function of particle size, and also due to the aggregation state of the particles (dissolution rates measured are 4.4 x 10(-9) mol m(-2) s(-1) for dispersed 14 nm nanocrystals; 7.7 x 10(-10) mol m(-2) s(-1) for dispersed 3.1 microm microcrystals; and 4.7 x 10(-10) mol m(-2) s(-1) for aggregated 14 nm nanocrystals). The dissolution rate difference between galena microparticles and nanoparticles is due to differences in nanotopography and the crystallographic faces present. Aggregate vs. dispersed dissolution rates are related to transport inhibition in the observed highly confined spaces between densely packed, aggregated nanocrystals, where self-diffusion coefficients of water and ions decrease dramatically. This study shows that factors at the nanometer scale significantly influence the release rate of aqueous, highly toxic and bioavailable Pb in natural or industrial environments during galena dissolution.
Doi 10.1021/es902121r
Pmid 19924941
Is Certified Translation No
Dupe Override No
Is Public Yes
Language Text English
Keyword Environmental Pollutants/ chemistry; Hydrogen-Ion Concentration; Industry; Lead/analysis/chemistry; Nanoparticles/chemistry/ultrastructure; Nanostructures/ chemistry/ultrastructure; Particle Size; Sulfides/analysis/chemistry; Temperature; Time Factors
Is Qa No
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