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  4. Characterization of black carbon in geosorbents at the nanometer scale by STEM-EDX elemental mapping
 
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Characterization of black carbon in geosorbents at the nanometer scale by STEM-EDX elemental mapping

Journal
Organic Geochemistry
Journal Volume
56
Pages
81-93
Date Issued
2013
Author(s)
Kuo D.T.F
Vander Sande J.B
Gschwend P.M.
TA FU DAVE KUO  
DOI
10.1016/j.orggeochem.2012.12.012
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84873714154&doi=10.1016%2fj.orggeochem.2012.12.012&partnerID=40&md5=a9d0688dbe96a60fe6e1bc2bbe0f3c61
https://scholars.lib.ntu.edu.tw/handle/123456789/624996
Abstract
The lack of a universal method for black carbon (BC) quantification and the need to describe the intra-particle/aggregate distribution of BC in natural matrices/geosorbents prompted the search for new methods. This study explored the feasibility of using analytical electron microscopy to characterize black carbon residing in natural matrices. Soot, char, graphite and other carbonaceous samples were examined using energy dispersive X-ray (EDX) analysis in transmission electron microscopy (TEM) and scanning transmission electron microscopy (STEM). TEM-EDX analysis (point analysis) showed that char, soot and graphite all have a characteristic O/C atomic ratio of ≤ 0.1 when interrogated at the submicrometer scale, implying this BC elemental signature may be useful in identifying BC at this scale. The presence of a universal elemental signature suggested that it may be more proper to describe different condensed carbonaceous materials as having different BC contents, rather than emphasizing that there are different types of BC, each with a different bulk characteristic O/C. Subsequently, the mapping of BC in STEM-EDX (areal analysis) was demonstrated on sediment samples with varying soot content at a resolution of ~10. nm. Several standard carbonaceous materials were also examined with quantitative STEM-EDX, yielding BC content comparable with other conventional BC quantification methods. The power of STEM-EDX in revealing morphological features and distribution of various chemical components at nanometer scale was also highlighted. The analytical approach presented here will be valuable for the characterization of BC and the study of nanometer scale organic-mineral association in sediments and soils. © 2013 Elsevier Ltd.
Other Subjects
Analytical approach; Analytical electron microscopy; Atomic ratio; Black carbon; Carbonaceous materials; Chemical component; Elemental mapping; Energy dispersive x-ray; Geosorbents; Morphological features; Nano-meter scale; Natural-matrix; Quantification methods; Scanning transmission electron microscopy; Sediment samples; STEM-EDX; Submicrometer scale; TEM-EDX; Transmission electron microscopy (TEM); Universal method; Graphite; Sedimentology; Sediments; Soot; Transmission electron microscopy; Characterization; black carbon; charcoal; chemical composition; graphite; organic geochemistry; particle size; scanning electron microscopy; soot; transmission electron microscopy
Type
journal article

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