The relation between the optical properties, namely the mass absorption coefficient, and the H/C ratio of soot was studied as tool for following the structural transformation of solid carbon (soot) fo rmed in premixed sooting ethylene flames. The aliphatic and aromatic hydroge n and the mass absorption coefficient of soot were quantified by FT-IR and UV -Visible spectroscopic analysis, respectively. The steep increase of the a bsorption coefficient and maximum soot formation rate was observed in corresp ondence of the aliphatic hydrogen loss. The higher reactivity of aliphatic h ydrogen in forming radical active sites on soot particle surface was suggested to be responsible for the increase of soot concentration. The loss of aliphatic hydrogen and the corresponding steep increase of absorption coefficient testified the oc currence of thermal annealing and internal structural transformations in turn causing the termination of soot formation and growth.

Measurements of hydrogen content and visible specific absorption of soot to follow the structura l transformation of carbon network

CRusso;F Stanzione;A Tregrossi;A Ciajolo
2013

Abstract

The relation between the optical properties, namely the mass absorption coefficient, and the H/C ratio of soot was studied as tool for following the structural transformation of solid carbon (soot) fo rmed in premixed sooting ethylene flames. The aliphatic and aromatic hydroge n and the mass absorption coefficient of soot were quantified by FT-IR and UV -Visible spectroscopic analysis, respectively. The steep increase of the a bsorption coefficient and maximum soot formation rate was observed in corresp ondence of the aliphatic hydrogen loss. The higher reactivity of aliphatic h ydrogen in forming radical active sites on soot particle surface was suggested to be responsible for the increase of soot concentration. The loss of aliphatic hydrogen and the corresponding steep increase of absorption coefficient testified the oc currence of thermal annealing and internal structural transformations in turn causing the termination of soot formation and growth.
2013
Istituto di Ricerche sulla Combustione - IRC - Sede Napoli
Inglese
XXXVI Meeting of the Italian Section of The Combustion Institute
XXXVI Meeting of the Italian Section of The Combustion Institute
54
978-88-88104-15-7
http://www.combustion-institute.it/proceedings/XXXVI-ASICI/papers/36proci2013.VI10.pdf
No
13-15 June, 2013
Isola di Procida
4
none
C.Russo; F. Stanzione; A. Tregrossi; A. Ciajolo
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/124146
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