Particulate Formation

Definition – Smoke/Soot/Carbonaceous EmissionsCarbonaceous materials emitting from the exhaust of gas turbine engines are frequently referred to as soot emissions, nonvolatile particulates, or smoke. Frequently, these terms are used interchangeably. Such emissions typically consist of single particl...

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Published inGas Turbine Emissions Vol. Series Number 38; pp. 123 - 153
Main Author Colket, Meredith B.
Format Book Chapter
LanguageEnglish
Published United States Cambridge University Press 2013
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Abstract Definition – Smoke/Soot/Carbonaceous EmissionsCarbonaceous materials emitting from the exhaust of gas turbine engines are frequently referred to as soot emissions, nonvolatile particulates, or smoke. Frequently, these terms are used interchangeably. Such emissions typically consist of single particles ranging from 10–80 nanometers that may agglomerate into a complex fractal chain structure with much larger dimensions. A series of photomicrographs from transmission electron microscope (TEM) analysis at different levels of magnification for a combustor operating at 80 percent power is shown in Figure 5.1. These carbonaceous soot particles should be contrasted with volatile particulates (see Chapter 6), although volatiles may condense onto soot particles. In particular, soot particles can act as carriers of condensed polycyclic aromatic hydrocarbons (PAHs), some of which are carcinogens. Additional discussion of these subjects can be found in this chapter and in Chapter 6 of this book. Recent results indicate that the morphology of these soot particles may change with power levels and even fuel makeup (Anderson et al., 2011).
AbstractList Definition – Smoke/Soot/Carbonaceous EmissionsCarbonaceous materials emitting from the exhaust of gas turbine engines are frequently referred to as soot emissions, nonvolatile particulates, or smoke. Frequently, these terms are used interchangeably. Such emissions typically consist of single particles ranging from 10–80 nanometers that may agglomerate into a complex fractal chain structure with much larger dimensions. A series of photomicrographs from transmission electron microscope (TEM) analysis at different levels of magnification for a combustor operating at 80 percent power is shown in Figure 5.1. These carbonaceous soot particles should be contrasted with volatile particulates (see Chapter 6), although volatiles may condense onto soot particles. In particular, soot particles can act as carriers of condensed polycyclic aromatic hydrocarbons (PAHs), some of which are carcinogens. Additional discussion of these subjects can be found in this chapter and in Chapter 6 of this book. Recent results indicate that the morphology of these soot particles may change with power levels and even fuel makeup (Anderson et al., 2011).
Definition – Smoke/Soot/Carbonaceous EmissionsCarbonaceous materials emitting from the exhaust of gas turbine engines are frequently referred to as soot emissions, nonvolatile particulates, or smoke. Frequently, these terms are used interchangeably. Such emissions typically consist of single particles ranging from 10–80 nanometers that may agglomerate into a complex fractal chain structure with much larger dimensions. A series of photomicrographs from transmission electron microscope (TEM) analysis at different levels of magnification for a combustor operating at 80 percent power is shown in Figure 5.1. These carbonaceous soot particles should be contrasted with volatile particulates (see Chapter 6), although volatiles may condense onto soot particles. In particular, soot particles can act as carriers of condensed polycyclic aromatic hydrocarbons (PAHs), some of which are carcinogens. Additional discussion of these subjects can be found in this chapter and in Chapter 6 of this book. Recent results indicate that the morphology of these soot particles may change with power levels and even fuel makeup (Anderson et al., 2011).
Author Colket, Meredith B.
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Snippet Definition – Smoke/Soot/Carbonaceous EmissionsCarbonaceous materials emitting from the exhaust of gas turbine engines are frequently referred to as soot...
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SubjectTerms Aerospace & aviation technology
Aerospace & Radar Technology
ENERGY TECHNOLOGY & ENGINEERING
Fluid mechanics
Propulsion, Stability & Control
TableOfContents 5.1 Introduction 5.2 Fundamentals of Particulate Formation and Oxidation 5.3 Inception 5.4 Surface Growth 5.5 Soot Oxidation 5.6 Coalescence and Agglomeration 5.7 Related Phenomena 5.8 Particulate Formation in Combustion Systems Acknowledgments References
Title Particulate Formation
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