JOURNAL OF CHEMICAL ENGINEERING OF JAPAN
Online ISSN : 1881-1299
Print ISSN : 0021-9592
Thermal Engineering
Near-Infrared Radiation and Scattering Properties of Coal Fly Ash Particles Cloud
Yoshinori ItayaNaomi NishioShigenobu HatanoNobusuke KobayashiJun KobayashiShigekatsu Mori
Author information
JOURNAL RESTRICTED ACCESS

2006 Volume 39 Issue 7 Pages 718-723

Details
Abstract
Radiation in near infrared region dominates the heat transfer in high temperature processes including particle dispersion such as coal gasification and pulverized coal combustion. The thermal radiation properties in near-infrared region of 0.8–2.2 μm were studied for a cloud of coal ash particles. The monochromatic absorption as well as the directional behavior of scattering for the sample particles dispersed in liquid paraffin wax were measured spectroscopically at an atmospheric state by using FT-IR. The effect of the particles number density in the cloud and the thickness of the dispersion layer on the spectrum of absorption could be expressed in the property of the extinction efficiency. The spectral distribution of the extinction efficiency is dependent of wavelength in the near-infrared region. The contribution of scattering by ash particles can be ignored, or the forward scattering dominates the particle scattering in the radiative heat transfer in the cloud.
Content from these authors
© 2006 The Society of Chemical Engineers, Japan
Previous article Next article
feedback
Top