ISSN 2457-9459 (Online)
ISSN-L 0576-9787 (Print)
 2023
|
Journal Citation Reports |
Impact factor 2023: 1.3
5-Year Impact Factor: 1.2
Article Influence® Score: 0.140
Ranked 9 out of 23
MATERIALS SCIENCE, PAPER & WOOD (Q2) |
|
|
Scopus |
CiteScore 2023: 2.3
SNIP: 0.405 |
|
|
SCImago |
SJR: 0.264
H-Index: 42
Ranked Q3 |
|
|
|
|
Title
Quick non-destructive analysis of lignin condensation and precipitation by FTIR
Authors
JUHA FISKARI OLGA DERKACHEVA TUOMAS KULOMAA and DMITRI SUKHOV
Received
February 19, 2015
Published
Volume 50 Issue 2 February
Keywords
conventional batch cooking, Eucalyptus camaldulensis, lignin condensation, lignin precipitation, FTIR
spectroscopy
Abstract
Kraft mills with conventional batch cooking systems sometimes encounter problems related to lignin condensation and
its subsequent precipitation. Precipitated lignin increases bleaching chemical consumption and has an adverse effect on
pulp quality. Pulp mills must address this issue by improving their digester operation, but it is also important to rapidly
analyze and quantify the condensed lignin in brownstock pulp. This paper introduces and discusses a quick method
based on Fourier transform infrared (FTIR) spectroscopy to study lignin condensation and precipitation from
brownstock pulp. The samples represented two different cooking results of Eucalyptus camaldulensis as feedstock: no
lignin precipitation on fibers, and apparent condensed approximately lignin precipitation on fibers. The infrared spectra
revealed that the sample with condensed lignin had four times more lignin on the fiber surface than the sample without
lignin precipitation. Scanning electron microscopy (SEM) images of the fiber surfaces confirmed the lignin
precipitation on the fibers. This study therefore proved that the extent of condensed lignin precipitation can be
successfully measured using FTIR spectroscopy.
Link
|
|
|