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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
Enzymatically hydrolyzed and agitated biomass suspensions: experimental determination of fiber size distributions and filtration characteristics
Authors
TEEMU KINNARINEN TUOMAS KOIRANEN ANTTI HAKKINEN and MARJATTA LOUHI-KULTANEN

Received August 17, 2013
Published Volume 48 Issue 3-4 March-April
Keywords enzymatic hydrolysis,fiber size, particle size, mixing, agitation, filtration

Abstract
Separation processes in general present a significant challenge in the production of bioethanol from lignocellulosic materials. Solid-liquid separation,prior to the concentration of ethanol (for instance, by distillation),is often essential and upstream process conditions may determine how effectively this separation can be performed.In this experimental study, the properties of a lignocellulosic solid residue, generated through the enzymatic hydrolysis of biomass,and solid-liquid separations after the hydrolysis stagewere studied, focusing on the fiber and particle size distribution(FSD and PSD) of the solids.During the course of enzymatic hydrolysis, fiber and particle size distributions of the biomassduring and after enzymatic hydrolysis were measured using a fiber tester and a laser diffraction analyzer, respectively,in order to quantify the effect of enzymatic saccharification on the size distribution of the suspended solids.The main target, however, was to investigate the filtration properties of hydrolyzed and agitated suspensions using a pressure filter. The particle size distributions of the filtered samples were measured with the laser diffraction analyzer. Even though the filtration properties were strongly influenced by agitation, the effect on particle size distributions was found to be much smaller. During enzymatic hydrolysis, the most significant reduction in the size of the solidstook place rapidly after the cellulase addition. The width of the fibers was not observed to decrease during the hydrolysis stage.


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