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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
Chemi-mechanical pulp from rapeseed straw
Authors
FRANTISEK POTUCEK MARTINA RIHOVA and BIJAY GURUNG

Published Volume 50 Issue 3-4 March-April
Keywords rapeseed straw, cold pulping process, pulp yield, bending stiffness, degree of polymerization

Abstract
This study deals with chemi-mechanical pulping of rapeseed straw (species Brassica napus L. convar. napus). Three cold chemi-mechanical processes, namely neutral sulphite, alkaline sulphite, and caustic soda, were applied under laboratory conditions. The chemi-mechanical pulping comprises four main operations, viz. chipping, grinding, leaching, and beating. The influence of varying charges of chemicals on the total yield, strength properties, such as bending stiffness, bending modulus of elasticity, curvature in the region of elastic and plastic deformation, as well as the tensile index of pulp handsheets, was determined. The results obtained revealed that the cold caustic soda pulping has a greater effect on the bending stiffness and bending modulus of chemi-mechanical pulps in comparison with neutral sulphite and alkaline sulphite pulping, although the total pulp yield for caustic soda pulping was lower than that for neutral sulphite and alkaline sulphite pulping. For all three cold processes, the bending stiffness, as well as the bending modulus of elasticity in the region of elastic deformation increased with increasing the chemical charge. However, the tensile index of chemi-mechanical pulps was found to be significantly lower in comparison with kraft softwood pulp and pulp from waste paper. The chemi-mechanical pulp was characterized by its degree of polymerization, which was measured in the range of 75 to 110, with respect to the relatively great amount of low molecular substances present in the pulps prepared by the cold pulping process.


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