EventsThe 2nd International Electronic Conference on Forests — Sustainable Forests: Ecology, Management, Products and Trade
Published
This submission belongs to the session S5. Wood Science, Forest Products and Trade of the event The 2nd International Electronic Conference on Forests — Sustainable Forests: Ecology, Management, Products and Trade
Published date
31 Aug, 2021
Academic Editor
author-avatarMiha Humar
Citation
Pieter Samyn, Fractionation and homogenization of recuperated wood pulp fibers from Brazilian paper and pulp industry, in Proceedings of The 2nd International Electronic Conference on Forests — Sustainable Forests: Ecology, Management, Products and Trade, 1 September–15 September 2021, MDPI: Basel, Switzerland, doi: 10.3390/IECF2021-10793
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Fractionation and homogenization of recuperated wood pulp fibers from Brazilian paper and pulp industry

1. SIRRIS - Smart Coatings Lab, Belgium
Abstract

With a projected growth of the Brazilian pulp and paper industry of about 20 % over the period 2020-2025, the innovations in waste management and reutilization of side-products origination from the pulp- and paper industry may mostly contribute to a sustainable development of forest-based products by implementing the recuperation and innovative processing of side-stream products at a local level. In this study, we analyse the feasibility for the reuse of recovered cellulosic fiber fractions collected from different pulp and paper mills by considering some practical issues and evaluation of the quality for different side-stream fractions originating from rejects, deinking sludge, primary sludge and secondary sludge. The situation for the Brazilian pulp and paper industry will be used as a model, for which the potential for recovery of fibers from waste waters will be evaluated from the analysis of available data including . First, the water consumption and effluents from paper mills are reviewed together with an estimation of the fiber recovery potential from primary sludge and fine fiber rejects. Second, the specific characteristics and appearance of certain fiber fractions might imply constraints on their further processing properties. Therefore, we describe some insights in the fiber fractions that could provide highest potential for future valorization. Based on the degree of compositional homogeneity and concentration of cellulose fibers in several waste fractions, the processing of fibers from primary sludge and/or fine fiber rejects are estimated as the most economically feasible. The homogenization of the fiber fractions yield fibrillated cellulose materials with various morphologies depending on the selection of recuperated fractions. Through thorough characterization of the resulting fiber fraction, new application markets can be selected.

Keywords
Pulp and paper
sustainability
side-stream valorization
Manuscript
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