Identification of tropical wood species in paper: a new chemotaxonomic method based on extractives

Author:

Flaig Max L.1,Berger Jens1,Wenig Philip2,Olbrich Andrea3,Saake Bodo1

Affiliation:

1. Institute of Wood Science, Chemical Wood Technology , University of Hamburg , Haidkrugsweg 1, 22885 Barsbüttel-Willinghusen , Germany

2. Lablicate GmbH , Martin-Luther-King-Platz 6, 20146 Hamburg , Germany

3. Johann Heinrich von Thünen Institute (TI) , Institute of Wood Research , Leuschnerstraße 91, 21031 Hamburg , Germany

Abstract

Abstract The European Deforestation Regulation 2023/1115 (EUDR) prohibits trading of wood and wood products obtained from illegal logging on the EU market. While the identification of solid wood via anatomy, chemistry and genetics has already been established, there is a lack of identification methods for pulp and paper that complement anatomy. This publication presents a newly developed chemotaxonomic method for identifying mixed tropical hardwood (MTH) species in pulp and paper products based on their extractives analyzed with thermal desorption-gas chromatography-mass spectrometry (TD-GC-MS). The measured data was processed and compared to identify marker substances and was then merged into a fingerprint database for identifying MTH species in paper of unknown composition. As database references, fully bleached kraft pulps were produced from 38 anatomically identified wood samples and then cryo-ball milled and extracted successively with n-hexane and acetone. The results show that the remaining wood extractives generated from bleached pulps are specific enough to find chemical relevant marker substances to detect MTH species. As chemical composition and anatomy are independent characteristics of wood, this paper makes a completely independent method available, which potentially improves the screening for Convention on International Trade in Endangered Species of Wild Fauna and Flora (CITES) protected species.

Funder

Deutsche Bundesstiftung Umwelt

Publisher

Walter de Gruyter GmbH

Subject

Biomaterials

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