Branchwood Properties of Two Tilia Species Collected from Natural Secondary Forests in Northeastern China

Author:

Guo Pingping1,Zhao Xiping1ORCID,Feng Qi1,Yang Yongqiang2

Affiliation:

1. College of Horticulture and Plant Protection, Henan University of Science and Technology, Luoyang 471023, China

2. Pingjiang County Forestry Bureau, Yueyang 414599, China

Abstract

Tilia amurensis Rupr. and Tilia mandshurica Rupr. and Maxim. are two essential commercial species, though there is surprisingly little concern about whether their branches can be used in the current situation of a wood shortage in China. In this study, tissue proportions and fiber morphology, physical and mechanical properties, and chemical composition of the branchwood were studied and compared with stemwood to evaluate the potential for papermaking. The branchwood and stemwood showed similar cell arrangement but different tissue proportions and fiber morphology. The branchwood had more than 40% fiber proportion, 90%–97% below 0.9 mm in length, 75%–90% less than 33 in slenderness ratio, and 80% less than 1 in Runkel ratio. The branchwood was as light and soft as stemwood with a density of 0.32–0.36 g/cm3 and a compressive strength of about 30 MPa. The branchwood had 6% water extractives, 66% holocellulose, and 22% lignin for T. amurensis, 58% holocellulose and 30% lignin for T. mandshurica. The results suggest the branchwood is favorable for mechanical chipping, has the potential to obtain high pulp yield and its fibers can be mixed with wide, long and thick fibers from other tree species to produce specific paper products. In contrast, T. mandshurica branchwood may not be suitable for chemical pulping.

Funder

the National Science Foundation of China

Publisher

MDPI AG

Subject

Forestry

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