Effects of Tree Species and Wood Fiber Size in the Core Layer on the Formaldehyde Emission of Three-Layers Fiberboard

N. Ayrilmiş, Turgay Akbulut, Elif Yurttaş, R. N
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Abstract

Three-layered medium density fiberboards (MDFs) were produced using fine wood fibers in the face layers and coarse wood fibers in the core layer. The core layer were produced from pine wood fiber or beech wood fibers while the face fibers were produced pine fibers. The length of the beech fibers in the core layer increased from 4.3 mm to 28.2 mm while it increased from 4.9 to 29.1 mm for the pine fibers. The shelling ratio and panel thickness were 50/50 and 10 mm, respectively. Based on EN 120-method, the formaldehyde emission released from the MDFs were identified. The formaldehyde emission considerably declined with increasing fiber size at the same manufacturing parameters such as resin content, density, pressing parameters, and mat moisture content. Furthermore, MDF specimens having beech fibers in the core layer showed lower formaldehyde emission than that of the MDFs having pine fibers in the core layer.
树种和芯层木材纤维尺寸对三层纤维板甲醛释放量的影响
采用细木纤维作表层,粗木纤维作芯层,制备了三层中密度纤维板。芯层由松木纤维或山毛榉木纤维制成,面纤维由松木纤维制成。山毛榉芯层纤维长度从4.3 mm增加到28.2 mm,松木芯层纤维长度从4.9 mm增加到29.1 mm。剥壳比为50/50,板厚为10 mm。根据en120标准,对甲醛释放量进行了测定。在相同的树脂含量、密度、压制参数和垫层含水率等制造参数下,随着纤维细度的增加,甲醛释放量明显下降。此外,核心层含有山毛榉纤维的中密度纤维板的甲醛释放量低于核心层含有松木纤维的中密度纤维板。
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