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首页> 外文期刊>Journal of materials science research >Lignin-Laccase-Mediator-Systems (LLMS) for the Production of Binderless Medium Density Fiberboards (MDF)
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Lignin-Laccase-Mediator-Systems (LLMS) for the Production of Binderless Medium Density Fiberboards (MDF)

机译:木质素-漆酶介体系统(LLMS),用于生产无粘结剂中密度纤维板(MDF)

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摘要

Medium density fiberboards (MDF) are produced mainly by urea-formaldehyde resins (UF) as binding agent, which are synthesized from finite fossil resources. Those boards may emit critical amounts of formaldehyde, which can influence the health of humans and animals. In recent times the wood panel board industry is looking for alternative glues which contain less or no formaldehyde. In order to avoid potential formaldehyde emissions altogether it would be preferable not to use binders which are formaldehyde based at all. One possibility is to use natural binders or to activate the wood fibers' own binding forces by applying Laccase-Mediator-Systems (LMS). As a support of the LMS interactions with wood fibers technical lignin can be added. In this study it was found out that the addition of technical lignin-intensified the fiber to fiber bindings. Two Lignin-Laccase-Mediator-Systems (LLMS) were analysed by Gel-Permeation-Chromatography and Cyclic voltammetry. Later the LLMSs were tested in the pilot scale production of MDF. The determination of the physical technological properties revealed that the LLMS treated MDF have higher dimension stabilities than only LMS treated MDF and approximately the same thickness swelling after 24 h. The results indicate that the application of LLMSs have a high potential for natural bonded MDF.
机译:中密度纤维板(MDF)主要由脲醛树脂(UF)作为粘结剂生产,这些粘结剂是从有限的化石资源中合成的。这些板可能释放出大量的甲醛,这可能影响人类和动物的健康。近年来,人造板行业正在寻找含甲醛量少或不含甲醛的替代胶。为了完全避免潜在的甲醛释放,优选完全不使用基于甲醛的粘合剂。一种可能性是使用天然粘合剂或通过应用Laccase-Mediator-Systems(LMS)激活木纤维自身的粘合力。为了支持LMS与木纤维的相互作用,可以添加工业用木质素。在这项研究中发现,添加工业用木质素会增强纤维与纤维之间的结合力。通过凝胶渗透色谱法和循环伏安法分析了两种木质素-漆酶-介体系统(LLMS)。后来,LLMS在中密度纤维板的中试规模生产中进行了测试。物理技术性能的确定表明,与仅LMS处理的MDF相比,LLMS处理的MDF具有更高的尺寸稳定性,并且在24 h后具有大约相同的厚度溶胀。结果表明,LLMS的应用对于天然结合MDF具有很高的潜力。

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