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Characterization of Products from Pyrolysis of Waste Wood-based Composites Containing Urea-formaldehyde Resins

机译:含有尿素 - 甲醛树脂的废木基复合材料热解的产品表征

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Products from pyrolysis of wood-based composites contain lots of valuable chemicals. The nitrogen compounds make such pyrolysis products different from those of general biomass. In this study, we characterized pyrolysis liquids and solid residues of waste wood-based composites such as particle board (PB) and medium density fiberboard (MDF). The study focuses mainly on the evolution of nitrogen compounds. Thermo-gravimetric analysis helped us to determine the optimum pyrolysis temperature. FTIR analysis was used to observe functions of nitrogen compounds in the solid residues. Components of pyrolysis liquids were analyzed by gas chromatography mass spectroscopy (GC-MS). Changes of FTIR spectrum indicate that C-N groups are reduced during pyrolysis process. Results from GC-MS analysis show that pyrolysis liquids are influenced a lot by the nitrogen compounds transferred from urea formaldehyde. Such changes will guide the utilization of pyrolysis products from waste wood-based composites.
机译:木基复合材料的热解的产品含有许多有价值的化学品。氮化合物使这种热解产物不同于一般生物质的产物。在该研究中,我们表征了废木基复合材料的热解液和固体残余物,例如刨花板(Pb)和中密度纤维板(MDF)。该研究主要侧重于氮化合物的演变。热重分析有助于我们确定最佳热解温度。 FTIR分析用于观察固体残余物中氮化合物的功能。通过气相色谱质谱(GC-MS)分析热解液的组分。 FTIR光谱的变化表明热解过程中C-N组减少。 GC-MS分析结果表明,从脲甲醛转移的氮化合物受到热解液的影响。此类变化将指导利用废木材基复合材料的热解产品。

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