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Thermal Stability of Wood Fibers Produced from Recycled Medium Density Fiberboards

机译:再生中密度纤维板生产的木纤维的热稳定性

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In this study, thermal stability of fibers obtained from recycled MDF was investigated and compared with virgin fibers by using thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC). Two different methods, including electrical heating and hydrothermal treatment, were used for recycling the MDF wastes. Electrical heating method was performed at two different times (2 and 4 min) and hydrothermal method was done at three different temperatures (105, 125 and 150 ?°C). Chemical structure of wood fibers was also studied. TGA and DSC analysis showed higher weight loss of recycled fibers as compared to virgin fibers in a similar degradation region, which means that thermal stability of recycled fibers is lower than virgin fibers. In fact, thermal behavior of recycled fibers was medium between wood and UF resin. DSC analysis showed two exotherms at around 340 and 475 ?°C. The transition at around 340 ?°C in fibers thermogram was considered to be due to polysaccharides thermal deterioration and the exotherm at 475 ?°C was related to lignin carbohydrate complex deterioration. The results of chemical structure analysis showed that lignin and hemicellulose content of recycled fibers was significantly lower than that of virgin fibers, which resulted in decreased thermal stability.
机译:在这项研究中,通过热重分析(TGA)和差示扫描量热法(DSC),对回收的MDF纤维的热稳定性进行了研究,并与原始纤维进行了比较。回收中密度纤维板废物使用了两种不同的方法,包括电加热和水热处理。在两个不同的时间(2和4分钟)执行电加热方法,在三个不同的温度(105、125和150°C)执行水热方法。还研究了木纤维的化学结构。 TGA和DSC分析表明,在类似的降解区域中,再生纤维的重量损失要高于原始纤维,这意味着再生纤维的热稳定性低于原始纤维。实际上,再生纤维的热行为介于木材和UF树脂之间。 DSC分析表明在340和475°C左右有两个放热曲线。纤维热分析图中在340°C左右的转变被认为是由于多糖的热降解引起的,而在475°C的放热与木质素碳水化合物复合物的降解有关。化学结构分析结果表明,再生纤维的木质素和半纤维素含量明显低于原生纤维,导致热稳定性下降。

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