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Revealing the impacts of recycled urea-formaldehyde wastes on the physical-mechanical properties of MDF

机译:揭示回收的脲醛废料对MDF物理机械性能的影响

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Recycling of the urea-formaldehyde (UF) products mainly obtained from adhesive wastes of wood industries is vital and requires a high level of attention due to the environmental and human health impacts of formaldehyde and other chemicals. In this study, the complete polymerized resin, as undesired waste product of Chassbsaz company, has been recycled and reused in the manufacturing process of medium density fiberboards (MDF). The results demonstrated that by adding recycled polymerized powder in sub-micron size to urea-formaldehyde control resin and replacing 1wt% of the 55% solid content resin, the curing time of the resin significantly decreased. Fourier transform infrared spectroscopy (FTIR) demonstrated the chemical stability of the UF resins after adding 1wt% recycled polymerized resin. In addition, there were substantial improvements in physical-mechanical properties [i.e., modulus of elasticity (MOE), modulus of rupture (MOR), internal bond (IB) strength and thickness swelling (TS)] of the newly manufactured board compared to that of the control board. Analysis of variance (ANOVA) was employed to study the dependency and significance of the physical-mechanical properties of the MDF on the concentration of the recycled polymer. Moreover, the production capacity was expected to significantly increase as the curing time decreased while maintaining the outstanding mechanical characteristics of the boards.
机译:主要从木材工业的粘合剂废料中回收的尿素-甲醛(UF)产品至关重要,由于甲醛和其他化学品对环境和人类健康的影响,因此需要引起高度关注。在这项研究中,完全聚合的树脂,作为Chassbsaz公司的不良废弃物,已经在中密度纤维板(MDF)的制造过程中进行了回收和再利用。结果表明,通过将亚微米尺寸的回收的聚合粉末添加到脲甲醛控制树脂中并替换1wt%的55%固含量的树脂,该树脂的固化时间显着减少。傅里叶变换红外光谱(FTIR)证明了在添加1wt%的再生聚合树脂后,UF树脂的化学稳定性。此外,与新制造的板相比,新制造的板的物理机械性能[即弹性模量(MOE),断裂模量(MOR),内部粘结(IB)强度和厚度溶胀(TS)]有了显着改善。控制板的方差分析(ANOVA)用于研究MDF物理机械性能对回收聚合物浓度的依赖性和重要性。此外,随着固化时间的减少,预计生产能力将显着提高,同时保持板的出色机械性能。

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