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Preparation and Evaluation of Rice Bran‐Modified Urea Formaldehyde as Environmental Friendly Wood Adhesive

机译:米糠改性脲醛作为环保木材粘合剂的制备及评价

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In this study, defatted rice bran (RB) is used to prepare an environmentally friendly adhesive through chemical modifications. The RB is mixed with distilled water with ratios of 1:5 and 1:4 to prepare Type A and Type B adhesives, respectively having pH of 6, 8 and 10. Type A adhesive is prepared by treating RB with 1% potassium permanganate and 4% poly(vinyl alcohol), whereas Type B is formulated by adding 17.3% formaldehyde and 5.7% urea to RB. Viscosity, gel time, solid content, shear strength, Fourier transform infrared (FTIR) spectroscopy is carried out, and glass transition temperature (T _(g)), and activation energy (E _(a)) are determined to evaluate the performance of the adhesives.E _(a)data reveal that adhesives prepared at mild alkaline (pH 8) form long‐chain polymers. Gel time is higher in the fabricated adhesives than that of the commercial urea formaldehyde (UF). FTIR data suggest that functional groups of the raw RB are chemically modified, which enhances the bondability of the adhesives. Shear strength data indicates that bonding strength increases with increasing pH. Similar results are also observed for physical and mechanical properties of fabricated particleboards with the adhesives. The results demonstrate that RB‐based adhesives can be used as a potential alternative to currently used UF‐based resin. Most of the woodworking synthetic adhesives release volatile‐organic and/or toxic compounds. Thus, there is a pressing demand to produce adhesives having good bondability and that are nontoxic. The defatted rice bran (RB) flour is processed by polycondensation reactions between carbohydrates and crosslinking chemicals for environmentally friendly adhesives. Property evaluation confirms that the RB adhesive has good performance in wood bonding.
机译:在这项研究中,脱脂米糠(RB)用于通过化学修饰制备环保粘合剂。将RB与蒸馏水混合,其比例为1:5和1:4,以制备A型和型B粘合剂,分别具有6,8和10的pH。通过用1%高锰酸钾处理Rb来制备粘合剂。 4%聚(乙烯醇),而B型通过加入17.3%甲醛和5.7%尿素至Rb。进行粘度,凝胶时间,固体含量,剪切强度,傅里叶变换红外(FTIR)光谱,以及玻璃化转变温度( T_(g))和激活能量( _(a))确定评估粘合剂的性能。 E _(a)数据显示在轻度碱性(pH8)中制备的粘合剂形成长链聚合物。凝胶时间比商业尿素甲醛(UF)的粘合剂更高。 FTIR数据表明,原始Rb的官能团是化学改性的,这提高了粘合剂的粘合性。剪切强度数据表明粘合强度随着pH的增加而增加。对于具有粘合剂的制造刨花板的物理和力学性能,还观察到类似的结果。结果表明,基于RB的粘合剂可以用作当前使用的基于UF的树脂的潜在替代品。大多数木工合成粘合剂释放挥发性 - 有机和/或有毒化合物。因此,存在压迫需求,产生具有良好粘合性并且无毒的粘合剂。脱脂米糠(RB)粉是通过碳水化合物与环保粘合剂的交联化学品之间的缩聚反应加工。物业评估证实,RB粘合剂在木材粘合方面具有良好的性能。

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