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首页> 外文期刊>Journal of industrial and engineering chemistry >Adhesives formulated with chemically modified okara and phenol-resorcinol-formaldehyde for bonding fancy veneer onto high-density fiberboard
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Adhesives formulated with chemically modified okara and phenol-resorcinol-formaldehyde for bonding fancy veneer onto high-density fiberboard

机译:由化学改性的豆渣和酚-间苯二酚-甲醛配制的胶粘剂,用于将花饰单板粘合到高密度纤维板上

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With an abrupt increase of petrochemical prices and the critical environmental issue related to the volatile organic compounds emitted from the adhesive resins, the development of environmentally friendly new adhesive systems is common issue. In our study, the okara, which is a residue from the production of tofu, was introduced to develop competitive bio-based adhesives for the production of fancy-veneered floor boards. Okara (AC and AK) was hydrolyzed with 1% sulfuric acid solution and sodium hydroxide solution. Phenol-resorcinol-formaldehyde (PRF) prepolymer was prepared as a crosslinker of AC and AK. Adhesive resins were formulated with AC, AK and PRF prepolymer. The adhesive resins were used to fabricate floor boards composed of oak veneers onto high-density fiberboard. The experimental variables were three weight ratio of AC/AK to PRF (45/45/10,40/40/20 and 35/35/30), three assembly time (0,10 and 20 min), and two press time (90 and 120 s), respectively. The fancy-veneered high-density fiberboards were prepared and subject to testing of the dry tensile strength, glueline failure by wetting and formaldehyde emission. Dry tensile strengths of the boards exceeded the requirement of KS standard. The formaldehyde emissions were satisfied with the limitation specified in KS standard. Based on these results, okara has a potential to be used as a renewable raw material of environmentally friendly adhesive resin systems for production of floor boards, but further researches, such as biological hydrolysis of okara and various formulations of PRF prepolymer, are required to improve the adhesive strength and to reduce formaldehyde emission of okara-based adhesive resins.
机译:随着石化产品价格的突然上涨以及与从粘合剂树脂中散发的挥发性有机化合物有关的关键环境问题,开发环境友好的新型粘合剂系统成为普遍问题。在我们的研究中,豆渣生产中残留的豆渣被引入以开发具有竞争力的生物基胶粘剂,用于生产花式背胶地板。将豆渣(AC和AK)用1%的硫酸溶液和氢氧化钠溶液水解。制备了酚-间苯二酚-甲醛(PRF)预聚物作为AC和AK的交联剂。胶粘树脂是用AC,AK和PRF预聚物配制的。粘合剂树脂用于在高密度纤维板上制造由橡木贴面组成的地板。实验变量是AC / AK与PRF的三个重量比(45/45 / 10、40 / 40/20和35/35/30),三个组装时间(0,10和20分钟)和两个压制时间( 90和120 s)。制备出花哨的高密度纤维板,并对其干抗张强度,通过润湿引起的胶合线破坏和甲醛释放进行测试。木板的干拉伸强度超过了KS标准的要求。甲醛排放符合KS标准中规定的限制。基于这些结果,豆渣有潜力用作环保粘合剂树脂体系的可再生原料,用于生产地板,但还需要进一步研究,例如豆渣的生物水解和各种PRF预聚物配方,以改善并降低豆渣基粘合剂树脂的甲醛释放量。

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