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Technological performance of formaldehyde-free adhesive alternatives for particleboard industry

机译:无甲醛粘合剂替代品用于刨花板行业的技术性能

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摘要

Due to their high reactivity, chemical versatility and economic competitiveness, formaldehyde-based poly-condensation adhesives are used in huge amounts - in 2010 in the order of 20 million metric tons - around the globe, primarily in the wood-processing industry. Since the 1970s formaldehyde emissions from products made thereof came under pressure and were reduced continuously. The discussion intensified again initiated by the latest European CLP (classification, labelling and packaging) regulation, which came into force in 2016, classifying formaldehyde as a Carcinogen Category 1B compound. In view of potential and even stronger future restrictions of formaldehyde use, appropriate alternatives to substitute formaldehyde-based adhesive systems such as urea formaldehyde would have to be developed and implemented in the wood processing industry. The present review represents a critical appraisal of formaldehyde-free adhesive systems for particulate wood composites production proposed in literature so far. Adhesive systems analyzed here include both synthetic and renewable-based adhesives. The core of the review is an assessment of the individual adhesive systems based on selected technological (product and process) parameters relevant for wood-particleboard production. Based on this data we evaluated their potential to identify suitable alternative adhesives having a certain probability to meet the requirements of a large-scale processing industry sector. As an overall conclusion, there are still many challenges to overcome to replace formaldehyde. Except for pMDI-based systems, most of the alternative adhesives are considerably less reactive, which would result in dramatically higher production costs. Furthermore, the availability of most components proposed to produce alternative adhesives are currently not available in the necessary quantities. Moreover, toxicological investigations on alternative systems are still missing. As several components replacing formaldehyde are also toxic or hazardous to different extents, it cannot be guaranteed that the individual proposed alternative adhesives are safer during processing and service life compared to conventional systems. Due to the nature of the organic material wood, particleboards will always release a certain amount of formaldehyde, even when produced with formaldehyde-free adhesives.
机译:由于它们的高反应性,化学多功能性和经济竞争力,甲醛的聚缩粘合剂占巨额 - 2010年,主要在全球范围内的2000万吨 - 地球仪,主要是在木材加工行业。自20世纪70年代,其制造的产品的甲醛排放受到压力,不断减少。讨论再次通过最新的欧洲CLP(分类,标签和包装)规范再次启动,2016年生效,将甲醛分类为致癌物质1B类化合物。鉴于甲醛使用的潜力甚至更强,甲醛的限制,必须在木材加工行业中制定和实施替代甲醛甲醛等甲醛的粘合剂系统的适当替代方案。本综述代表了迄今为止在文献中提出的颗粒状木质复合材料生产的甲醛粘合剂系统的关键评估。这里分析的粘合剂系统包括合成和可再生基粘合剂。审查的核心是基于对木材刨花板生产相关的所选择的技术(产品和过程)参数的单个粘合系统的评估。基于该数据,我们评估了他们的潜力,以确定具有满足大规模加工行业的要求的合适的替代粘合剂。作为整体结论,克服替代甲醛仍存在许多挑战。除了基于PMDI的系统外,大多数替代粘合剂的反应性很大,这将导致大幅提高的生产成本。此外,提出生产替代粘合剂的大多数组件的可用性目前无法以必要的数量提供。此外,仍然缺少对替代系统的毒理学调查。随着替代甲醛的几个组分对不同范围的毒性或危险性也是毒性或危险的,不能保证与传统系统相比,在加工和使用寿命期间,个体所提出的替代粘合剂更安全。由于有机材料木材的性质,即使用无甲醛粘合剂生产,刨花板也将始终释放一定量的甲醛。

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