Environ Technol. 2014 May-Jun;35(9-12):1269-76. doi: 10.1080/09593330.2013.865792.
Nonmetal materials take up about 70 wt% of waste printed wiring boards (WPWB), which are usually recycled as low-value fillers or even directly disposed by landfill dumping and incineration. In this research, a novel reuse ofthe nonmetals to produce porous composites for sound absorbing application was demonstrated. The manufacturing process, absorbing performance and mechanical properties of the composites were studied. The results show that the high porous structure of the composites leads to an excellent sound absorption ability in broad-band frequency range. Average absorption coefficient of above 0.4 can be achievedby the composite in the frequency range from 100 to 6400 Hz. When the particle size is larger than 0.2 mm, the absorption ability of the composite is comparable to that of commercial wood-fibre board and urea-formaldehyde foam. Mechanical analysis indicates that the porous composites possess sufficient structural strength for self-sustaining applications. All the results indicate that producing sound absorbing composite with nonmetal particles from WPWB provides an efficient and profitable way for recycling this waste resource and can resolve both the environment pollution and noise pollution problems.
非金属材料约占废弃印刷线路板(WPWB)的 70wt%,通常作为低值填料回收,甚至直接通过垃圾填埋场倾倒和焚烧进行处理。在这项研究中,展示了一种将非金属材料回收用于制造多孔复合材料以用于吸音应用的新方法。研究了复合材料的制造工艺、吸音性能和机械性能。结果表明,复合材料的高多孔结构使其在宽频范围内具有优异的吸音能力。在 100 至 6400 Hz 的频率范围内,复合材料的平均吸收系数可达到 0.4 以上。当粒径大于 0.2 毫米时,复合材料的吸音能力可与商业木纤维板和脲醛泡沫相当。机械分析表明,多孔复合材料具有足够的结构强度,可用于自支撑应用。所有结果表明,用 WPWB 中的非金属颗粒生产吸音复合材料,为回收这种废弃资源提供了一种高效且有利可图的方法,同时解决了环境污染和噪声污染问题。