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Value-added recycling of construction waste wood into noise and thermal insulating cement-bonded particleboards

机译:建筑废木材的增值回收利用为隔音隔热水泥粘合刨花板

摘要

Large amounts of waste wood formwork from construction sites end up with landfill disposal every day. This study aims to develop a practicable technology for recycling construction waste wood into formaldehyde-free cement-bonded particleboards that have value-added features of high strength, light weight, and thermal/noise insulation for reuse in building and construction applications. The mineralogy and microstructure of particleboards were characterized by X-ray diffraction, thermogravimetry, and mercury intrusion porosimetry analyses. Among the mineral admixtures, chloride accelerated precipitation of oxychlorides while sulphate produced calcium sulphoaluminate for promoting early strength development. The use of 2% CaCl2 proved to be sufficient for improving the wood-cement compatibility. At wood-to-cement ratio of 3:7 by weight (i.e., 3:1 by volume), cement hydrates in the porous structure ensured acceptable dimensional stability (2% swelling). By adjusting the water-to-cement ratio to 0.3 and density of the particleboards to 1.54 g cm−3, the volume of capillary pores was effectively reduced from 0.16 mL g−1 to 0.02 mL g−1. The more compact microstructure contributed to high fracture energy at 6.57 N mm−1 and flexural strength of 12.9 MPa. Using the above optimal production conditions, the particleboards complied with the International Standard (9 MPa) while enabling reuse as light-weight structure. The particleboards also manifested outstanding structure-borne noise reduction (at 32–100 Hz) and low thermal conductivity (0.29 W m−1 K−1), suggesting potential application as acoustic and thermal insulating materials. Preliminary cost-benefit analysis illustrated economic viability of the proposed approach. Therefore, technological innovation is crucial for delivering an eco-friendly solution to waste wood recycling for the building and construction industry.
机译:每天来自建筑工地的大量废木模板最终都会被填埋处理。这项研究的目的是开发一种实用的技术,将建筑废木材回收成无甲醛的水泥粘合刨花板,该板材具有高强度,轻质和隔热/隔音的增值特性,可在建筑和建筑应用中重复使用。刨花板的矿物学和微观结构通过X射线衍射,热重分析和压汞法进行了表征。在矿物外加剂中,氯化物加速了氯氧化物的沉淀,而硫酸盐产生了硫铝酸钙,以促进早期强度的发展。事实证明,使用2%CaCl2足以改善木水泥的相容性。在木材与水泥的重量比为3:7(即体积比为3:1)的情况下,多孔结构中的水泥水合物确保了可接受的尺寸稳定性(溶胀率<2%)。通过将水灰比调整为0.3,将刨花板的密度调整为1.54 g·cm-3,毛细孔的体积有效地从0.16 mL g-1减少到0.02 mL g-1。更紧凑的微观结构有助于在6.57 Nmm-1的高断裂能和12.9 MPa的抗弯强度。使用上述最佳生产条件,刨花板符合国际标准(9 MPa),同时又可作为轻质结构重复使用。刨花板还表现出出色的结构噪声降低(32-100 Hz)和低热导率(0.29 W m-1 K-1),表明它潜在地用作隔音和隔热材料。初步的成本效益分析说明了该方法的经济可行性。因此,技术创新对于为建筑业提供环保的废木材回收解决方案至关重要。

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