PAPER – SAWDUST COMPOSITES: FABRICATION AND COMPARISON IN TERMS OF HEAT TRANSFER AND STRENGTH PROPERTIES

Ubong Williams Robert
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引用次数: 1

Abstract

This study was designed to examine the feasibility of recycling cassava effluent, sawdust, and unused paper products to enhance their utilization for beneficial purpose. Waste newspaper paste (WNP), Waste writing – paper paste (WWP), and Waste carton paper paste (WCP) were prepared and then used separately to similarly fabricate composite panels with Sawdust particle (SDP) proportioned at 0%, 25%, 50%, 75%, and 100% by weight. The binder used was cassava starch slurry prepared from the effluent. Bulk density, water absorption, thermal conductivity, specific heat capacity, thermal diffusivity, nailability, and flexural strength were determined for the developed samples. From the results obtained, the samples were found to be light-weight and their thermal insulation performance improved with increasing proportions of the SDP. Though samples containing the WCP exhibited the best satisfactory performance, it was found that all the studied samples could perform more effectively and efficiently as ceilings compared to some of those reported in the literature. From scientific-economic viewpoint, valorizing the above-mentioned wastes as described in this paper could help to protect the environment and also yield value-added insulation ceilings for enhancement of sustainable building construction especially in tropical areas.
纸-木屑复合材料:在传热和强度性能方面的制造和比较
本研究旨在探讨回收木薯废水、锯末和废弃纸制品的可行性,以提高其有益用途。将废纸浆(WNP)、废纸浆(WWP)和废纸浆(WCP)分别制备成木屑颗粒(SDP),按重量比例分别为0%、25%、50%、75%和100%。所使用的粘合剂是由废水制备的木薯淀粉浆。测定了开发样品的体积密度、吸水率、导热系数、比热容、热扩散系数、可用性和抗弯强度。结果表明,随着SDP添加量的增加,样品重量轻,保温性能提高。虽然含有WCP的样品表现出最令人满意的性能,但与文献中报道的一些样品相比,所有研究样品都可以更有效地执行天花板。从科学经济的角度来看,本文所述的对上述废物进行评估有助于保护环境,并产生增值保温天花板,以提高可持续建筑的建设,特别是在热带地区。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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