Recycling of Waste Cartons and Musanga cecropioides Heartwood into Composite Panels for Structural Application

Grace Peter Umoren, Uduakobong Sunday Okorie, Casmir Chukwuemeka Akaolisa, Emmanuel Bassey Umoren
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Abstract

In this research, the suitability of composite panels developed from waste carton paste (WCP) and Musanga cecropioides heartwood particles (MHP) was assessed for structural applications. Proportions of the MHP adopted were 0, 25, 50, 75, and 100 % by weight of the composite mix. For each formulation, three representative samples were fabricated and also subjected to various tests. The results of the tests showed variations in the mean values of water absorption (8.83 – 30.35 %), thickness swelling (3.72 – 10.84 %), bulk density (342.3 – 461.6 kgm-3), thermal conductivity (0.1166 – 0.1717 Wm-1K-1), thermal diffusivity (2.051 – 2.397 x 10-7 m2s-1), and flexural strength (1.388 – 9.636 MPa) as proportion of the MHP decreased from 100 % to 0 %. On the contrary, a positive correlation was observed in the cases of specific heat capacity (1.552 – 1.661 x 103 Jkg-1K-1) and solar radiation absorptivity (12.32 – 13.32 m-1) with respect to increase in the proportions of the MHP used. Though all the samples exhibited better performance tendencies for thermal insulation compared to conventional ceilings or partition elements used in buildings, it was observed that samples developed with more than 50 % of the MHP could not withstand nailability. Above all, waste cartons and Musanga cecropioides heartwood are promising raw materials to be considered for fabrication of low-cost composite thermal insulation panels suitable for application in building designs. This undertaking could also serve as a safe way of managing them as wastes.
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回收废纸盒和木参心材制成结构用复合板
本研究以废纸盒膏(WCP)和木心木颗粒(MHP)为原料,对复合材料板的结构适用性进行了评价。所采用的MHP的比例分别为0%、25%、50%、75%和100%。对于每种配方,制作了三个具有代表性的样品,并进行了各种测试。试验结果表明,随着MHP的比例从100%降至0%,吸水率(8.83 ~ 30.35%)、厚度膨胀率(3.72 ~ 10.84%)、容重(342.3 ~ 461.6 kgm-3)、导热系数(0.1166 ~ 0.1717 Wm-1K-1)、导热系数(2.051 ~ 2.397 × 10-7 m2s-1)和抗弯强度(1.388 ~ 9.636 MPa)的平均值发生了变化。相反,在比热容(1.552 - 1.661 x 103 Jkg-1K-1)和太阳辐射吸收率(12.32 - 13.32 m-1)的情况下,与MHP使用比例的增加呈正相关。虽然所有的样品都表现出更好的隔热性能趋势,与传统的天花板或建筑中使用的隔断元件相比,它被观察到,超过50%的MHP开发的样品不能承受牢固性。最重要的是,废弃纸盒和毛猴心材是有前途的原材料,可以考虑用于制造适合于建筑设计应用的低成本复合隔热板。这项工作也可以作为将它们作为废物进行管理的安全方法。
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