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Production and Evaluation of Composite Rainwater Storage Tanks from Recycled Materials Part 1: Material Characterization

机译:用再生材料生产和评估复合雨水储罐的评估:第1部分:材料表征

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Solid waste management and potable water supply are two of the major challenges in Nigeria. Recycling of wood and plastic wastes as cement-bonded composite rainwater storage tanks can play a major role in addressing both challenges. The aim of this study was to determine acceptable composite formulations for tank production and their short-term effects on stored rainwater. This paper reports the experimental results on composite formulations using varying proportions of Gmelina arborea sawdust, water sachet and acrylic plastic waste and determining their moisture content, density, water absorption (WA), thickness swelling (TS), thermal conductivity (TC), and impact energy. The moisture contents (14.7–16.5%) and densities (1.24–1.53 g/m 3 ) exceeded the minimum value specified for cement-bonded composites. WA in all samples containing plastic materials were relatively low (6%), an indication of suitability for water storage. However, only the samples containing water sachet exhibited an acceptable thickness swelling (approximately 2%). Density and WA had positive correlations with TS of the composites. The TC values (0.044–0.051 W/mK) were acceptably low. A strong, positive linear correlation was also observed between density and TC. Samples produced with a combination of cement, sawdust, water sachet and acrylic plastic exhibited the highest impact energy.
机译:固体废物管理和饮用水供应是尼日利亚的两个主要挑战。将木材和塑料废料作为水泥粘结的复合雨水储罐进行回收,可以在应对这两个挑战中发挥重要作用。这项研究的目的是确定用于罐生产的可接受的复合配方及其对储存雨水的短期影响。本文报告了使用不同比例的Armela木屑,水袋和丙烯酸塑料废料的复合配方的实验结果,并确定了它们的水分含量,密度,吸水率(WA),厚度溶胀(TS),热导率(TC)和冲击能量。水分含量(14.7–16.5%)和密度(1.24–1.53 g / m 3)超过了水泥粘结复合材料的最小值。在所有包含塑料材料的样品中,WA均相对较低(<6%),这表明适合储水。然而,仅包含水囊的样品表现出可接受的厚度溶胀(约2%)。密度和WA与复合材料的TS呈正相关。 TC值(0.044-0.051 W / mK)可以接受。在密度和TC之间也观察到强的正线性相关。由水泥,锯末,水袋和丙烯酸塑料制成的样品显示出最高的冲击能。

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