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Characterization of Polyurethane Foam Waste for Reuse in Eco-Efficient Building Materials

机译:用于生态高效建筑材料的聚氨酯泡沫废料的表征

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In the European Union, the demand for polyurethane is continually growing. In 2017, the estimated value of polyurethane production was 700,400 Tn, of which 27.3% is taken to landfill, which causes an environmental problem. In this paper, the behaviour of various polyurethane foams from the waste of different types of industries will be analyzed with the aim of assessing their potential use in construction materials. To achieve this, the wastes were chemically tested by means of CHNS, TGA, and leaching tests. They were tested microstructurally by means of SEM. The processing parameters of the waste was calculated after identifying its granulometry and its physical properties i.e., density and water absorption capacity. In addition, the possibility of incorporating these wastes in plaster matrices was studied by determining their rendering in an operational context, finding out their mechanical resistance to flexion and compression at seven days, their reaction to fire as well as their weight per unit of area, and their thermal behaviour. The results show that in all cases, the waste is inert and does not undergo leaching. The generation process of the waste determines the foam’s microstructure in addition to its physical-chemical properties, which directly affect building materials in which they are included, thus offering different ways in which they can be applied.
机译:在欧盟,对聚氨酯的需求持续增长。 2017年,聚氨酯生产的估计价值为700,400吨,其中27.3%被填埋,这造成了环境问题。在本文中,将分析来自不同行业废物的各种聚氨酯泡沫的行为,以评估其在建筑材料中的潜在用途。为此,通过CHNS,TGA和浸出测试对废物进行了化学测试。通过SEM对它们进行了微观结构测试。在确定废物的粒度和其物理性质(即密度和吸水能力)后,计算废物的处理参数。此外,还研究了将这些废物掺入石膏基体中的可能性,方法是确定其在工作环境中的呈现情况,找出其在7天时对弯曲和压缩的机械抵抗力,对火的反应以及每单位面积的重量,和他们的热行为。结果表明,在所有情况下,废物都是惰性的,不会浸出。废物的产生过程除了决定其泡沫的物理化学特性外,还决定了泡沫的微观结构,而泡沫的物理化学特性直接影响其中所包含的建筑材料,从而提供了不同的应用方式。

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