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Ecological Design of New Efficient Energy-Performance Construction Materials with Rigid Polyurethane Foam Waste

机译:刚性聚氨酯泡沫废料的新型高效节能建筑材料的生态设计

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摘要

An ecological mortar is designed from industrial sub-products, with the objective of utilizing both the slag residues, generated during steel manufacturing processes, and the waste from Polyurethane Foam (PF) panels, generated during refrigerator chamber manufacturing processes. The ecological mortar design involves the dosing of Electric Arc Furnace (EAF) slag, together with finely ground Polyurethane Foam, cement, and additives. An energy efficient prefabricated block is designed with the mortar, for use in construction, and its energy performance is assessed as a material inserted within the envelope of a service sector (hospital) building, either as an exterior skin, or as an enclosing component within the façade interior. The main contribution of this research is the characterization of the thermo-physical and mechanical properties of a new prefabricated panel made with recycled materials. The full characterization of the properties of these new materials is presented and discussed. The new prefabricated panel demonstrates adequate thermo-mechanical characteristics as a substitute for traditional materials, while improving the sustainability of the building. As a secondary objective, the energy behaviour of the new panels when integrated in a real building is presented by means of a case study simulation. The use of computational thermal simulation confirmed that the properties of the prefabricated block influenced the annual thermal demand of the building for heating and cooling. Improvements to the thermal inertia of the building envelope were also confirmed with the inclusion of PF waste, giving the mortar an energy performance that was similar to conventional materials, in such a way that its use in façade construction may be validated, in addition to its environmental benefits, due to it having been manufactured with critical recycled industrial waste such as EAF slag and PF, thereby contributing to both the circular economy and sustainable development.
机译:生态灰浆是根据工业副产品设计的,目的是利用钢制造过程中产生的炉渣残留物以及冰箱室制造过程中产生的聚氨酯泡沫(PF)板产生的废物。生态砂浆的设计包括对电弧炉(EAF)炉渣,精细研磨的聚氨酯泡沫,水泥和添加剂的计量。用砂浆设计出一种节能的预制砌块,用于建筑中,其能源性能被评估为插入服务部门(医院)建筑物围护结构中的材料,既可以用作外部蒙皮,也可以用作其中的封闭组件外墙内部。这项研究的主要贡献是表征了一种由再生材料制成的新型预制板的热物理和机械性能。介绍并讨论了这些新材料的性能的完整特征。新的预制板具有足够的热机械特性,可以替代传统材料,同时提高了建筑物的可持续性。作为第二个目标,通过案例研究模拟,介绍了集成在实际建筑中的新面板的能量行为。计算热模拟的使用证实了预制砌块的性能影响了建筑物供热和制冷的年度热需求。 PF废料的加入也证实了建筑围护结构的热惯性的改善,使砂浆的能量性能与传统材料相似,因此除了可以用于外墙建筑外,还可以验证其用途。由于它是由关键的循环工业废料(如电弧炉炉渣和PF)制成的,因此具有环境效益,从而为循环经济和可持续发展做出了贡献。

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