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Innovative use of giant reed and cork residues for panels of buildings in Mediterranean area

机译:地中海地区建筑面板的创新利用巨型芦苇和软木塞

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The environmental impact of buildings has to be assessed not only in reference to the energy consumed by their use but also with reference to the energy inside materials with which they are made of. The "Sick Building Syndrome" (SBS) is increasing. It was discovered that the major causes are linked to chemical contaminants from indoor sources such as building materials, inadequate ventilation, excessive use of Heating, Ventilation and Air Conditioning (HVAC) and volatile organic compounds (VOCs). The insulation building materials have a relevant role in the SBS for the capacity, not only to limit the use of HVAC but also to limit the emission of pollutants inside a building environment. The present paper reports an up- to- date review of some innovative uses of wastes deriving from agricultural production in order to build walls and partitions for Mediterranean houses. Some test methods of building elements, made with giant reed and agglomerate cork which are two typical natural materials of the Mediterranean area, are illustrated. These vegetal materials are often residues deriving from agricultural production, the agricultural residues are often a problem for farmers or firms because the organic wastes are considered dangerous and the disposal of such material is very expensive, therefore the reuse of the wastes is the best way to recycle these materials. This paper analyzes a cavity wall panel made with a wood skeleton on which two double crossed layers of giant reed stems were fixed and a multilayer agglomerated cork wall with a double cavity multilayer BOTH 20CM THICK. The dynamic thermal analysis carried out for the houses with the proposed walls highlights a better environmental performance of buildings with agglomerated cork and with giant reed walls rather than brick walls. The production of CO2 for the indoor environmental thermal control of the house with giant reed walls is less than 1/2 and the house with agglomerated cork walls is less than 1/4 compare
机译:必须评估建筑物的环境影响不仅是参考其使用所消耗的能量,还应参考它们由其制成的材料中的能量。 “病态建筑综合症”(SBS)正在增加。有人发现,主要原因与室内源的化学污染物相连,如建筑材料,通风不足,过度使用加热,通风和空调(HVAC)和挥发性有机化合物(VOC)。绝缘建筑材料在SBS中具有相关的作用,不仅可以限制HVAC的使用,而且还限制了建筑环境内的污染物的排放。本文报告了对来自农业生产的一些创新用途的最新审查,以便为地中海房屋建造墙壁和分区。用巨型芦苇和凝聚的软木制成的一些测试方法,是地中海地区两种典型天然材料的巨型芦苇和凝聚的软木。这些植物材料往往是源于农业生产的残留物,农业残留物往往是农民或公司的问题,因为有机废物被认为是危险的,因此这种材料的处置非常昂贵,因此废物的再利用是最好的方法再循环这些材料。本文分析了用木质骨架制成的腔壁墙板,在其上固定两个双交叉层的巨型杆,并且多层附聚的软木墙,具有双腔多层厚度20cm。与拟议墙壁的房屋进行的动态热分析突出了建筑物的更好的环境性能,其中包含凝聚的软木塞,巨型芦苇墙而不是砖墙。用于室内环境热控制的CO2的生产与巨型簧片墙的室内环境热控制小于1/2,凝聚的软木墙的房屋小于1/4比较

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