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Carbon prestressing - New floor cross-sections for building construction

机译:碳预应力 - 建筑施工的新地板横截面

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Owing to the significant share of cement production, building with concrete generates about 8% of global CO_2 emissions while also contributing to the imminent worldwide depletion of sand and gravel resources. However, since we are currently unable to abandon concrete construction, an alternative solution would be to significantly reduce the mass of concrete structures while retaining the method's cost effectiveness and associated comfort. Solid reinforced-concrete floors have set a global standard in building construction, encompassing, for instance, office, residential and hotel buildings. In the future, lightweight yet rigid, carbon-prestressed floor systems will provide an appropriate solution for substituting them. Conventional concrete floors are usually 30 cm thick, but they could be replaced with lightweight, corrosion-resistant shell structures with an average thickness of only 10 cm in order to make a tangible contribution to saving resources and thus reducing CO_2 emissions. Precast floor slabs open up a greater sustainability potential because less waste is generated during their prefabrication. They also allow for easier removal and demolition as well as more efficient reuse.
机译:由于水泥生产的大量份额,混凝土的建筑产生了大约8%的全球CO_2排放,同时也有助于迫在眉睫的全球耗尽沙砾和砾石资源。然而,由于我们目前无法放弃混凝土结构,因此替代解决方案是显着降低混凝土结构的质量,同时保留该方法的成本效益和相关的舒适性。固体增强混凝土地板在建筑施工中设定了全球标准,包括,例如,办公室,住宅和酒店建筑。将来,轻量级但刚性碳预应力的地板系统将提供适当的解决方案来代替它们。传统的混凝土楼层通常厚30厘米,但它们可以用平均厚度仅为10厘米的轻质,耐腐蚀壳结构代替,以便为节省资源进行切实贡献,从而减少CO_2排放。预制底板平板开辟了更大的可持续性潜力,因为在预制中产生了较少的废物。它们还允许更容易地拆卸和拆卸以及更有效的重用。

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