高吸水性聚合物抗冻混凝土的环境评价

IF 0.7 Q4 CONSTRUCTION & BUILDING TECHNOLOGY Nordic Concrete Research Pub Date : 2020-12-01 DOI:10.2478/ncr-2020-0011
Gui Li, Marianne Tange Hasholt, O. Jensen
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引用次数: 0

摘要

摘要导风剂通常用于提高混凝土的抗冻性能。然而,用AEA无法精确地控制混凝土中的气孔系统。因此,混凝土强度的显著损失是由过量的空隙引起的,这增加了混凝土结构对环境的影响。高吸水性聚合物(SAP)也可用于生产抗冻混凝土。与AEA相比,它可以精确地设计混凝土的气孔结构,促进水泥水化,减轻自干裂缝。本研究采用生命周期评价方法,分别基于AEA和SAP对抗冻混凝土的整体环境影响进行评价。结果表明,如果在定义的功能单元中考虑混凝土的强度和耐久性,则SAP抗冻混凝土的环境影响低于AEA抗冻混凝土。此外,添加SAP的抗冻混凝土减少了柱等垂直构件的环境负荷,但增加了板等水平构件的环境负荷,强度增加无法利用。此外,AEA和SAP的库存数据会影响影响评估结果。
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Environmental Assessment of Frost-resistant Concrete with Superabsorbent Polymers
Abstract Air-entraining agents (AEA) are normally used to improve the frost resistance of concrete. However, it is not possible to accurately control the air void system in concrete with AEA. Thus, a significant loss of concrete strength is caused by over-dosing voids, and this increases the environmental impact from concrete structures. Superabsorbent polymer (SAP) can also be used to produce frost-resistant concrete. Compared to AEA, it can be used to precisely engineer the air void structure of concrete, promote cement hydration, and mitigate self-desiccation cracks. In this study, life cycle assessment methodology is applied to evaluate the overall environmental impact of frost-resistant concrete based on AEA and SAP, respectively. The results illustrate that frost-resistant concrete with SAP has a lower environmental impact than frost-resistant concrete with AEA if the strength and durability of concrete are considered in the defined functional unit. In addition, frost-resistant concrete with SAP reduces the environmental burdens of the vertical elements such as columns, but it increases the environmental load of the horizontal elements such as slabs, where the strength increase cannot be utilized. Moreover, the inventory data for AEA and SAP can affect the impact assessment results.
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来源期刊
Nordic Concrete Research
Nordic Concrete Research CONSTRUCTION & BUILDING TECHNOLOGY-
自引率
20.00%
发文量
8
期刊最新文献
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