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Effect of fly ash on the service life, carbon footprint and embodied energy of high strength concrete in the marine environment

机译:粉煤灰对海洋环境中高强度混凝土的使用寿命,碳足迹和内含能量的影响

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Durability is one of the primary considerations in designing concrete structures in aggressive environments. This paper presents a study of concretes containing fly ash as 30% and 40% of the total binder in regards to service life, carbon footprint and embodied energy. A simple deterministic service life estimation technique using the well-known Fick's law was applied to assess the service life of similar grade concrete mixes against the corrosion due to chloride diffusion. The parameters needed to predict the service life of concrete were determined from laboratory experiments. Compared to control concrete, fly ash concretes showed less chloride diffusion which is considered as the dominant form of attack in reinforced concrete structures in the marine environment and thus the latter is more durable or has a longer service life than the former. Finally, this paper presents the application of life cycle assessment to measure carbon footprint and embodied energy consumption saving benefits of the use of more durable fly ash concretes in the aggressive marine environment. About 36%-43% of carbon footprint and 36%-38% of embodied energy consumption can be avoided for different concrete covers due to replacement of 40% cement with fly ash. (C) 2017 Elsevier B.V. All rights reserved.
机译:在腐蚀性环境中设计混凝土结构时,耐久性是主要考虑因素之一。本文针对使用寿命,碳足迹和内含能量方面的问题,对含粉煤灰的水泥进行了研究,该粉煤灰占粘结剂总量的30%和40%。应用一种简单的确定性使用寿命估算技术,该技术使用众所周知的菲克定律来评估类似等级混凝土混合物的使用寿命,以防止因氯化物扩散而引起的腐蚀。预测混凝土使用寿命所需的参数是通过实验室实验确定的。与对照混凝土相比,粉煤灰混凝土显示出较少的氯化物扩散,这被认为是海洋环境中钢筋混凝土结构的主要侵蚀形式,因此后者比前者更耐用或使用寿命更长。最后,本文介绍了生命周期评估在测量碳足迹中的应用,以及在侵蚀性海洋环境中使用更耐用的粉煤灰混凝土所体现的节能效果。由于用粉煤灰代替了40%的水泥,因此对于不同的混凝土覆盖层,可避免约36%-43%的碳足迹和36%-38%的能耗。 (C)2017 Elsevier B.V.保留所有权利。

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