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Article Dans Une Revue Cement and Concrete Composites Année : 2012

Design of green concrete made of plant-derived aggregates and a pumice-lime binder

Vincent Nozahic
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K. Saïdi
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H. de Baynast

Résumé

The use of particles from agricultural lignocellulosic resources in concrete gives it desirable environmental and multiphysics qualities. In this study, parallels are drawn between particles derived from hemp and sunflower stems, in terms of their morphological and physical properties. A pumice–lime binder is proposed as an alternative to the traditional cement or lime based solutions for both environmentally friendly and mechanical qualities. Compaction is applied during casting and its effects on mechanical properties are analysed. A principal finding of this study is that the hemp and sunflower materials show large similarities in terms of morphology and mechanical performance of the resulting concrete. The pumice–lime binder provides desirable properties even with raw pumice sand, which represent 90% of the binder mass proportion. Compaction level during casting induces an orthotropy, even with low plant content, and increases the compressive strength. A simple analytical model using Powers’ equation is proposed to predict plant concrete compressive strength with low plant quantities.
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Dates et versions

hal-00715670 , version 1 (18-11-2021)

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Paternité - Pas d'utilisation commerciale

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Vincent Nozahic, Sofiane Amziane, G. Torrent, K. Saïdi, H. de Baynast. Design of green concrete made of plant-derived aggregates and a pumice-lime binder. Cement and Concrete Composites, 2012, 34 (2), pp.231-241. ⟨10.1016/j.cemconcomp.2011.09.002⟩. ⟨hal-00715670⟩
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