Diatomite as a Partial and Sustainable Cement Replacement: Chemical, Mechanical, and Thermal Properties

IF 2.7 4区 环境科学与生态学 Q3 ENERGY & FUELS
Younes El Miski, Oussama Zine, Mohamed Ameur, Yassine Kharbouch, Driss Taoukil
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Abstract

This study investigated the use of Moroccan diatomite in its raw and calcined forms in mortar as a partial replacement for cement to reduce the primary energy consumption in cement production. For this purpose, a thermophysical and mechanical study was carried out. In addition, the energy consumption and global warming potential (GWP) associated with the production of these materials were assessed using a cradle-to-gate life cycle assessment analysis. Several samples were prepared by replacing up to 40% of the cement with diatomite, while maintaining the same sand and water content in the mortar. The study found that diatomite reduced thermal conductivity and diffusivity owing to its high insulating potential. However, calcining diatomite up to 850°C altered the quality of the produced silica, resulting in lower values compared with raw diatomite mortars. The mortars’ compressive and flexural strengths slightly decreased when diatomite was used as a substitute, with reductions of up to 10%. Calcined diatomite mortars demonstrated a higher water absorption capacity than raw diatomite mortars. The study concluded that mortars in which 40% of the cement has been partially replaced by either raw diatomite or calcined diatomite offer the most satisfactory thermal performance, while retaining sufficient mechanical strength to enable them to be classified as construction mortars. Calcined diatomite mortars offer favorable performance compared to raw diatomite, suggesting the potential of calcined diatomite to reduce the environmental impact and improve mortar quality, opening prospects for environment-friendly mortars and cost optimization.

硅藻土作为部分和可持续的水泥替代品:化学、机械和热性能
本研究调查了在砂浆中使用摩洛哥硅藻土的原料和煅烧形式作为水泥的部分替代品,以减少水泥生产中的一次能源消耗。为此,进行了热物理和力学研究。此外,利用从摇篮到闸门的生命周期评估分析,评估了与这些材料生产相关的能源消耗和全球变暖潜能值(GWP)。几个样品是通过用硅藻土代替高达40%的水泥来制备的,同时保持砂浆中相同的砂和水含量。研究发现,硅藻土由于其高绝缘电位而降低了热导率和扩散率。然而,将硅藻土煅烧至850°C会改变所生产的二氧化硅的质量,导致与原料硅藻土砂浆相比,二氧化硅的值更低。当硅藻土作为替代品时,砂浆的抗压和抗折强度略有下降,下降幅度达10%。煅烧的硅藻土砂浆比生硅藻土砂浆具有更高的吸水能力。该研究得出的结论是,用生硅藻土或煅烧硅藻土替代40%水泥的砂浆具有最令人满意的热性能,同时保留了足够的机械强度,使其能够被归类为建筑砂浆。与原硅藻土相比,煅烧硅藻土砂浆具有良好的性能,表明了煅烧硅藻土在减少环境影响和提高砂浆质量方面的潜力,为环境友好型砂浆和成本优化开辟了前景。
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来源期刊
Greenhouse Gases: Science and Technology
Greenhouse Gases: Science and Technology ENERGY & FUELS-ENGINEERING, ENVIRONMENTAL
CiteScore
4.90
自引率
4.50%
发文量
55
审稿时长
3 months
期刊介绍: Greenhouse Gases: Science and Technology is a new online-only scientific journal dedicated to the management of greenhouse gases. The journal will focus on methods for carbon capture and storage (CCS), as well as utilization of carbon dioxide (CO2) as a feedstock for fuels and chemicals. GHG will also provide insight into strategies to mitigate emissions of other greenhouse gases. Significant advances will be explored in critical reviews, commentary articles and short communications of broad interest. In addition, the journal will offer analyses of relevant economic and political issues, industry developments and case studies. Greenhouse Gases: Science and Technology is an exciting new online-only journal published as a co-operative venture of the SCI (Society of Chemical Industry) and John Wiley & Sons, Ltd
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