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含富碳酸盐伊利石粘土的碱激发二元胶凝材料

Alkali-Activated Binary Binders with Carbonate-Rich Illitic Clay.

作者信息

D'Elia Angela, Clausi Marina, Fernández-Jiménez Ana, Palomo Angel, Eramo Giacomo, Laviano Rocco, Pinto Daniela

机构信息

Dipartimento di Scienze della Terra e Geoambientali, Università degli Studi di Bari Aldo Moro, 70121 Bari, Italy.

Instituto Eduardo Torroja (IETcc), CSIC, C/Serrano Galvache 4, 28033 Madrid, Spain.

出版信息

Polymers (Basel). 2023 Jan 10;15(2):362. doi: 10.3390/polym15020362.

Abstract

This work deals with the investigation of alkaline binders obtained from binary mixtures of carbonate-rich illitic clay from deposits in southern Italy and two industrial by-products with very different total composition and calcium content, i.e., blast furnace slag and type F fly ash, respectively. To improve the reactivity, the selected clay was ground in a ball miller and heated to 700 °C. The binary mixtures were alkali activated with NaOH solution at 4 M and 8 M, and the activated pastes were cured at room temperature and relative humidity >90% in a climatic chamber. Heat flow, total heat and compressive strength (2, 7 and 28 days) were determined. The hardened pastes were characterized by X-ray powder diffraction (XRPD), Fourier-transform infrared spectroscopy (FTIR) and scanning electron microscopy with energy dispersive X-ray spectroscopy (SEM/EDX). Results show that the main reaction product in all samples is a gel or mixture of C-A-S-H/(N, C)-A-S-H type gel depending on the calcium content in the precursors. The paste, made up of a 1:1 weight proportion of carbonate-rich illitic clay and blast furnace slag, showed the formation of a more compact matrix than that observed in each individually activated component, achieving the considerable mechanical strength value of 45 MPa after 28 days, which suggests a very positive interaction between the two calcium-rich solid precursors. The binary mixture of carbonate-rich illitic clay and F fly ash showed relatively low compressive strength (below 15 MPa), which has been related to the poor reaction potential of fly ash regarding the alkali activation at room temperature. The modification of curing parameters is expected to improve the reaction of carbonate-rich illitic clay/fly ash blend. The clay activation method used in this study has been demonstrated to be suitable for larger scale industrial pre-treatment set-ups.

摘要

这项工作涉及对碱性粘结剂的研究,这些粘结剂由来自意大利南部矿床的富含碳酸盐的伊利石粘土与两种总成分和钙含量差异很大的工业副产品(即分别为高炉矿渣和F类粉煤灰)的二元混合物制得。为提高反应活性,将所选粘土在球磨机中研磨并加热至700℃。二元混合物用4M和8M的NaOH溶液进行碱激发,激发后的浆体在气候箱中于室温及相对湿度>90%的条件下养护。测定了热流、总热量和抗压强度(2天、7天和28天)。对硬化后的浆体进行了X射线粉末衍射(XRPD)、傅里叶变换红外光谱(FTIR)以及带能谱仪的扫描电子显微镜(SEM/EDX)表征。结果表明,所有样品中的主要反应产物是一种凝胶或C-A-S-H/(N, C)-A-S-H型凝胶混合物,这取决于前驱体中的钙含量。由富含碳酸盐的伊利石粘土和高炉矿渣按1:1重量比例组成的浆体,其形成的基体比在每种单独激发的组分中观察到的更致密,28天后抗压强度达到可观的45MPa,这表明两种富含钙的固体前驱体之间有非常积极的相互作用。富含碳酸盐的伊利石粘土和F类粉煤灰的二元混合物抗压强度相对较低(低于15MPa),这与粉煤灰在室温下碱激发时较差的反应活性有关。预计改变养护参数可改善富含碳酸盐的伊利石粘土/粉煤灰混合物的反应。本研究中使用的粘土激发方法已证明适用于更大规模的工业预处理装置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/241b/9866063/7b2badbe8915/polymers-15-00362-g001.jpg

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