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Controlling the setting times of one-part alkali-activated slag by using honeycomb ceramics as carrier of sodium silicate activator

机译:以蜂窝陶瓷为载体的硅酸钠活化剂控制一次碱渣的凝结时间

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A solid alkali source is a great choice to make one-part alkali activated materials (AAM). Conventional slag-based MM always suffer from short setting time and unsafe operation with liquid alkaline activators, thus restricting their usage in industry. This study aims to synthesize a new kind of one-part alkali-activated slag cement by using a porous honeycomb ceramic (HCC) as the carrier of sodium silicate activator. The solid activator was produced by making the honeycomb ceramic absorb water glass (Ms = 3.24, 8.21 wt% Na2O, 25.8%wt SiO2), drying for 5 h at 125 degrees C and then grinding it to powder with particle sizes between 10 and 50 pm. In this study, the result indicates that setting time of alkali activated slag cement (AASC) was successfully extended to at least 5 h by using the solid activator. The maximum compressive strength of the specimens made with 5% NaOH + 40% HCC and 6% NaOH + 40% HCC was similar to 40 MPa after 28 d of curing time. XRD (X-ray diffraction), FTIR (Fourier Transform infrared spectroscopy), SEM (Scanning Electron Microscope) and linear shrinkage analysis were applied in order to study the hydration product and the effect of the addition of HCC to the AASC. In terms of the strength properties and setting time, this one-part AASC could be classified as a Type 32.5 N and CEM IIIC class cement according to the European standard EN-197. (C) 2019 Elsevier Ltd. All rights reserved.
机译:固体碱源是制备单部分碱活化材料(AAM)的绝佳选择。常规的基于炉渣的MM总是会遇到凝固时间短和使用液体碱性活化剂的不安全操作的问题,因此限制了它们在工业中的使用。本研究旨在以多孔蜂窝陶瓷(HCC)为载体的硅酸钠活化剂合成一种新型的碱渣矿渣水泥。通过使蜂窝状陶瓷吸收水玻璃(Ms = 3.24、8.21 wt%Na2O,25.8%wt SiO2),在125摄氏度下干燥5小时,然后将其研磨成粒径为10至50的粉末,来生产固体活化剂下午。在这项研究中,结果表明,使用固体活化剂可以将碱活化矿渣水泥(AASC)的凝固时间成功延长至至少5小时。固化28天后,用5%NaOH + 40%HCC和6%NaOH + 40%HCC制成的样品的最大抗压强度与40 MPa相似。为了研究水合产物以及向AASC中添加HCC的影响,应用了XRD(X射线衍射),FTIR(傅里叶变换红外光谱),SEM(扫描电子显微镜)和线性收缩分析。就强度特性和固化时间而言,根据欧洲标准EN-197,这种单组分ASC可以归类为32.5 N和CEM IIIC类水泥。 (C)2019 Elsevier Ltd.保留所有权利。

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