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CO2 Uptake of Carbonation-Cured Cement Blended with Ground Volcanic Ash

机译:碳化与碳化火山灰混合水泥的二氧化碳吸收

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摘要

Accelerated carbonation curing (ACC) as well as partial replacement of cement with natural minerals are examples of many previous approaches, which aimed to produce cementitious products with better properties and environmental amicabilities. In this regard, the present study investigates CO2 uptake of carbonation-cured cement blended with ground Saudi Arabian volcanic ash (VA). Paste samples with cement replacement of 20%, 30%, 40%, and 50% by mass were prepared and carbonation-cured after initial curing of 24 h. A compressive strength test, X-ray diffractometry (XRD), and thermogravimetry were performed. Although pozzolanic reaction of VA hardly occurred, unlike other pozzolana in blended cement, the results revealed that incorporation of VA as a supplementary cementitious material significantly enhanced the compressive strength and diffusion of CO2 in the matrix. This increased the CO2 uptake capacity of cement, reducing the net CO2 emission upon carbonation curing.
机译:加速碳化固化(ACC)以及用天然矿物部分替代水泥是许多先前方法的示例,这些方法旨在生产具有更好性能和环境友好性的胶凝产品。在这方面,本研究调查了与沙特阿拉伯火山灰(VA)混合的碳化固化水泥的二氧化碳吸收量。制备水泥置换率为20%,30%,40%和50%(质量)的糊状样品,并在初始固化24小时后进行碳化固化。进行抗压强度测试,X射线衍射法(XRD)和热重法。尽管与混合水泥中的其他火山灰不同,VA几乎不会发生火山灰反应,但结果表明,将VA作为补充胶结材料的掺入可显着提高基质中CO2的抗压强度和扩散。这增加了水泥的二氧化碳吸收能力,减少了碳化固化后的净二氧化碳排放量。

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