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首页> 外文期刊>Journal of Materials Research and Technology >Investigation of hard-burn and soft-burn lime kiln dust as alternative materials for alkali-activated binder cured at ambient temperature
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Investigation of hard-burn and soft-burn lime kiln dust as alternative materials for alkali-activated binder cured at ambient temperature

机译:在环境温度下固化的碱活性粘合剂的替代材料硬燃烧和软燃烧石灰窑粉尘的研究

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摘要

As climate change becomes a severe concern, the development of green technology becomes a goal for many sectors, including the construction material sector. Ordinary Portland cement (OPC), the main constituent of concrete production, is a primary contributor to releasing carbon dioxide (CO2) into the atmosphere. Some alternative cementitious materials have been studied to reduce the massive amount of OPC consumption. Lime kiln dust (LKD), a by-product of quicklime production, is produced in abundance worldwide and mostly disposed of in landfills. The two types of LKD, soft-burn and hard-burn, are high-potential wastes that can be developed as alternative cementitious binders using the alkali-activated binder (AAB) technology. This study investigates the mixture designation and properties of LKD-based AAB when cured at ambient temperature. The results show that an ambient-cured soft-burn LKD-AAB achieved practical workability with an 8?M NaOH solution, 1.50 of sodium silicate-to-sodium hydroxide ratio (SS/SH), and 0.60 of liquid alkaline-to-binder ratio (L/B). A rapid setting behavior and an excellent compressive strength of 10.89?MPa at 28 days were revealed at room temperature curing. The ambient-cured hard-burn LKD-AAB could not provide the appropriate properties. However, the mixture of 20% hard-burn LKD and 80% soft-burn LKD resulted in an LKD-AAB mixture that meets the minimum requirement for low-strength cement applications. The positive outcome of this study may be the solution for of LKD wastes utilization in Thailand that addresses the challenge of developing ambient-cured AAB for in-field applications.
机译:随着气候变化成为严重问题,绿色技术的发展成为许多部门的目标,包括建筑材料部门。普通波特兰水泥(OPC)是混凝土生产的主要组成部分,是将二氧化碳(CO2)释放到大气中的主要贡献者。已经研究了一些替代的水泥材料以降低巨大量的OPC消耗量。石灰窑粉尘(LKD)是Quicklime生产的副产品,在全球丰富的丰富生产,主要处于垃圾填埋场。两种类型的LKD,软燃烧和硬燃烧,是使用碱活性粘合剂(AAB)技术的替代水泥粘合剂的高潜力废物。该研究研究了在环境温度下固化时LKD基AAB的混合物指定和性质。结果表明,环境固化的软燃烧LKD-AAB实现了实际的可加工性,具有8?M NaOH溶液,1.50次硅酸钠至氢氧化钠比(SS / SH)和0.60级液体碱性粘合剂比率(L / B)。在室温固化下,揭示了快速设置行为和10.89的优异压缩强度为10.89Ωmpa。环境固化的硬烧LKD-AAB无法提供适当的性质。然而,20%硬燃烧LKD和80%软燃烧LKD的混合物导致LKD-AAB混合物,符合低强度水泥应用的最低要求。本研究的积极结果可能是泰国LKD废弃利用的解决方案,该款于为现场申请开发环境固化AAB的挑战。

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