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将建筑和拆除废物中的废砖回收作为火山灰材料。

Recycling waste brick from construction and demolition of buildings as pozzolanic materials.

机构信息

Department of Environmental Engineering, National I-Lan University, I-Lan, Taiwan, ROC.

出版信息

Waste Manag Res. 2010 Jul;28(7):653-9. doi: 10.1177/0734242X09358735. Epub 2010 Feb 12.

Abstract

This investigation elucidates the pozzolic characteristics of pastes that contain waste brick from building construction and demolition wastes. The TCLP leaching concentrations of waste brick for the target cations or heavy metals were all lower than the current regulatory thresholds of the Taiwan EPA. Waste brick had a pozzolanic strength activity index of 107% after 28 days. It can be regarded as a strong pozzolanic material. The compressive strengths of waste brick blended cement (WBBC) that contain 10% waste brick increased from 71.2 MPa at 28 days to 75.1 MPa at 60 days, an increase of approximately 5% over that period. At 28 days, the pozzolanic reaction began, reducing the amount of Ca(OH)(2) and increasing the densification. The intensity of the peak at 3640 cm(- 1) associated with Ca(OH)(2) is approximately the same for ordinary Portland cement (OPC) pastes. The hydration products of all the samples yield characteristics peaks at 978 cm(-1) associated with C-S-H, and at ~3011 cm(-1) and 1640 cm(-1) associated with water. The samples yield peaks at 1112 cm(-1), revealing the formation of ettringite. In WBBC pastes, the ratio Q(2)/Q(1) increases with curing time. These results demonstrate that increasing the curing time increases the number of linear polysilicate anions in C-S-H. Experimental results reveal that waste brick has potential as a pozzolanic material in the partial replacement of cement.

摘要

本研究阐明了含有建筑施工和拆除废物废砖的糊状物的火山灰特性。目标阳离子或重金属的废砖 TCLP 浸出浓度均低于台湾环保署现行法规的阈值。废砖在 28 天后的火山灰强度活性指数为 107%。可以将其视为一种强火山灰材料。含 10%废砖的废砖掺合水泥(WBBC)的抗压强度从 28 天的 71.2MPa 增加到 60 天的 75.1MPa,在此期间增长了约 5%。在 28 天,火山灰反应开始,减少了 Ca(OH)(2)的量并增加了密实度。与普通波特兰水泥(OPC)浆体相同,与 Ca(OH)(2)相关的 3640cm(-1)处的峰的强度。所有样品的水化产物均在 978cm(-1)处呈现出与 C-S-H 相关的特征峰,在约 3011cm(-1)和 1640cm(-1)处呈现出水相关的特征峰。样品在 1112cm(-1)处出现峰,表明形成了钙矾石。在 WBBC 浆体中,Q(2)/Q(1)的比值随养护时间的增加而增加。这些结果表明,随着养护时间的增加,C-S-H 中的线性聚硅酸阴离子数量增加。实验结果表明,废砖在部分替代水泥方面具有作为火山灰材料的潜力。

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