首页> 美国卫生研究院文献>Materials >Incorporating Liquid Crystal Display (LCD) Glass Waste as Supplementary Cementing Material (SCM) in Cement Mortars—Rationale Based on Hydration Durability and Pore Characteristics
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Incorporating Liquid Crystal Display (LCD) Glass Waste as Supplementary Cementing Material (SCM) in Cement Mortars—Rationale Based on Hydration Durability and Pore Characteristics

机译:在水泥砂浆中掺入液晶显示(LCD)玻璃废料作为辅助胶结材料(SCM)—基于水合性耐久性和孔隙特征的合理性

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摘要

This paper assesses the feasibility of using liquid crystal display (LCD) waste glass as a supplementary cementing material in cement mortars. Two different sizes of LCD waste glass powder (LGP) particles were used (5 µm and 12 µm) with two substitution levels with cement in mortar (10% and 20%). The resulting mortars were evaluated for strength, hydration, porosity and durability through various experimental techniques. It was found that LGP particles lead to appreciable strength gain at all ages in comparison with control mortar, especially significant strength gain of 18% was observed at 28-day. This is attributed to the greater gel-space ratio as corroborated by the experimental determination of porosity, which is found less for LGP-incorporated mortars as compared to control cement mortar. The smaller particle size of LGPs not only accelerates the pozzolanic reaction in alkaline cementitious matrix, but also fills the smaller pores, thus reducing porosity and contributing to strength gain. Increased hydration was also elucidated qualitatively by backscattered electron imaging. Due to the increased hydration in LGP-incorporated pastes and mortars, the durability (in terms of chloride ion permeability) has also been found improved. Thus, it is established that 10% (by weight) of cement can be replaced with 12 μm LGP, whereas 20% can be replaced with 5 μm LDP for improved strength and durability. Incorporating LCD waste in mortars and concretes as partial replacement of cement can not only help utilize this potentially hazardous waste, but also significantly reduce the associated carbon dioxide emissions, thus promoting sustainable development.
机译:本文评估了在水泥砂浆中使用液晶显示器(LCD)废玻璃作为补充胶结材料的可行性。使用了两种不同尺寸的LCD废玻璃粉(LGP)颗粒(5 µm和12 µm),用灰浆中的水泥进行了两种替代处理(10%和20%)。通过各种实验技术评估所得灰浆的强度,水合性,孔隙率和耐久性。已经发现,与对照砂浆相比,LGP颗粒在所有年龄段均导致明显的强度增加,尤其是在28天时观察到了18%的显着强度增加。这归因于通过孔隙率的实验确定所证实的更大的凝胶-空间比,与对照水泥砂浆相比,掺有LGP的砂浆的凝胶空间比更低。 LGP的较小粒径不仅可以促进碱性水泥基体中的火山灰反应,而且可以填充较小的孔,从而降低孔隙率并有助于强度增加。还通过反向散射电子成像定性地阐明了增加的水合作用。由于掺入了LGP的糊剂和砂浆的水化作用增强,因此耐久性(氯离子渗透性方面)也得到了改善。因此,已确定可以用12μm的LGP代替10%(按重量计)的水泥,而可以用5μm的LDP代替20%的水泥以提高强度和耐久性。将LCD废料掺入砂浆和混凝土中作为水泥的部分替代品,不仅可以帮助利用这种潜在的危险废料,而且还可以大大减少相关的二氧化碳排放,从而促进可持续发展。

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