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首页> 外文期刊>Journal of nanoscience and nanotechnology >Magnesium Aminoclay (MgAC) as an Additive in Anti-Icing Mixture of Propylene Glycol Applied to Railway Electrical Wires: A Preliminary Study
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Magnesium Aminoclay (MgAC) as an Additive in Anti-Icing Mixture of Propylene Glycol Applied to Railway Electrical Wires: A Preliminary Study

机译:镁氨基酰胺(MGAC)作为丙二醇丙二醇的抗结冰混合物中的添加剂,其应用于铁路电线:初步研究

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Ice accumulation on the surface of railway electrical wires can cause significant problems in the winter season. Different anti-icing liquids have been used to prevent the formation of ice on different surface substrates. The most common anti-icing liquids are ethylene glycol mixtures. Recently, propylene glycol, due to its lesser toxicity, has been considered as an alternative anti-icing agent. However, propylene glycol mixtures have some limitations, in that their degradation can lead to corrosion of the metal substrate. As detailed in the literature, (3-aminopropyl)-triethoxysilane (APTES), the precursor of magnesium aminoclay (MgAC), has been used to protect metal substrates from corrosion. In the present study we examined the potential of MgAC as an APTES-alternative additive in propylene glycol mixtures. The results showed that the anti-icing properties of the propylene glycol mixtures were maintained in the presence of MgAC (at 0.1, 0.5, and 1.0 wt.% concentrations). Furthermore, MgAC's potential as a thickening agent was shown in the increased viscosity of the propylene glycol/MgAC mixtures relative to the propylene glycol mixtures. The addition of MgAC also rendered the propylene glycol mixtures more hydrophilic. However, MgAC addition also led to corrosion due to the excess amounts of amine groups in the anti-icing solution. In this paper, the corrosion mechanism of MgAC is explained in the paper. In the future, the anti-icing and anti-corrosion properties of propylene glycol/MgAC mixtures at low concentrations (<0.1 wt.%) should be more fully investigated.
机译:在冬季,铁路电线表面的积冰会造成重大问题。不同的防冰液用于防止不同表面基底上结冰。最常见的防冻液是乙二醇混合物。最近,丙二醇由于毒性较小,被认为是一种替代防冰剂。然而,丙二醇混合物有一些局限性,因为它们的降解会导致金属基体的腐蚀。如文献所述,(3-氨基丙基)-三乙氧基硅烷(APTES),氨基粘土镁(MgAC)的前体,已被用于保护金属基底免受腐蚀。在本研究中,我们考察了MgAC在丙二醇混合物中作为APTES替代添加剂的潜力。结果表明,在MgAC存在下(0.1、0.5和1.0 wt.%浓度),丙二醇混合物的防冰性能保持不变。此外,与丙二醇混合物相比,丙二醇/MgAC混合物的粘度增加,表明MgAC作为增稠剂的潜力。MgAC的加入也使丙二醇混合物更具亲水性。然而,由于防冻液中含有过量的胺基,添加MgAC也会导致腐蚀。本文阐述了MgAC的腐蚀机理。未来,应更全面地研究低浓度(<0.1 wt.%)下丙二醇/MgAC混合物的防冰和防腐蚀性能。

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