Enhancing corrosion resistance in reinforced concrete structures by using innovative eco-friendly composite pigments

IF 2.3 Q2 ENGINEERING, CIVIL Innovative Infrastructure Solutions Pub Date : 2023-11-10 DOI:10.1007/s41062-023-01279-3
Walaa M. Abd El-Gawad, Essam A. Mossalam, Mahmoud Gharieb
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Abstract

Abstract This is the first study to look into the use of modified feldspars as anticorrosive pigments in the coatings industry. Herein, novel anticorrosive composite pigments were prepared by the chemical deposition of thin films of different oxides (e.g., zinc oxide and vanadium oxide with doloresite phase) on the surface of feldspar, which comprises 80% of the whole structure. A new vanadium oxide (e.g., doloresite) was chosen due to its IV oxidation state and excellent anticorrosive characteristics. ZnO is also well-known for its high resistance to corrosion. Firstly, the synthesis of the composite pigments was done, and then, they were characterized via XRD, SEM/EDX, XRF, and TGA. The composite pigments were incorporated into solvent-based epoxy coatings to evaluate their anticorrosive performance on reinforced concrete steel. Their corrosion resistances were determined using linear polarization resistivity and electrochemical impedance spectroscopy techniques. The physico-mechanical properties of the dry coats containing the prepared composite pigments were also evaluated. The results revealed that the polarization resistivity ( R po ) of coatings containing Zn/F ranged from 5900 to 3900 Ohm.cm 2 and that of V / F ranged from 7077 to 5500 Ohm.cm 2 , while the resistivity of uncoated rebar was from 1900 to 1300 Ohm.cm 2 . These results confirm that these novel pigments (e.g., ZnO/feldspar and doloresite/feldspar) could provide high corrosion resistivity for concrete structures that are immersed in chloride-laden environments. These composite pigments will be eco-friendly with a low impact on humans and the environment as they contain very low concentrations of heavy metals, besides their high efficiency and economic feasibility.
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通过使用创新的环保复合颜料增强钢筋混凝土结构的耐腐蚀性
本文首次研究了改性长石作为防腐颜料在涂料工业中的应用。本文通过在长石表面化学沉积不同氧化物(如含白云石相的氧化锌和氧化钒)的薄膜,制备了新型的防腐复合颜料,其占整个结构的80%。一种新的氧化钒(如白云石)由于其IV氧化态和优异的防腐特性而被选择。氧化锌还以其高耐腐蚀性而闻名。首先合成了复合颜料,然后通过XRD、SEM/EDX、XRF和TGA对其进行了表征。将复合颜料掺入溶剂型环氧涂料中,评价其对钢筋混凝土的防腐性能。采用线性极化电阻率和电化学阻抗谱技术测定了它们的耐蚀性。并对所制备的复合颜料干涂层的物理力学性能进行了评价。结果表明,含锌/氟涂层的极化电阻率(rpo)在5900 ~ 3900欧姆之间。厘米2和V / F的范围从7077到5500欧姆。而未涂覆钢筋的电阻率为1900 ~ 1300欧姆。平方厘米。这些结果证实,这些新型颜料(如氧化锌/长石和白云石/长石)可以为浸没在充满氯化物的环境中的混凝土结构提供高的耐蚀性。这些复合颜料不仅效率高、经济可行,而且重金属含量极低,对人类和环境的影响也很低,是生态友好型的。
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来源期刊
CiteScore
3.80
自引率
16.70%
发文量
250
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