Enhancement of barrier and corrosion protection performance of epoxy coatings through adding eco‐friendly lamellar biochar

Beibei Zhang, G. Wang, Shenghua Ma, Hui Wang, J. Bai
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Abstract

Biomass, as a green and renewable energy source, can be procured from a broad range of sources and is low in cost. The full exploitation of biomass could reduce the dependence on and consumption of fossil fuels, and is conducive to the protection of the environment. The prevention of corrosion of metals is an issue considered problematic in many fields, including in industrial production among others. Many anticorrosion materials are expensive and are noxious to the environment. This is an important issue that anticorrosion workers cannot ignore. This study proposes the use of biochar epoxy to boost the barrier properties of the coating, which is both economical and eco‐friendly. The incorporation of biochar can reduce the porosity of the coating and complicate the path of the corrosive media towards the steel substrate. Additionally, it can also reinforce the anticorrosion performance of the coatings. First, this article introduces the effect of biochars with different ultrasonic durations on the anticorrosion performance of anticorrosion coatings. After finding the biochar with the optimal ultrasonic duration, the effects of biochar on the anticorrosion performance of the coatings at different temperatures are assessed and the changes in its anticorrosion performance following soaking are discussed. The discussion concludes that applying biochar to anticorrosion coatings provides a feasible type of coating for anticorrosion work.
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添加环保层状生物炭提高环氧涂料的阻隔和防腐性能
生物质作为一种绿色和可再生能源,可以从广泛的来源获得,而且成本低。充分利用生物质可以减少对化石燃料的依赖和消耗,有利于保护环境。金属腐蚀的预防在许多领域都是一个问题,包括在工业生产等领域。许多防腐材料既昂贵又对环境有害。这是防腐工作者不能忽视的一个重要问题。本研究提出使用生物炭环氧树脂来提高涂层的阻隔性能,既经济又环保。生物炭的掺入可以减少涂层的孔隙率,并使腐蚀介质向钢基体的路径复杂化。此外,它还可以增强涂层的防腐性能。首先,本文介绍了不同超声波持续时间的生物炭对防腐涂层防腐性能的影响。在找到最佳超声持续时间的生物炭后,评估了不同温度下生物炭对涂层防腐性能的影响,并讨论了浸泡后生物炭防腐性能的变化。研究表明,将生物炭应用于防腐涂料为防腐工作提供了一种可行的涂料类型。
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