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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Lignin-Based Anticorrosion Coatings for the Protection of Aluminum Surfaces
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Lignin-Based Anticorrosion Coatings for the Protection of Aluminum Surfaces

机译:基于木质素的防腐涂层,用于保护铝表面

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摘要

New renewable lignin-based coatings with anticorrosion properties are presented in this work. These materials are based on the silanization of a tetrahydrofuran (THF) soluble fraction of a technical softwood kraft lignin through urethane linkages and its subsequent thermal cross-linking on metallic substrates using different cross-linking promoters. Spectroscopy analyses confirmed silanization of lignin meanwhile the thermal analyses indicated an increase of the glass transition temperature and the thermal stability after the functionalization process. The silanized (LF-S) and nonsilanized (LF) lignins were used as main materials for the preparation of thermally cross-linked coatings in the presence of different promoters, namely tetraethyl orthosili- cate (TEOS) as a cocrosslinker and/or acetic acid (AcH) as a catalyst. The coatings prepared from LF-S presented improved thermal stability and hydrophobic character compared with those obtained from unmodified LF. Moreover, the adhesion strength of the coatings on aluminum increased when the cross-linker promoters were incorporated to the coating formulation. Finally, the corrosion inhibition effect of these coatings was assessed through the evaluation of the corrosion current density on aluminum, finding important improvements on the electrochemical stability of the metal. The results of this study clearly demonstrate a straightforward approach for the production of high-lignin-content coatings that may find direct industrial application in the field of corrosion prevention for metals.
机译:在这项工作中提出了具有防腐性能的新可再生木质素的涂料。这些材料基于技术软木牛皮蛋白的四氢呋喃(THF)可溶性级分的硅烷化通过氨基甲酸酯键,其随后使用不同交联启动子的金属基材上的热交联。光谱分析确认了木质素的硅烷化同时,热分析表明玻璃化转变温度的增加和官能化过程后的热稳定性。硅烷化(LF-S)和非硅氧烷化(LF)木质素被用作制备在不同启动子存在下的热交联涂层的主要材料,即四乙基酯(TEOS)作为COCROSLINGER和/或乙酸(ACH)作为催化剂。与由未修饰的LF获得的那些相比,由LF-S制备的涂层提高了改善的热稳定性和疏水性。此外,当掺入涂层制剂的交联剂启动子时,铝涂层的粘附强度增加。最后,通过评估铝对铝的腐蚀电流密度来评估这些涂层的腐蚀抑制作用,发现了对金属电化学稳定性的重要改进。本研究的结果清楚地表明了生产高木质素含量涂层的直接方法,该涂层可以在预防金属腐蚀领域中找到直接的工业应用。

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