ДОЦІЛЬНІСТЬ ЗАСТОСУВАННЯ СТЕРИЧНО УСКЛАДНЕНИХ АЦЕНАФТЕНОВИХ СПОЛУК У СКЛАДІ ПРОТИКОРОЗІЙНОЇ КОМПОЗИЦІЇ

Tatyana Doroshenko, Nataliya Каchalova
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Abstract

Goal. Synthesis and study of the effect of the inhibitory component – sterically complicated acenaphthene compounds – on the effectiveness of the protective composition to prevent corrosion of metal products during the period of temporary preservation.Method. Coke-chemical acenaphthylene was isolated from the absorbing and anthracene fractions of coal tar, the bromination of which led to 1,2-dibromocenaphthene. Subsequent alkylation of azine bases with 1,2-dibromacenaphthene yielded a number of sterically complex acenaphthene compounds. In the conditions of simulation aggressiveness of NSS environment the influence of synthesized additives on efficiency of anticorrosive composition is investigated (ISO 9227:2017). Research methods: chromatography, synthesis, elemental analysis, IR spectroscopy, corrosion tests.Results. On the basis of low-demand, available and inexpensive components of coke production, a number of substances with high anti-corrosion properties were synthesized – Quaternary azine salts with acenaphthene fragment. It was determined that the greatest resistance to the destructive effects of corrosive NSS environment according to the results of accelerated atmospheric corrosion tests was demonstrated by a composite coating containing an inhibitory additive – 1-(2-bromo-1,2-dihydroacenaphthylen-1-yl) quinoline bromide. The dominant role of the structure of the inhibitory additive on the manifestation of anticorrosive properties of the protective composition is shown. The influence of the ratio of components of paints and varnishes on their technological and anti-corrosion properties has been studied. The obtained results allow to create a new formulation of the domestic competitive protective composition to prevent corrosion of the metal for the period of temporary preservation.Scientific novelty. The role of 1,2-dibromacenaphthene as a promising alkylating agent in the synthesis of inhibitory additives - sterically complicated acenaphthene compounds has been determined.Practical significance. The optimal content of inhibitory components – Quaternary azine salts with acenaphthene fragment – for the development of a formulation of an effective anti-corrosion composition for the period of temporary preservation of metal products.
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的目标。抑制成分-立体复合苊化合物-的合成及对保护成分在金属制品临时保存期间防止腐蚀效果的影响研究。从煤焦油的吸附馏分和蒽馏分中分离出焦化苊,其溴化反应生成1,2-二溴二苯萘。随后,偶氮碱与1,2-二溴苊的烷基化反应生成了许多立体配合的苊化合物。在模拟NSS环境侵蚀性的条件下,研究了合成添加剂对防腐成分效率的影响(ISO 9227:2017)。研究方法:色谱法、合成法、元素分析、红外光谱法、腐蚀试验。根据焦炭生产中需求少、容易获得、价格低廉的原料,合成了一系列具有高防腐性能的物质——苊碎片季氮盐。根据加速大气腐蚀试验结果表明,含有抑制添加剂-1-(2-溴-1,2-二氢苊-1-基)喹啉溴的复合涂层具有最大的耐腐蚀性NSS环境的破坏性影响。结果表明,抑制添加剂的结构对防护组合物的防腐性能的表现起主导作用。研究了漆、清漆组分配比对其工艺性能和防腐性能的影响。所获得的结果允许创建国内竞争性保护成分的新配方,以防止金属在临时保存期间的腐蚀。科学的新奇。1,2-二溴苊作为一种很有前途的烷基化剂,在合成具有抑制作用的结构复杂的苊类化合物中发挥了作用。现实意义。抑制成分的最佳含量-季氮盐与苊碎片-为开发一种有效的抗腐蚀组合物的配方暂时保存金属制品。
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