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Synergistic effect of NTMP,Zn~(2+) and ascorbate in corrosion inhibition of carbon steel

机译:NTMP,Zn〜(2+)和抗坏血酸盐对碳钢缓蚀的协同作用

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Nitrilotris(methylenephosphonic acid) (NTMP) inhibits corrosion of carbon steel in presence of Zn~(2+).However,in order to make the inhibitor more environment friendly,it is necessary to reduce the levels of Zn~(2+) or phosphonate or both by introducing an environment friendly organic salt as a seconu synergist.In this paper,the inhibitive action of ascorbate as a second synergist in the presence of relatively low concentrations of NTMP and Zn~(2+),is presented.Addition of just 25 ppm of ascorbate to 20 ppm each of NTMP and Zn~(2+),at pH=7,increased the inhibition efficiency markedly from 35 to 95%.In the pH range of 6-4,the concentration of ascorbate required to bring up the inhibition efficiency to 94%,is only 10 ppm.However,the alkaline region demanded relatively higher concentration of ascorbate.This ternary system is quite effective in a wide pH range,4-10.This is the uniqueness of this new synergistic formulation.Potentiostatic polarization studies indicated that this synergistic formulation acts as a mixed inhibitor,predominantly cathodic in nature.A large increase in charge transfer resistance and also a decrease in double layer capacitance of the surface film,were observed from a.c.impedance studies.X-ray photoelectron spectrum of the surface film indicated the presence of the elements,viz.,P,O,N,C,Zn and Fe in the film.The shifts in binding energies of these elements indicated the presence of oxides and hydroxides of iron and zinc as well as complexes of Fe(III) and Zn(II) with phosphonate and ascorbate.The reflection absorption FTIR spectrum of the surface film also supported the formation of insoluble complexes of phosphonate and ascorbate with metal ions as well as presence of Zn(OH)_2 on the metal surface.A suitable mechanism of corrosion inhibition is proposed,which corroborates all the above experimental results.
机译:腈(亚甲基膦酸)(NTMP)可以抑制存在Zn〜(2+)的碳钢的腐蚀。但是,为了使该抑制剂更环保,有必要降低Zn〜(2+)或通过引入环境友好的有机盐作为Seconu增效剂,可以使膦酸酯或两者兼有。本文提出了在相对较低浓度的NTMP和Zn〜(2+)存在下抗坏血酸盐作为第二增效剂的抑制作用。在pH = 7时,仅抗坏血酸25 ppm到NTMP和Zn〜(2+)中的20 ppm,抑制效率从35%显着提高到95%。在6-4的pH范围内,抗坏血酸的浓度达到将抑制效率提高到94%,仅为10 ppm。但是,碱性区域要求相对较高的抗坏血酸浓度。这种三元体系在4-10的宽pH范围内都非常有效。这是这种新型增效剂的独特之处恒电位极化研究表明这种协同作用从阻抗研究中观察到,该配制剂充当混合抑制剂,本质上主要是阴极。电荷转移电阻大幅度增加,并且表面膜的双层电容降低。表面膜的X射线光电子光谱表明膜中P,O,N,C,Zn和Fe的元素存在。这些元素的结合能变化表明铁和锌的氧化物和氢氧化物以及Fe(III表面膜的反射吸收FTIR光谱还支持了膦酸酯和抗坏血酸盐与金属离子的不溶性络合物的形成以及金属表面上存在Zn(OH)_2的形成。提出了合适的缓蚀机理,证实了以上所有实验结果。

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