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Environmentally friendly ternary inhibitor formulation based on N,N-bis(phosphonomethyl) glycine

机译:基于N,N-双(膦酰基甲基)甘氨酸的环保型三元抑制剂配方

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Studies on an environmentally friendly ternary inhibitor formulation consisting of N,N-bis(pho-sphonomethyl) glycine (BPMG), with Zn{sup}(2+) ions as primary synergist and ascorbate ions as secondary synergist to protect carbon steel from corrosion in low chloride environment are presented in this paper. Although the binary system, BPMG-Zn{sup}(2+), is an effective inhibitor, it demands relatively higher concentrations of both BPMG and Zn{sup}(2+). In the present study, ascorbate was added to lower the effective concentrations of BPMG and Zn{sup}(2+). The effect of addition of ascorbate is quite significant. While the binary system consisting of 20 ppm of BPMG and 30 ppm of Zn{sup}(2+) accelerated corrosion of carbon steel, addition of just 25 ppm of ascorbate to the above system afforded an inhibition efficiency of 94%. The ternary inhibitor formulation is found to be effective in the pH range 5-11. The uniqueness of this system is that it has shown excellent inhibition efficiency even at pH 11, at which all the other phosphonate based formulations fail. This inhibitor system functions as a mixed inhibitor. The nature and composition of the protective film have been investigated by X-ray photoelectron spectra and Fourier transform infrared (FTIR) spectra. The mechanistic aspects of corrosion inhibition are discussed.
机译:由N,N-双(膦酰基甲基)甘氨酸(BPMG)与Zn {sup}(2+)离子作为主要协同剂,抗坏血酸离子作为次要协同剂组成的环保三元抑制剂配方的研究,以保护碳钢免受腐蚀本文介绍了在低氯化物环境下。尽管二元系统BPMG-Zn {sup}(2+)是有效的抑制剂,但它要求BPMG和Zn {sup}(2+)都相对较高的浓度。在本研究中,添加了抗坏血酸以降低BPMG和Zn {sup}(2+)的有效浓度。添加抗坏血酸的效果非常显着。虽然由20 ppm的BPMG和30 ppm的Zn {sup}(2+)组成的二元体系加速了碳钢的腐蚀,但仅向上述体系中添加25 ppm的抗坏血酸盐可提供94%的抑制效率。发现三元抑制剂制剂在pH 5-11范围内是有效的。该系统的独特之处在于,即使在其他所有基于膦酸酯的制剂均无法达到的pH值11时,它也显示出优异的抑制效率。该抑制剂体系起混合抑制剂的作用。通过X射线光电子能谱和傅立叶变换红外(FTIR)光谱研究了保护膜的性质和组成。讨论了腐蚀抑制的机理。

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