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Corrosion Inhibition Mechanism of Mild Steel by Amylose-Acetate/Carboxymethyl Chitosan Composites in Acidic Media

机译:双乙酰乙烯酯/羧甲基壳聚糖复合材料在酸性培养基中的腐蚀抑制机理

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摘要

This article details an investigation on the mechanism of corrosion inhibition of mild steel using amylose-acetate-blended carboxymethyl chitosan (AA-CMCh) in acidic media in the context of kinetic and thermodynamic parameters. The surface of mild steel was exposed to test solutions and evaluated using scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDX). The activation energy (E_a), free energy of adsorption (AG), enthalpy of activation (ΔH_(ads)), and entropy of activation (ΔS_(ads)) were determined in order to elucidate the mechanism of corrosion inhibition. The results confirmed that AA could be improved using CMCh as a corrosion inhibitor. The corrosion rate decreased from 1109.00 to 229.70 mdd (79.29%), while corrosion inhibition increased from 35.13 to 89.72%. Sulfate acid (H2SO4) of 0.25 M also helped in decreasing the corrosion rate from 2664.4 to 1041.67 mdd (60.9%) while also in increasing corrosion inhibition from 56.94 to 68.31%. The calculated values for AG, ΔH_(ads) and ΔS_(ads) were-33.22 kJ-mol~(-1),-48.56 kJ-mol~(-1), and 0.0495 kJ-mor~(-1) K~(-1), respectively. The mechanism of corrosion inhibition of mild steel in the acidic condition is dominated and precipitated by the formation of the Fe-chelate compound, which was confirmed by the SEM/EDS spectrum. The reactions were spontaneous, exothermic, and irregular and takes place on the surface of mild steel.
机译:本文详述了在动力学和热力学参数的背景下使用酰胺 - 乙酸酯混合羧甲基壳聚糖(AA-CMCH)在酸性介质中使用碳糖 - 乙酸羧甲基壳聚糖(AA-CMCH)的腐蚀抑制机理研究。将温和钢的表面暴露于试验溶液,并使用扫描电子显微镜(SEM)和能量分散X射线光谱(EDX)评估。测定激活能量(E_A),吸附的自由能量(Ag),激活焓(ΔH_(ADS))和激活熵(ΔS_(ADS)),以阐明腐蚀抑制的机制。结果证实,可以使用CMCH作为腐蚀抑制剂来改善AA。腐蚀速率从1109.00降至229.70 mdd(79.29%),而腐蚀抑制从35.13增加到89.72%。 0.25米的硫酸酸(H 2 SO 4)还有助于将腐蚀速率从2664.4降低至1041.67mdd(60.9%),同时增加腐蚀抑制从56.94至68.31%。 Ag,ΔH_(ADS)和ΔS_(ADS)的计算值为-33.22 kJ-mol〜(-1), - 48.56 kJ-mol〜(-1)和0.0495 kj-mor〜(-1)k〜 (-1)分别。通过形成Fe-Chelate化合物,通过SEM / EDS光谱确认,酸性条件下温和钢的腐蚀抑制机理占主导地位并沉淀。反应是自发的,放热和不规则的,并在低碳钢表面上进行。

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    Department of Chemistry Education Universitas Riau Kampus Binawidya KM 12 5 Pekanbaru 28293 Riau Indonesia;

    Department of Chemistry Education Universitas Riau Kampus Binawidya KM 12 5 Pekanbaru 28293 Riau Indonesia;

    Department of Chemistry Education Universitas Riau Kampus Binawidya KM 12 5 Pekanbaru 28293 Riau Indonesia;

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  • 正文语种 eng
  • 中图分类 化学工业;
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