首页> 外文期刊>The Canadian Journal of Chemical Engineering >Molecular and electronic structure elucidation of Fe2+/Fe3+ complexed chelators used in iron sulphide scale removal in oil and gas wells
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Molecular and electronic structure elucidation of Fe2+/Fe3+ complexed chelators used in iron sulphide scale removal in oil and gas wells

机译:用于油气井中的硫化铁垢面去除的Fe2 + / Fe3 +复合螯合剂的分子和电子结构阐明

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Quantum chemical calculations based on DFT are employed to study the electronic structure and binding affinity of chelators used in the removal of iron sulphide scales. Three chelating agents, EDTA, HEDTA, and DTPA, are considered in this work. The complexes showed a coordination number of 5, 6, and 7 for Fe2+ and Fe3+ ions with HEDTA, EDTA, and DTPA, respectively. However, regarding EDTA, Fe3+ could coordinate with an additional water molecule and form a seven-coordinate complex. The calculated binding energies agreed with the experimental stability constants of the chelators in the order DTPA > EDTA > HEDTA for both Fe2+/Fe3+ complexes. The binding free energies showed a spontaneous reaction with Fe3+ having a stronger binding affinity than Fe2+ due to electrostatic forces. This investigation provides insights regarding how chelators that are applied in iron sulphide scale removal may be designed by increasing the number of nitrogen atoms to above the number of carboxylate groups.
机译:基于DFT的量子化学计算用于研究电子结构和螯合剂中使用的螯合剂的结合亲和力。 在这项工作中考虑了三种螯合剂,EDTA,HEDTA和DTPA。 该配合物分别显示出Fe2 +和Fe3 +离子的配位数为5,6和7,其具有Hedta,EDTA和DTPA。 然而,关于EDTA,Fe3 +可以与额外的水分子坐标并形成七坐标综合体。 计算出的结合能与DTPA> EDTA> HEDTA的螯合剂的实验稳定性常数同意,用于Fe2 + / Fe3 +复合物。 结合的自由能显示出与Fe3 +的自发反应,其由于静电力而比Fe2 +具有更强的结合亲和力。 本研究提供了关于如何通过将氮原子的数量增加到羧酸盐基组的数量的氮原子的数量来设计如何如何设计有关应用于硫化铁垢的螯合剂的见解。

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