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首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >RP-HPLC Study of Redox Equilibria in Vanadium-PAR Binary and Ternary Systems: Direct Determination of Vanadium in Steel
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RP-HPLC Study of Redox Equilibria in Vanadium-PAR Binary and Ternary Systems: Direct Determination of Vanadium in Steel

机译:RP-HPLC研究钒-PAR二元和三元体系中的氧化还原平衡:直接测定钢中的钒

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摘要

The re versed-phase high-performance liquid chromatographic (RP-HPLC) behaviour of the binary chelates of V(V) and V(IV) with 4-(2-pyridylazo) resor-cinol (PAR) and ternary chelates of vanadium with PAR and auxiliary ligands: hydrogen peroxide, hy-droxylamine, tartrate and citrate were studied using a C18 column. The complex double-peak chromato-grams of V(IV)/V(V)-PAR systems were studied and the origin of each peak was proved. Vanadium in ternary systems with PAR and hydrogen peroxide was found exclusively in V(V)-H2O2-PAR complex (single peak on the chromatogram) despite its initial oxidation state. The double role of hydroxylamine (complex agent and reductor) in vanadium systems with PAR was confirmed: in the V(V) system three species were identified (V(V)-PAR, V(V)-NH2OH-PAR and V(IV)-PAR), but in the V(IV) system only two: V(IV)-PAR and V(V)-NH2OH-PAR. Citrate and tartrate giving single peak were found as auxiliary ligands in ternary V(V) systems of analytical importance. Due to its masking potential towards iron (III) ions, citrate was chosen as the most suitable third component of a ternary vanadium system with PAR, to form the basis of an RP-HPLC method for direct determination of V in steel.
机译:V(V)和V(IV)与4-(2-吡啶基偶氮)间苯二酚(PAR)的二价螯合物和钒与V-的三元螯合物的反相高效液相色谱(RP-HPLC)行为PAR和辅助配体:使用C18色谱柱研究了过氧化氢,羟胺,酒石酸盐和柠檬酸盐。研究了V(IV)/ V(V)-PAR系统的复峰色谱图,并证明了每个峰的起源。尽管具有初始氧化态,但在V(V)-H2O2-PAR络合物(色谱图中的单个峰)中仅发现了具有PAR和过氧化氢的三元体系中的钒。证实了羟胺(络合剂和还原剂)在具有PAR的钒系统中的双重作用:在V(V)系统中,鉴定出三个物种(V(V)-PAR,V(V)-NH2OH-PAR和V(IV )-PAR),但在V(IV)系统中只有两个:V(IV)-PAR和V(V)-NH2OH-PAR。在具有重要分析意义的三元V(V)系统中,柠檬酸和酒石酸产生单峰被发现是辅助配体。由于其对铁(III)离子具有掩盖潜力,因此柠檬酸被选为具有PAR的三元钒系统中最合适的第三种成分,从而构成了直接测定钢中V的RP-HPLC方法的基础。

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