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Low cost and rapid analytical technique for determination of niobium and titanium in zirconium alloy

机译:低成本快速分析技术测定锆合金中的铌和钛

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A low cost and rapid analytical technique was developed for determination of major and minor constituents in zirconium alloys. Determination of niobium (Nb) and titanium (Ti) in the bulk matrix of Zr has been done by recording absorption spectra of their peroxy complexes. Samples were initially digested in an acid mixture of HF?:?H2SO4?:?H2O2 (1?:?1?:?1 ratio). The interference from the bulk matrix of Zr and other major alloying elements such as Fe, Sn, Cr and Ni in addition to the interferences from trace elements such as Al, Cd, Co, Cu, Hf, Pb, Mn, W and V have been successfully avoided by forming peroxy complexes of Ti and Nb, using different concentrations of H2O2 and H2SO4. The spectrophotometric measurements were carried out at 310 nm and 410 nm for Nb and Ti, respectively. Determination of other major alloying (Fe, Sn, Cr and Ni) elements were also carried out by UV-Visible spectrophotometry, while detection of Cd, Co, Cu, Pb and Mn were carried out by Atomic Absorption Spectrometer (AAS). Inductively Coupled Plasma Optical Emission Spectroscopy (ICP-OES) was used for the determination of Al, Hf, W and V. The validation of the method used for determination of different elements was done by preparing samples using their respective standard solutions...
机译:开发了一种低成本,快速的分析技术,用于测定锆合金中的主要和次要成分。通过记录过氧化物络合物的吸收光谱,可以测定Zr本体矩阵中的铌(Nb)和钛(Ti)。样品首先在HF3:?H2SO4?:?H2O2(1 ::?1?:?1比例)的酸性混合物中进行消解。除微量元素如Al,Cd,Co,Cu,Hf,Pb,Mn,W和V的干扰外,Zr和其他主要合金元素(如Fe,Sn,Cr和Ni)的体基质中的干扰还有通过使用不同浓度的H2O2和H2SO4形成Ti和Nb过氧化物配合物,成功地避免了上述问题。 Nb和Ti分别在310 nm和410 nm处进行分光光度测量。其他主要合金元素(Fe,Sn,Cr和Ni)也通过紫外可见分光光度法测定,而Cd,Co,Cu,Pb和Mn的原子吸收分光光度计(AAS)进行检测。电感耦合等离子体发射光谱法(ICP-OES)用于测定Al,Hf,W和V.通过使用各自的标准溶液制备样品,对用于测定不同元素的方法进行了验证。

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