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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Development of highly sensitive cadmium ion-selective electrodes by titration method and its application to cadmium ion determination in industrial waste water
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Development of highly sensitive cadmium ion-selective electrodes by titration method and its application to cadmium ion determination in industrial waste water

机译:滴定法开发高灵敏度镉离子选择电极及其在工业废水中镉离子测定中的应用

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摘要

Charateristics of cadmium ion-selective electrode made cadmium sulphide (CdS)-silver sulphide (Ag2S) mixture were studied. CdS-Ag↓(2)S mixtures were obtained by gas/solid-phase reaction between silver-cadmium mixed powder and hydrogen sulphide gas (dry method) and by ionic reaction between cadmium-silver mixed ions and sulphide ion (we method). As a result, it was found that the CdS-Ag↓(2)S mixture had to be made in the condition of excess existence of sulfur and had better regulate the excess sulfur quantity minimum, for the CdS-Ag↓(2)S pressed membrane gave a good Nernstian response against the cadmium ion concentration change, As the best way. CdS-Ag↓(2)S mixture was obtained by adding sulphide ion solution to 5 mol% cadmium ion and 95 mol% silver ion mixed solution while measuring silver sulphide (Ag↓(2)S) electrode potential as an indicator electrode. According to the reaction was stopped when the potential variation from the initial potential in the sulphide ion solution reached at 87-116 mV which the sulphide ion concentration became 10↑(-3)-10↑(-4) of the initial concentration, the cadmium ion membrane pressed diameter of 8and thickness of 2 mm showed a Nernstian response from 10↑(-8)-10↑(-1) M of cadmium ion concentration. Furthermore, aiming to its application for industrial waste water, masking buffer for interfering metal ions such an lead ion (Pb↑(2+)) and copper mn (Cu↑(2+)), which were possibly coexisted and to adjust.total ionic strength and pH of sample was developed. The present Cd↑(2+) ion-selective electrode was applied to the determination of Cd↑(2+) in the industrial waste water. The good regression line with correlation factor of 0.984 was obtained compared with the conventional atomic absorption spectroscopy. # 1997 Elsevier Science B. V.
机译:研究了镉离子选择电极制备的硫化镉(CdS)-硫化银(Ag2S)混合物的特性。 CdS-Ag↓(2)S混合物是通过银-镉混合粉末与硫化氢气体之间的气相/固相反应(干法)以及通过镉-银混合离子与硫化物离子之间的离子反应(我们的方法)获得的。结果发现,对于CdS-Ag↓(2)S,必须在过量存在硫的条件下制备CdS-Ag↓(2)S混合物,并且更好地调节最小过量硫量。压膜对镉离子浓度变化给出了很好的能斯特响应,这是最好的方法。 CdS-Ag↓(2)S混合物是通过将硫化物离子溶液添加到5摩尔%镉离子和95摩尔%银离子混合溶液中,同时测量作为指示电极的硫化银(Ag↓(2)S)电极电位而获得的。当硫化物​​离子溶液的初始电位变为初始浓度的10↑(-3)-10↑(-4)时,根据硫化物离子溶液中初始电位的电位变化达到87-116 mV,反应停止。镉离子膜压制直径为8,厚度为2 mm时,镉离子浓度为10↑(-8)-10↑(-1)M时显示出Nernstian响应。此外,针对其在工业废水中的应用,屏蔽缓冲液可干扰金属离子,例如铅离子(Pb↑(2+))和铜mn(Cu↑(2+)),它们可能共存并进行调整。建立了样品的离子强度和pH值。本发明的Cd↑(2+)离子选择电极用于工业废水中Cd↑(2+)的测定。与常规原子吸收光谱法相比,获得了良好的回归线,相关系数为0.984。 #1997 Elsevier Science B. V.

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