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Development of an UV-Vis Spectrophotometric Method for Accurate Determination of Aqueous Sulphides in Exotic Scale Studies

机译:uV-Vis分光光度法的发展,用于精确测定异种规模研究中硫代硫化物的水溶液

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An analytical technique was developed to directly determine the concentration of aqueous sulphide in exotic scale studies.The technique is based on measuring the absorbance of sulphide samples in a copper reagent using an ultra-violet visible(UV-Vis)spectrophotometer.Calibration curves,generated using stock sodium sulphide solutions,were compared and validated against earlier reports in the literature. The instantaneous reaction of a stirred(1000 rpm)sulphide solution and a copper reagent produces copper sulphide nano-particles,which turn the solution colour from light blue to brown.Increasing concentrations of sulphides give more intense shades of brown,resulting in increased absorbance values when analyzed by UV-VIS at a wavelength of λ = 480 nm.The absorbance readings are proportional to the sulphide concentrations in the samples,thus generating a calibration curve. The repeatability of these absorbance measurements has an average standard deviation of 1.9% and a correlation coefficient(R2)of 0.9998 over a range of 7-386 mg/L sulphide species in synthetic brines.The determination of sulphide concentrations from absorbance readings using a 2nd order polynomial equation reveals average variations of ±1.2 and ±9.67 mg/L over the ranges of 7-70 and 105-386 mg/L,respectively. Furthermore,this technique was able to determine excess sulphide concentrations in solutions containing sulphide scale particles,as long as only clear filtered samples were analyzed.An alternative copper chloride reagent was used to prevent the formation of sulphate scale when barium or strontium ions were present in the brine being examined. Comparing the results from the new detection method against the currently used technique reveals higher accuracy and practicality for the straightforward UV-VIS technique over the ICP analysis of quenched solutions.The new detection method allowed for the determination of any oxidative effects on the sulphide solutions,which is not identifiable using ICP.
机译:开发了一种分析技术以直接确定异种量表研究中硫化含水水溶液的浓度。技术基于使用紫外可见(UV-VI)分光光度计来测量铜试剂中硫化物样品的吸光度。曲线,产生使用股票硫化钠溶液进行比较,并验证文献中的早期报告。搅拌(1000rpm)硫化物溶液和铜试剂的瞬时反应产生硫化铜纳米颗粒,其将溶液颜色从浅蓝色转向棕色。硫化物的浓度呈现更强烈的棕色色调,导致吸光度值增加当通过λ= 480nm波长的UV-VI进行分析。吸光度读数与样品中的硫化物浓度成比例,从而产生校准曲线。这些吸光度测量的可重复性平均标准偏差为1.9%,相关系数(R2)为0.9998的合成盐水中的硫化硫化硫化物物种。使用2nd测定硫化物浓度的硫化物浓度订单多项式方程分别显示出平均变化±1.2和±9.67mg / L的范围,分别为7-70和105-386 mg / L。此外,该技术能够确定含有硫化物垢颗粒颗粒颗粒的溶液中的过量硫化硫化物浓度,只要分析透明的过滤样品即可使用替代的氯化铜试剂来防止当钡或锶离子存在时形成硫酸盐量表被检查的盐水。与目前使用的技术的新检测方法的结果进行比较,揭示了对淬火溶液ICP分析的直接UV-VI技术的更高的准确性和实用性。新的检测方法允许测定硫化物溶液的任何氧化作用。使用ICP不可识别。

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