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Optimum phase-behavior formulation of surfactant/oil/water systems for the determination of chromium in heavy crude oil and in bitumen-in-water emulsion

机译:表面活性剂/油/水系统的最佳相行为配方,用于测定重质原油和水包沥青乳液中的铬

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摘要

Optimum phase-behavior formulation of surfactant/oil/water systems for the determination of chromium in heavy crude oil and in bitumen-in-water emulsion.(Burguera, José L.; Ávila G., Rita M.; Pascu de Burguera, Marcela; Antón, Raquel E.; Salager, Jean Louis; Bracho P., Carlos L.; Burguera Pascu, Margarita; Burguera Pascu, Constantin R.; Brunetto, Rosario; Gallignani, Maximo A.; Petit de P., Yaneira)AbstractAn "oil in water" formulation was optimized to determine chromium in heavy crude oil (HCO) and bitumen-in-water emulsion (Orimulsion-400®) samples by transversally heated electrothermal atomic absorption spectrometry (TH-ET AAS) using Zeeman effect background correction. The optimum proportion of the oil-water mixture ratio was 7:3 v/v (70 ml of oil as the internal phase) with a non-ionic surfactant concentration (lntan-l00) in the emulsion of 0.2% w/w. Chromium was determined in different crude oil samples after dilution of the emulsions 1:9 v/v with a 0.2°/, w/w solution of surfactant in order to further reduce the viscosity from 100 to 1.6 cP and at the same time to bring the concentration of chromium within the working range of the ET AAS technique. The calibration graph was linear from 1.7 to 100 gg Cr 1- t. The sensitivity was of 0.0069 s 1 µg- ', the characteristic mass (mo) was of 5.7 pg per 0.0044 s and the detection limit (36) was of 0.52 pg 1-'. The relative standard deviation of the method, evaluated by replicate analyses of three crude oil samples varied in all cases between 1.5 and 2.6%. Recovery studies were performed on four Venezuelan crude oils, and the average chromium recovery values varied between 95.9-104.8, 90.6-107.6, 95.6-104.0 and 98.8-103.9% for the Cerro Negro, Crudo Hamaca and Boscan crude oils and for the Orimulsion®-400, respectively. The results obtained in this work for the Cerro Negro, Crudo Hamaca and Boscan crude oils and for the Orimulsion('~-400 following the proposed procedure were of 0.448±0.008, 0.338±0.004 0.524±0.021 and 0.174±0.008 mg Cr 1-t, respectively, which were in good agreement with the values obtained by a tedious recommended standard procedure (respectively: 0.470±0.05, 0.335±0.080, 0.570±0.021 and 0.173±0.009 mg Cr 1-t). CC) 2003 Elsevier B.V. All rights reserved.Artículo publicado en: Talanta 61 (2003) 353-361
机译:用于测定重质原油和水包沥青乳液中铬的最佳相行为的表面活性剂/油/水体系配方(Burguera,JoséL .;ÁvilaG.,Rita M .; Pascu de Burguera,Marcela ;拉奎尔·E·安东尼·萨拉格;让·路易斯·萨拉格;玛格丽塔·布拉乔·P·斯库;玛格丽塔·布尔古拉·帕斯库;康斯坦丁·R·伯格拉·帕斯库;罗萨里奥·布鲁内托;罗萨里奥·加里尼亚尼·马克西莫·A;佩蒂特·P。,亚涅拉)通过使用Zeeman效应背景校正的横向加热电热原子吸收光谱法(TH-ET AAS),优化了“水包油”配方,以测定重质原油(HCO)和水包沥青乳液(Orimulsion-400®)中的铬。油水混合比的最佳比例为7:3 v / v(70 ml油作为内相),乳液中非离子表面活性剂的浓度(Intan-100)为0.2%w / w。用0.2°/ w / w的表面活性剂溶液以1:9 v / v的比例稀释乳液后,在不同的原油样品中测定铬,以将粘度从100 cP进一步降低至1.6 cP,同时在ET AAS技术工作范围内的铬浓度。校正曲线在1.7至100 gg Cr 1-t之间呈线性关系。灵敏度为0.0069 s 1 µg-',特征质量(mo)为5.7 pg / 0.0044 s,检测极限(36)为0.52 pg 1-'。通过对三个原油样品进行重复分析评估的方法的相对标准偏差在所有情况下都在1.5%和2.6%之间变化。对四种委内瑞拉原油进行了回收率研究,塞罗内格罗,克鲁多·哈马卡和博斯坎原油以及Orimulsion®的平均铬回收率在95.9-104.8%,90.6-107.6%,95.6-104.0%和98.8-103.9%之间变化。 -400分别。在这项工作中获得的结果是针对塞罗黑人(Cerro Negro),克鲁多哈马卡(Crudo Hamaca)和博斯卡纳(Boscan)原油以及Orimulsion('-400按照建议的程序进行操作)分别为0.448±0.008、0.338±0.004 0.524±0.021和0.174±0.008 mg Cr 1- t,分别与通过繁琐的推荐标准程序获得的值(分别为:0.470±0.05、0.335±0.080、0.570±0.021和0.173±0.009 mg Cr 1-t)相符。CC)2003年Elsevier BV全部保留所有权利。Artículopublicado zh:Talanta 61(2003)353-361

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