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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >NON-EXTRACTIVE SPECTROPHOTOMETRIC DETERMINATION OF VANADIUM(V) IN ALLOYS AND ENVIRONMENTAL, BIOLOGICAL AND SOIL SAMPLES USING 5,7-DIBROMO-8-HYDROXYQUINOLINE
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NON-EXTRACTIVE SPECTROPHOTOMETRIC DETERMINATION OF VANADIUM(V) IN ALLOYS AND ENVIRONMENTAL, BIOLOGICAL AND SOIL SAMPLES USING 5,7-DIBROMO-8-HYDROXYQUINOLINE

机译:5,7-二溴-8-羟基喹啉的非萃取分光光度法测定合金中钒(V)及环境,生物和土壤样品

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An ultra-sensitive and highly selective non-extractive spectrophotometric method is presented for the rapid determination of vanadium(v) at trace levels using 5,7-dibromo-8-hydroxyquinoline (DBHQ) as a new spectrophotometric reagent (lambda(max) = 400 nm) in slightly acidic solution (0.00015-0.016 mol(-1) sulfuric acid). The reaction is instantaneous and the absorbance remains stable for over 48 h. The average molar absorption coefficient and Sandell's sensitivity were found to be 6.1 x 10(3) l mol(-1) cm(-1) and 0.015 mu g cm(-2) of V-V, respectively. Linear calibration graphs were obtained for 0.1-20 mu g ml(-1) of V-V: the stoichiometric composition of the chelate is 1:3 (V:DBHQ). Large excesses of over 50 cations, anions and complexing agents (e.g., tartrate, oxalate, citrate, phosphate, thio-urea, SCN-) do not interfere in the determination. The method was successfully used in the determiantion of vanadium in several Standard Reference Materials (alloys and steels) as well as in some environmental waters (potable and polluted), biological samples (human blood and urine), soil samples and complex synthetic mixtures. The method has high precision and accuracy (s = +/- 0.01 for 0.5 mu g ml(-1)). [References: 30]
机译:提出了一种超灵敏,高度选择性的非萃取分光光度法,使用5,7-二溴8-羟基喹啉(DBHQ)作为新的分光光度法(lambda(max)= 400 nm)在弱酸性溶液(0.00015-0.016 mol(-1)硫酸)中。反应是瞬间的,吸光度保持稳定超过48小时。 V-V的平均摩尔吸收系数和Sandell的灵敏度分别为6.1 x 10(3)l mol(-1)cm(-1)和0.015μgcm(-2)。对于V-V的0.1-20μgml(-1)获得了线性校准图:螯合物的化学计量组成为1:3(V:DBHQ)。大量过量的50多种阳离子,阴离子和络合剂(例如酒石酸盐,草酸盐,柠檬酸盐,磷酸盐,硫脲,SCN-)不会影响测定。该方法已成功用于多种标准参考材料(合金和钢)以及某些环境水(饮用水和污染的),生物样品(人血和尿液),土壤样品和复杂的合成混合物中钒的测定。该方法具有很高的精度和准确性(0.5μg ml(-1)的s = +/- 0.01)。 [参考:30]

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