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利用原子吸收光谱法进行地质样品中微量元素含量的测定简便、快速、准确、经济,目前在地质实验室中得到了广泛应用。然而复杂的前处理流程和测试过程都会不可避免地引入不确定度。根据《检验和校准实验室能力的通用要求》,实验室应适当进行测量结果不确定度的评定。本研究利用电热板消解,火焰原子吸收光谱法,测定国家标准岩石样品与采自胶东曲家金矿岩心样品中铜、铅和锌的含量。以空白样品测试结果标准偏差的三倍作为仪器检出限。标准样品及岩心样品测试结果均符合DZ/T 0130.3—2006中关于测试准确度与精密度的要求。在实验室内部,采用自下而上的方法进行测量结果不确定度的评定,确定了测量不确定度的来源,包括样品称量、样品定容、样品消解、标准系列的配制、标准曲线最小二乘拟合及重复性测量,准确计算了六个不确定分量的大小及扩展不确定度。其中,后四个分量是测量结果不确定度的主要来源。结果显示标准样品中铜、铅和锌含量测量结果不确定度均小于标准证书中给定的不确定度,岩心样品中铜、铅和锌的含量分别为(4.965±0.383),(36.415±2.449)和(30.818±0.736)μg·g-1。对六个来源的不确定度进行比较,提出采用该方法测量岩石样品中铜、铅和锌含量时的几点改进:调整取样量或定容体积来提高待测溶液中元素浓度及吸光度、调整标准系列浓度使其与待测溶液中元素浓度相近、增加标准点和待测溶液测量次数、尽量使用相对标准不确定度小的移液管进行稀释操作等。将测量结果不确定度的评定作为有效工具,指导改进分析方法及测试流程,在岩石样品微量元素含量准确测定工作中具有重要的意义。 相似文献
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微波消解-冷原子吸收法测定大米中汞的不确定度评定 总被引:1,自引:0,他引:1
建立对微波消解-冷原子吸收法测定大米中汞含量(GB/T 5009.17-2006)的不确定度评定方法,探寻不确定度的主要影响因素.按方法GB/T5009.17-2006,大米样品进行平行检测,建立数学模型,系统分析和量化不确定度各分量.微波消解-冷原子吸收法测定大米中汞的含量,当称样量为1.000 g,汞含量为0.039 mg/kg,k=2(95%置信度),扩展不确定度为0.009 mg/kg,测量结果表示为0.039士0.009 mg/kg.测量不确定度的来源主要为样品检测的重复性和回收率两方面引起的不确定度,其次为由校准曲线求C0时产生的不确定度. 相似文献
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按照测量不确定度评定的通用规则,建立了数学模型,对氢化物发生-原子荧光光谱法测定食品添加剂磷酸中铅的测量不确定度进行了评定,分析了方法中的不确定度分量及其来源,计算了各分量的不确定度,最后计算出了检测结果的合成标准不确定度和扩展不确定度。检测结果和不确定度评定结果为(0.190±0.006)mg/kg,k=2。结果表明标准溶液配制是氢化物发生-原子荧光光谱法测定食品添加剂磷酸中铅含量不确定度的主要影响因素。 相似文献
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建立有效的数学模型,全面分析了微波消解石墨炉原子吸收光谱法测定山药中镉不确定度的主要来源,并系统地评定各因素的不确定度。结果表明,对于山药中镉含量为25.12μg/kg的样品,扩展不确定度为3.47μg/kg(k=2),最终测量结果表示为25.12±3.47μg/kg。影响最终不确定度的主要有标准溶液配制、测量重复性及样品回收率3个分量,而称重和消解液的定容过程对结果影响较小。通过对测量的不确定度评定,为有效地控制山药中镉含量的检测提供可靠的理论依据。 相似文献
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采用微波消解-火焰原子吸收光谱法对汉中元胡中钾、钙、钠、镁、锌、锰、铜、铁8种金属元素的含量进行测试,测得结果分别为K(2033.97mg/kg)、Ca(600.87mg/kg)、Na(1395.55 mg/kg)、Mg(494.88mg/kg)、Zn(220.36mg/kg)、Mn(107.75mg/kg)、Cu(39.68mg/kg)、Fe(2462.79mg/kg)。相对标准偏差的范围为0.0356%—4.4288%,回收率的范围为96.8%—101.2%。微波消解-火焰原子吸收光谱法是一种简便而又灵敏的测定中草药中微量元素的方法。 相似文献
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ICP-AES分析茶叶中Mg和K含量的不确定度评定 总被引:2,自引:0,他引:2
对用电感耦合等离子体-原子发射光谱法(ICP-AES)测定茶叶中的金属元素Mg、K含量的不确定度来源进行分析和计算.其分析方法的标准不确定度主要来源包括物质称量、线性回归拟合、溶液稀释等过程,并依据不确定度的评定方法计算各不确定度分量,结果表示茶叶中Mg、K的含量依次为1773、16666mg/kg,标准不确定度依次为... 相似文献
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The contents of macro- and microelements in cow, goat, and human milk from Croatia were measured and compared for the first time. The highest concentrations of element were measured in milk cow: calcium 1.4 g/kg, sodium 0.6 g/kg, zinc 4.0 mg/kg, strontium 0.4 mg/kg; goat: magnesium 0.2 g/kg, potassium 2.2 g/kg, iron 0.8 mg/kg, manganese 71 µg/kg, selenium 35 µg/kg, molybdenum 20 µg/kg, chromium 72 µg/kg, lithium 14 µg/kg; and human: copper 193 µg/kg. Equal content of molybdenum (20 µg/kg) was determined in cow and goat milk. Significant differences in element levels between the three species were determined. Concentrations of magnesium, manganese, selenium, chromium, and lithium in goat milk were significantly higher than in cow milk. Significantly lower levels of calcium, potassium, sodium, magnesium, zinc, selenium, and strontium were determined in human milk than in cow and goat milk. Chromium content was significantly higher in goat than in human milk. Copper content in human milk was significantly higher than in cow milk. Correlations, mostly moderate and positive, were found between elements in cow and goat milk. 相似文献
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Jabbar A Tufail M Arshed W Bhatti AS Ahmad SS Akhter P Dilband M 《Isotopes in environmental and health studies》2010,46(4):495-505
In Rechna Doab, samples of the most common vegetation, perennial grass Desmostachya bipinnata (dab), were collected along with soil samples from 29 sites. Natural radioactivity of 22?Ra, 232Th/22?Ac and ??K was measured by using high purity germanium-based gamma ray spectrometer. Activity concentration levels of 22?Ra, 232Th/22?Ac and ??K in soil were found to be 46.8 ± 6.2 (36.0-57.6), 61.4 ± 5.9 (48.2-73.2) and 644.8 ± 73.9 (537.7-868.4) Bq kg?1 (dry mass), respectively, and those in vegetation were 2.74 ± 1.70 (1.00-6.39), 2.24 ± 0.59 (1.56-2.61) and 172.72±113.37 (53.14-469.24) Bq kg?1 (dry mass), respectively. The measured values of the activity concentration in vegetation are comparable with some other international data. Calculated soil to vegetation transfer factors of 22?Ra, 22?Ac and ??K were 0.06 ± 0.03 (0.02-0.14), 0.04 ± 0.01 (0.03-0.04) and 0.26 ± 0.16 (0.09-0.69). The mean outdoor absorbed dose rate in air for the area under study was determined as 8.22 nGy h?1 and the mean indoor absorbed dose rate in air was 11.52 nGy h?1. The total annual effective dose to the general public from the vegetation was found to be (0.02-0.16) mSv, which is below the recommended limit value of 1 mSv y?1 for the general public. The dab vegetation under study was found to be radiologically safe for the population and environment. 相似文献
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采用甲基异丁基甲酮溶解松香,用0.1mol/L盐酸作为水相反萃取其中的重金属,用火焰原子吸收光谱法对铁、镍、铜、铅、锌的含量进行测定。并且探讨了该方法搅拌时间对测定结果的影响及多次测定的重现性。该方法铁、镍、铜、铅、锌的平均回收率为90.9%—95.5%,RSD为1.8%—5.3%,检出限为0.01—0.25mg/L。 相似文献