• 方法离子交换基体分离然后氢化发生原子吸收光谱法测定

    Arsenic is separated from the bismuth matrix by ion exchange method and determined by hydride generation atomic absorption spectrophotometry.

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  • 应用微波消解技术原子荧光光谱仪氢化物发生原子荧光光谱测定山梨糖醇研究

    A method for determination the content of arsenic in sorbitol solution by the technology of microwave digestion and hydride generation —atomic fluorescence spectrometry was studied.

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  • 本文提出氢化硝酸反应基础试样溶液连续测定微量分光光度法。

    The continuous determination of arsenic and lead in the solution of the same sample by spectrophotometry is described, based on the reaction between hydrides and silver nitrate.

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  • 建立了一种微波消解土壤样品,氢化发生原子荧光测定土壤含量方法。

    We determined content of arsenic in soil by hydride generating atom fluorescence method with microwave dispel soil sample.

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  • 用用微波消解处理富含油脂油菜籽样品,氢化原子荧光光谱法(HG - AFS)测定其中的汞。

    The As, HG in rapeseed rich in oil were treated by microwave method and determined by hydride generation-atomic fluorescence spectrometry (HG-AFS).

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  • 方法采用微波消解样品氢化原子吸收测定含量

    METHODS: Hydride generation atomic absorption spectrometry was used to determine arsenic by microwave digesting sample.

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  • 提出流动注射离子交换在线分离-氢化物发生原子荧光光谱法测定钢铁样品痕量分析方法。

    The technique combining the flow injection system of on-line ion-exchange with hydride generation-atomic fluorescence spectrometry was proposed for the determination of the trace Arsenic in steel.

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  • 目的研究氢化物发生—原子荧光测定适宜条件

    To study the proper condition of using atomic fluorescence spectrometry to determine arsenic hydride in the pig kidneys.

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  • 选择适当的化妆品前处理方法应用氢化发生原子荧光光谱法对膏类化妆品中的进行测定

    Choosing appropriate pre-digestion method to cosmetic, detecting Arsenic in poultice cosmetic and foodstuff by hydride atomic fluorescence spectrometry was applied.

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  • 采用氢化物发生-电热石英管-原子吸收光度法对土壤海水海洋生物及人尿样不同形态的进行了广泛的分析测定

    Different arsenic species in soils, sea waters, Marine organisms and urine are determined by using the hydride generation-electrothermal quartz furnace-atomic absorption spectrometry.

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  • 采用氢化原子吸收测定样品痕量,对于样品前处理采用氢化物法测定含量时,的不同价态及共存离子的影响分别进行了探讨。

    Determination of trace arsenic from water sample by hydride atom absorption, and effect of valence number of arsenic and varied coexisting ions on the determination were discussed.

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  • 利用氢化物发生-原子荧光分析技术HG-AFS同时测定水样中汞

    The analytical technique, hydride generation-atomic fluorescence spectrometry(HG-AFS), is used to determine hydrargyrum and arsenic in water sample simultaneously.

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  • 本文采用氢化物无色散原子荧光测定粮食土壤微量含量

    The quantity of trace arsenic in grain and soil was determined by hydride nondispersion atomic fluorescence method.

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  • 本文介绍了硼氢化钾还原氢化法—原子吸收快速测定海洋沉积物悬浮物痕量方法

    A method for rapid determination of Arsenic in Marine sediments and suspended matters by hydride generation and atomic absorption spectrophotometer is described.

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  • 试验了酸介质悬浮液粒度、悬浮液浓度因素氢化物发生效率影响

    The effect of various factors such as various arid mediums and the particle size of slurry and slurry concentration etc. is tested.

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  • 采用微波消解-氢化物发生-原子荧光光谱法L -半胱氨酸还原法,染料进行了分析,讨论并确定了实验最佳测定条件。

    The method of determination, after L-cysteine pre-reduction, with microwave digestion-hydride generation-atomic fluorescence spectrometry was used to analyze the arsenic and stibium in dyestuffs.

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  • 目的建立氢化-原子荧光测定水处理剂聚合氯化铝硫酸铝方法。

    Objective: to establish a method of hydride generation-atomic fluorescence spectrometer (HG-AFS) for the determination of arsenic in poly-aluminium sulfate and poly-aluminium chloride.

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  • 氢化水合物

    Disodium hydrogen arsenate heptahydrate; Sodium hydrogen arsenate heptahydrate;

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  • 氢化水合物

    Disodium hydrogen arsenate heptahydrate; Sodium hydrogen arsenate heptahydrate;

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