• Antimony in the sample solution was determined by Graphite Furnace atomic absorption spectrometry.

    石墨原子吸收分光光度法可确定样品溶液的浓度。

    youdao

  • These include atomic absorption spectrometry, graphite furnace atomic absorption spectrometry (GFAAS);

    包括原子吸收光谱法、石墨原子吸收光谱法(石墨炉);

    youdao

  • The trace vanadium in human hair was determined by using graphite furnace atomic absorption spectrometry.

    研究使用石墨原子吸收测定人体头发痕量的含量。

    youdao

  • Methods Vanadium content in cassia seed was measured by graphite furnace atomic absorption spectrophotometer.

    方法应用石墨原子吸收分光光度法测定富决明子含量

    youdao

  • Methods: Graphite furnace atomic absorption spectrometry was used to determine cadmium content by microwave digestion sample.

    方法采用微波消解样品石墨原子吸收测定含量

    youdao

  • The serum nickel was determined by Zeeman graphite furnace atomic absorption spectrometry and standard addition with calibration.

    的硝酸稀释,石墨标准加入校正、塞曼背景校正,进行血清检测。

    youdao

  • It is simple and quick to determine trace Pb and Bi in pure copper using the graphite furnace atomic absorption spectrophotometry.

    石墨原子吸收光谱法测定痕量,方法可靠,简单快速

    youdao

  • Methods: Using flame atomic absorption spectrophotometry and graphite furnace atomic absorption spectrophotometry to determine the contents.

    建立了微波消解-石墨原子吸收分光光度测定饲料中镉方法

    youdao

  • It studied the conditions and method to measure the content of aluminium in drinking water with graphite furnace atomic absorption spectrometry.

    本文研究了石黑原子吸收测定饮用水中铝含量条件方法

    youdao

  • To determine trace copper and lead and cadmium in water by using the method of Graphite Furnace Atomic Absorption spectrophotometry in the paper.

    石墨原子吸收分光光度水中痕量样品进行测定。

    youdao

  • Aluminum in the wet-digested food was determined by tantalum-coated graphite tube-graphite furnace atomic absorption spectrometry with matrix modifier.

    样品湿法消解后,基体改进剂作用下,采用涂钽石墨管、塞曼校正石墨原子吸收光谱测定食品中铝含量。

    youdao

  • Methods: Pretest samples using mixed acid, and magnesium was adopted as matrix modifier to determine by graphite furnace atomic absorption spectrometry.

    方法利用混合对样品进行消化处理,作为基体改进剂石墨原子吸收光谱法测定

    youdao

  • The conditions and interference restraint for determining trace arsenic in alloy steel by graphite furnace atomic absorption spectrometry were researched.

    研究石墨原子吸收测定合金钢痕量的实验条件干扰抑制方法。

    youdao

  • A method was established to determine trace cadmium in geological samples by rapid temperature programming-graphite furnace atomic absorption spectrometry.

    建立快速程序升温-石墨原子吸收光谱测定地质样品痕量的分析方法

    youdao

  • With the microwave digestion technique and graphite furnace atomic absorption spectrometry method, the trace cadmium in water treatment reagent is measured.

    采用微波制样技术用石墨原子吸收法测定水处理剂聚合氯化铝痕量

    youdao

  • In this paper, lead and cadmium in vegetables were determined by microwave decomposition-graphite furnace atomic absorption spectrometry with microwave digestion.

    本文利用微波消解-石墨原子吸收光谱法测定蔬菜中的

    youdao

  • The mechanism of gallium atomization by graphite furnace atomic absorption spectrometry has been proposed. The enhancement effect of matrix modification is discussed.

    提出了石墨原子吸收法测定原子机理,探讨了基体作用机理。

    youdao

  • Objective: to define the best operation parameter when determining the chromium in cosmetics with graphite furnace atomic absorption spectrophotometric (GFAAS) method.

    前言:目的:选择石墨原子吸收光谱测定化妆品最佳测定条件。

    youdao

  • Graphite Furnace Atomic Absorption Spectrometry for measuring Micro-amount cadmium in Super-pure Chemical Reagents isopropyl alcohol is better sensitivity than the flame.

    研究了超净高纯试剂异丙醇痕量石墨原子吸收光谱测定法。

    youdao

  • A method has been developed for the determination of trace lead in the environmental samples by slurry sampling with graphite furnace atomic absorption spectrometry (GFAAS).

    提出了悬浮液石墨原子吸收光谱法测定环境样品痕量分析方法。

    youdao

  • Objective To establish a method for determination of aluminum in diluted milk samples by graphite furnace atomic absorption spectrometry with furnace interior direct digestion.

    目的建立种无需事先消化测定牛奶稀释中的直接消化石墨原子吸收

    youdao

  • Determination of trace Ba in water by graphite furnace atomic absorption spectrometry is studied. The optimum graphite tube, heating programs and matrix modifier are investigated.

    通过一系列条件试验,研究了石墨原子吸收光谱测定水中微量的石墨管类型、最佳加热程序最佳基体改进剂等。

    youdao

  • A new method was established for the determination of germanium in Chinese herbs, plants and sediment samples by extraction graphite furnace atomic absorption spectrometry (GFAAS).

    建立萃取-石墨原子吸收测定中草药植物样品水系沉积物微量锗的方法。

    youdao

  • After samples were pre-digested, trace cadmium was concentrated by non-ionic surfactant cloud point extraction and determined by the graphite furnace atomic absorption spectrometry.

    样品消解,再非离子表面活性剂萃取富集消解液中的石墨原子吸收光谱法测定镉含量。

    youdao

  • Conclusion: Graphite furnace atomic absorption spectrometry is sensitive, reliable simple and rapid for determination of the increment of nickel soak from the equipment of drinking water.

    结论石墨原子吸收光谱法分析测定涉水产品中增加量种灵敏可靠简便快捷方法。

    youdao

  • A simple and rapid slurry sampling method was established and used for the determination of trace Cu in Marine sediment samples by graphite furnace atomic absorption spectrometry (GFAAS).

    本文研究了一种使用悬浮液石墨原子吸收光谱法快速简便测定近海沉积物痕量

    youdao

  • A method for the determination of gallium by the tantalum foil-lined graphite furnace atomic absorption spectrometry with vanadium and copper as mixed matrix modifier has been investigated.

    提出混合基体改进剂钽管石墨原子吸收测定镓方法

    youdao

  • A method for the determination of Pd and pt in catalyst by graphite furnace atomic absorption spectrometry is introduced, sulfhydryl cotton column is used to separate interferential elements.

    介绍应用石墨原子吸收法测定催化剂分析方法,及可干扰元素去除的巯基分离法。

    youdao

  • A method for the determination of Pd and pt in catalyst by graphite furnace atomic absorption spectrometry is introduced, sulfhydryl cotton column is used to separate interferential elements.

    介绍应用石墨原子吸收法测定催化剂分析方法,及可干扰元素去除的巯基分离法。

    youdao

$firstVoiceSent
- 来自原声例句
小调查
请问您想要如何调整此模块?

感谢您的反馈,我们会尽快进行适当修改!
进来说说原因吧 确定
小调查
请问您想要如何调整此模块?

感谢您的反馈,我们会尽快进行适当修改!
进来说说原因吧 确定