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1)  ICP-AES
ICP
1.
Simultaneous Determination of Nb in Steel by ICP-AES;
ICP-AES法测定稀土钢中铌量
2.
Determination of Ba content in Si-Al-Ba Alloys by ICP-AES;
ICP—AES法测定硅铝钡合金中的钡
3.
Determination of Six Trace Elements in Serum of Diabetes Child by ICP-AES;
ICP-AES法测定糖尿病患儿血清中6种微量元素
2)  ICPAES
ICP-AES
1.
Determination of La,Ce,Fe,Al,Pb and Cd in RZnAl5RE Alloys by ICPAES;
ICP-AES法测定RZnAl5RE合金中的镧、铈、铁、铝、铅、镉
2.
Determination of Scandium in Titanium Dioxide Waste Acid Produced by Sulfuric Acid by Solvent Extraction ICPAES Method;
溶剂萃取ICP-AES法测定硫酸法钛白废酸中的钪
3.
Study on the Determination of Boron in Quick Adhesive by ICPAES;
ICP-AES法测定快干胶中硼的研究
3)  Inductively coupled plasma-atomic emission spectrometry
ICP-AES
4)  ICP method
ICP法
1.
The determination of trace mercury content in brine by ICP method;
ICP法测定盐水中的微量汞
5)  ICP AES
ICP-AES
1.
STUDY ON THE DETERMINATION OF SILICON MANGANESE AND PHOSPHOROUS IN PIG IRON BY ICP AES;
ICP-AES法测定生铁中硅锰磷的研究
2.
The Analysis of Microelements in Snere by ICP AES;
ICP-AES法对蛇体内微量元素Se、As、Sn、Cr、Te的分析
3.
Determination of Five Trace Elements in Semen Ciceris Arietini Powder of Xinjiang by ICP AES;
ICP-AES法测定新疆鹰嘴豆粉中5种微量元素
6)  ICP MS
ICP-MS
1.
The metabolic accumulation and species of rare earth in rat liver were investigated by ICP MS and chromatography after the rats were fed by a low dose of mixed rare earth for a long time or the administration of a high dose of lanthanum for a short time.
采用 ICP-MS、微量蛋白层析分离技术 ,研究了长时间、低剂量混合稀土及短时间、高剂量硝酸镧分别对大鼠及小鼠作用后 ,稀土在鼠肝中的代谢累积及其物种分布 。
2.
Analytical methods for precise determination of major and trace elements in silicate rocks using ICP AES and ICP MS are reported, with special attention to the sample digestion techniques of alkali fusion and acid dissolution.
报道了采用酸溶和碱熔分解硅酸盐岩石样品、用ICP-AES和ICP-MS联合测定岩石的主元素和微量元素的分析方法。
3.
Inductively coupled plasma mass spectrometry (ICP MS) is used to determine trace elements in fluid inclusions.
ICP-MS测定了黔西南烂泥沟和丫他卡林型金矿床石英流体包裹体中的Co、Ni、Cu、Pb、Zn和Pt等元素的含量。
补充资料:ICP
分子式:
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性质:一种利用高频感应电流产生的类似火焰的原子发射光谱的激发光源。试样溶液经喷雾器雾化成气溶胶,冷却除溶剂后,溶质以干的气溶胶进入等离子体焰炬,在9000~10000开的高温下激发并发射出特征谱线。这种光源的特点是激发温度高,因此离子线的强度大;原子化的温度高,谱线强度大,化学干扰少,基体效应小;稳定性好;由于在惰性气体中激发,光谱背景小。

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