Tests were studied to make an approach to ferroboron by ICP - AES technology.
为建立用ICP -AES 技术分析测定硼铁的方法开展了试验研究.
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The conditions for determination of Si in Cooper - alloy by ICP - AES were studied.
研究了ICP -AES 法测定铜合金中微量硅的最优化条件.
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Tantalum in metal terbium is determined by ICP - AES , the result is pleased.
采用ICP -AES 法测定金属铽中钽, 结果令人满意.
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The RE impurities in gadolinium oxide are determined by ICP - AES .
采用ICP -AES 法测定氧化钆中稀土杂质,考察了基体浓度、酸度对被测元素的影响.
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The application of platform technique in ETV - ICP - AES was also explored.
本文还探索了平台技术在ETV-ICP-AES 中的应用.并相应得出了一些有益的结论.
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Determination method of Pd content in hydrotreating catalyst by ICP - AES was established.
建立了采用电感耦合等离子体发射光谱(ICP -AES )测定加氢催化剂中钯含量的方法.
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Methods: The copper content was determined by atomic absorption spectrophotometry ( AAS ) and inductively coupled plasma atomic emission spectrometry ( ICP - AES ).
方法采用原子吸收分光光度法 ( AAS ),电感耦合等离子体原子发射光谱法 ( ICP -AES ) 分别测定铜含量.
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Objective To probe into the method of ICP - AES simultaneous measurement of multiple microelements in tuckahoe.
目的探讨电感耦合等离子体原子发射光谱法(ICP -AES )同时测定茯苓中多种微量元素的方法.
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This paper, the contents of K, Na, Ca and Mg in rainfall are determined simultaneously by ICP AES.
本文采用ICP-AES法同时测定降水中K 、 Na 、 Ca、Mg的含量.
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A new method analysis of whole coal for the major ash forming elements by ICP - AES.
本文提出了一种全新的以酸直接提取煤中的矿物元素、ICP -AES 测定其含量的方法.
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The determination of Wolfram in low alloy steel with ICP - AES method is studied.
研究了用ICP -AES 法测定低合金钢中元素钨的测定方法.
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A method for determination of Al, Ag , Bi , Cu , Cd , Co , Fe , Ni , Pb , Mg , Sn, Se, Zn in tellurium ingot by ICP AES were studied.
本文介绍了采用电感耦合等离子体发射光谱法(ICP-AES)测定碲锭中Al 、 Ag 、 Bi 、 Cu 、 Cd等13个杂质元素的方法.
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Simultaneous determination of Mn, Ca, Al, Cr and Cu in ferrosilicon by ICP - AES was reported.
摘要报道了硅铁中锰 、 钙 、 铝 、 铬及铜五元素的电感耦合等离子原子发射光谱法(ICP-AES)同时测定方法.
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This paper introdutal application of ICP - AES in environmental monitoring, emphasized on methods ofUSEPA, APHA - AWWA - WPCE and Л S.
介绍了ICP - AES在环境监测中的应用.重点介绍了USEPA 、 APHA - AWWA - WPCE和JIS采用 的ICP- AES的方法.
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Since ICP - AES has been widely applied, normal ICP can not adequate for trace element analysis.
随着ICP -AES 的广泛应用, 传统的侧视ICP已不能够满足痕量元素的分析需要.
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