原子发射光谱法
- 名atomic emission spectroscopy
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原子发射光谱法研究SCB放电特性
Research on SCB Discharge Behavior with Atomic Emission Spectroscopy
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本文对应用直流等离子体原子发射光谱法测定天然水中的锂进行了研究。
Determination of lithium in natural water was studied by direct current plasma atomic emission spectroscopy .
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磷酸三丁酯色层分离-电感耦合等离子体原子发射光谱法测定U3Si2中22个微量杂质元素
Chromatographic Separation With Tributyl Phosphate and Inductively Coupled-Atomic Emission Spectrometric Determination of 22 Trace Elements in U_3Si_2
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在线分离富集微波等离子体原子发射光谱法测定Cd,Cu,Zn
Determination of Cd , Cu and Zn by Microwave Plasma Torch Atomic Emission Spectrometry Using an on-line Preconcentration Technique
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ICP原子发射光谱法测定茶叶中的矿物元素
Determining the Mineral Elements in Tea by ICP Spectrometric Method
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方法:采用HPLC梯度洗脱法、电感藕合等离子体原子发射光谱法(ICP-AES)分别测定了补骨脂炮制前后的补骨脂素、异补骨脂素及六种微量元素的含量。
Methods : The content of psoralen , isopsoralen and microelement were obtained by HPLC-gradient elution and ICP-AES .
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方法采用等离子体原子发射光谱法(ICPAES)。
METHODS The inductively coupled plasma atomic emission spectrometry ( ICP-AES ) was used for determination .
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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。
Simultaneous determination of Mn , Ca , Al , Cr and Cu in ferrosilicon by ICP-AES was reported .
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研究了直流等离子体原子发射光谱法同时测定人发中的Zn,Mn,Cu,Fe,Ca。
This article investigates that Zn , Mn , Cu , Fe and Ca in human hair are determined simultaneously by direct current plasma atomic emission spectrometry .
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摘要介绍了用电感耦合等离子体原子发射光谱法(ICP-AES)法测定高温合金中钌元素的分析方法。
A method of determination of Ruthenium in super alloy by inductively coupled plasma-atomic emission spectrometric ( ICP-AES ) is proposed .
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反相色层分离电感耦合等离子体原子发射光谱法测定可燃毒物(Gd,U)O2中12种微量元素
Inductively coupled plasma-atomic emission spectrometric determination of twelve micro elements in burnable poison ( Gd , U ) O_2 after separation by reversed phase chromatography
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研究了用微波诱导等离子体原子发射光谱法(MIP-AES)测定Be、Cr、Mo、V、Zr和Ge。
Determination of Be , Cr , Mo , V , Zr and Ge by microwave induced plasma atomic emission spectrometry was investigated .
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采用电感耦合等离子体原子发射光谱法(ICP-AES)进行方铅矿中多元素同时测定。
A method for simultaneous determination of multi elements in galena by inductively coupled plasma atomic emission spectrometry ( ICP-AES ) was studied .
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文中用微波等离子体炬(MPT)为激发光源,氩气为等离子体工作气体,用气动雾化进样,研究了微波消解微波等离子体炬原子发射光谱法(MPTAES)测定葡萄酒中的铅元素的方法。
Microwave plasma torch atomic emission spectrometry ( MPT-AES ) was used to determine lead in wine after digestion .
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介绍了电感耦合等离子体原子发射光谱法连续测定镉镍电池正极物质中Ca、Mg、Ba、Fe四元素。
The analytical method for simultaneous determination of Ca , Mg , Ba and Fe elements in positive material for Ni-Cd battery by means of Inductively Coupled Plasma Atomic Emission Spectrometry were introduced .
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实验结束后,用电感耦合等离子体原子发射光谱法(icp-aes)分别测定全血、肝、肾、股骨和大脑中铝和铅的含量。
At the end of experiment , Al and Pb levels in whole blood , liver , kidney , femur and cerebrum were measured by ICP aes .
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高效液相色谱分析阿维菌素(AVM)乳浊液中有效成分B(1a)和B(1b)乳浊液进样-火焰原子发射光谱法测定润滑脂中的锂和钙
Study on HPLC method for determining avermectin B_ ( 1a ) and B_ ( 1b ) Determination of Lithium and Calcium in Lubricating grease by Emulsion Sampling-flame Atomic Emission Spectrometry
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对电感耦合等离子体原子发射光谱法(ICPAES)测定金属硅中铁杂质含量的不确定度进行了合成和评估。
The combination and estimation of the uncertainty in the determination of Fe in metallic silicon using Inductively Coupled Plasmas Atomic Emissive Spectrometry ( ICP-AES ) is described .
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本文建立了用超声波辅助提取,氢化物发生-电感耦合等离子体原子发射光谱法测定中草药雷公藤中可溶态Sb(Ⅲ)和Sb(Ⅴ)的分析方法。
A method for the determination of water-soluble antimony (ⅲ) and antimony (ⅴ) in Leigongteng using ultrasound-assisted extraction by hydride generation inductively coupled plasma atomic emission spectrometry was developed in the present paper .
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火焰原子发射光谱法(FAES)常用于分析检测碱金属各元素。
Flame atomic emission spectrometry ( FAES ) is frequently used to analyze various alkaline elements .
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研究了甲基异丁基酮(MIBK)萃取分离金,用电感耦合等离子体原子发射光谱法(ICPAES)测定镀金液中杂质元素的新方法。
After extraction separation of gold by MIBK , lead , copper , iron , nickel in gold plating bath were determined by inductively coupled plasma-atomic emission spectrometry ( ICP-AES ) .
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以聚四氟乙烯(PTFE)悬浮体为化学改进剂,采用原位分离基体电热蒸发电感耦合等离子体原子发射光谱法(ETV-ICP-AES)测定了二氧化锆中痕量杂质Fe,Al和Ni。
A novel method for the analysis of ZrO_2 powder via in-situ separation of the matrix from the analytes is described , based on the use of a polytetrafluorethylene ( PTFE ) emulsion as a chemical modifier .
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报道了以聚四氟乙烯悬浮体(PTFE)为化学改进剂,采用电热蒸发电感耦合等离子体原子发射光谱法(ETV-ICP-AES)直接分析中药绞股蓝中微量元素Cu、Mn、Cr、Fe、Zn。
Based on using polytetrafluoroethylene ( PTFE ) as chemical modifier , a method for direct determination of microamounts of elements in Chinese Medicine Jiaogulan was developed by electrothermal vaporization inductively coupled plasma atomic emission spectrometry ( ETV-ICP-AES ) .
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分别使用常规消解方法与微波消解方法处理海带样品,采用微波等离子体炬原子发射光谱法(MPT-AES)测定海带中钙和锌的含量。
Microwave plasma torch atomic emission spectrometry ( MPT-AES ) was used to determine the content of calcium and zinc in kelp after being digested .
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火花激发原子发射光谱法应用于直径小于8mm的不锈钢线材的分析,对此类试样应用了一种特制的夹具,用块状标准样品制作工作曲线。
Atomic emission spectrometry with spark discharge excitation was applied to the analysis of samples of stainless steel wires with diameter smaller than 8 mm . A specially designed clamping apparatus was used for such samples .
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采用微波消解方法处理汽油样品,用微波等离子体炬原子发射光谱法(MPT-AES)测定消解液中的铜和铁含量。
A method for the determination of trace copper and iron in gasoline by microwave plasma torch-atomic emission spectrometry ( MPT-AES ) with microwave digestion for sample pretreatment was developed .
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本文研究了在大量Li+、Na+、K+、Ca2+和Mg2+离子存在时,通过在线清理用微波等离子体炬原子发射光谱法(MPTAES)测定Pd、Pt和Au三种元素的可能性。
In this paper , in the presence of Li + , Na + , K + , Ca 2 + and Mg 2 + , determinations of Pd , Pt and Au by microwave plasma torch atomic emission spectrometry ( MPT-AES ) using an on-line clean-up were studied .
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本文对微波诱导等离子体原子发射光谱法(MIPAES)测定铝进行了研究,考察了微波功率、载气流量,酸浓度及一些附随物对铝发射强度的影响。
The determination of aluminum by microwave induced plasma-atomic emission spectrometry was investigated . The influence of microwave power , carrier gas flow rate , concentration of acids and some concomitants on emission intensity of aluminum was examined .
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原子发射光谱法测定镁砂中的硅和铁
Determination of Silicon and Iron in Magnesite by Atomic Emission Spectrometry
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等离子体原子发射光谱法测定高纯碲锭中杂质元素的研究
ICP-AES Method for the Determination of Impurities in High Purity Tellurium