1) helium ionization chromatograph
氦离子化色谱法
2) helium ionization
氦离子化
1.
The mechanism and construction of the helium ionization detector(HID) were introduced.
论述了氦离子化气相色谱仪的原理、构造以及与该仪器应用密切相关的多种影响因素 。
3) ion chromatography
离子色谱法
1.
Uncertainty of evalution measurement of bromate in wheat flour by regent free ion chromatography method;
免化学试剂-离子色谱法测定小麦粉中溴酸钾的不确定度评定
2.
Determination of water hardness with Ion Chromatography;
离子色谱法测定水质总硬度
3.
Application of ion chromatography on detection of food additives;
离子色谱法在食品添加剂检测中应用
4) Ion-chromatography
离子色谱法
1.
Ion-chromatography with depressed conductivity detection was applied to the determination of K,Ca and Mg present as impurities in lithium phosphate.
对离子色谱法测定磷酸锂中钾、钙、镁杂质离子的方法进行研究。
2.
Based on the study of SO_4~(2-) detection in standard solution by ion-chromatography,this article analyzed the sources of uncertainty,and evaluated various factors of uncertainty.
通过对离子色谱法测定标样中硫酸根含量的过程研究,分析了该方法测定结果的不确定度来源,并对各不确定度分量进行了评定。
3.
In the paper,a research on the determination of water soluble chloride in iron ore by the way of ion-chromatography was discussed.
文章研究了离子色谱法测定铁矿石样品中水溶性氯化物。
5) ion chromatographic method
离子色谱法
1.
An ion chromatographic method was studied and established for measuring fluorine content in water,which shown high-resolution,high sensitivity and finer repeatability.
研究和建立了一个用于测定水中氟含量的高分辨、高灵敏和高重复性的离子色谱法,并辅以氟试剂-分光光度法进行了核实。
6) ion chromatography(IC)
离子色谱法
1.
Objective:To establish an assay method of determination for potassium aspartate and magnesium aspartate in potassium and magnesium aspartate tablets by ion chromatography(IC).
目的:建立抑制型离子色谱法测定门冬氨酸钾镁片中门冬氨酸钾和门冬氨酸镁的含量。
2.
A method for the determination of phosphate,pyrophosphate,metaphosphate and total phosphorus in seafoods by ion chromatography(IC)was developed.
建立了离子色谱法测定海产品中磷酸盐、焦磷酸盐、偏磷酸盐和总磷的分析方法。
补充资料:氦离子化检测器
分子式:
CAS号:
性质:又称氦离子化检测器。载气氦受β粒子轰击而获得能量,使自身处于具有较高能量的激发态。当试样分子进入后,激发态氦将能量转移给试样分子,并使之离子化。由收集离子流而输出信号。对有机物和无机物均响应。主要应用于超纯气体分析。
CAS号:
性质:又称氦离子化检测器。载气氦受β粒子轰击而获得能量,使自身处于具有较高能量的激发态。当试样分子进入后,激发态氦将能量转移给试样分子,并使之离子化。由收集离子流而输出信号。对有机物和无机物均响应。主要应用于超纯气体分析。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条