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1)  vapor generation
化学蒸气发生
1.
Determination of the soluble trace Cd in the textile fabric and leather by chemical vapor generation and atomic fluorescence spectrometry;
化学蒸气发生-原子荧光光谱法测定皮革和纺织品中可溶性痕量镉
2)  electrochemical cold vapor generation
电化学冷蒸气发生
1.
A method for determining mercury was developed using an intermittent flow electrochemical cold vapor generation coupled with atomic fluorescence spectrometry(ECVG-AFS).
在断续流动条件下,采用自制的电化学流通池作为汞蒸气发生器,建立了电化学冷蒸气发生法-原子荧光光谱联用技术对汞的分析方法。
2.
A sensitive method for determination of mercury was developed using an intermittent flow electrochemical cold vapor generation coupled with atomic fluorescence spectrometry (ECVG-AFS).
在断续流动条件下,采用自制的电化学流通池作为汞蒸气发生器,建立电化学冷蒸气发生法-原子荧光光谱联用技术对汞的分析方法。
3)  Chemical vapor generation
蒸气发生
1.
Although the technique of chemical vapor generation has been developed forover l00 years, it sill plays an important role in modern analytical atomicspectrometry until today The technique has become popular fOr thedetermination of trace elements in the complex matrices and new aPproachescontinuously comes forth to improve the sensitivity and expand the scope ofaPplications.
尽管元素的蒸气发生技术发展到今天已经有一百多年的历史,但这项技术在现代分析科学中仍然扮演着重要的角色,并且仍在不断的创新、发展。
4)  Vapour generation
蒸气发生
1.
Vapour generation inductively coupled plasma mass spectrometry in determination of iodine;
蒸气发生-电感耦合等离子体质谱法测定碘
5)  chemical vapor generation-atomic fluorescence spectrometry
化学蒸气发生体系原子荧光光谱法
6)  gasification and evaporation
气化蒸发
补充资料:工程化学障碍物(见化学障碍物)


工程化学障碍物(见化学障碍物)
engineering-chemical obstacle

  习U·上日、11匕I一9 nuQXue Zhang’aiwu工程化学障碍物(engineelsng一ehemiealobstacle)见化学障碍物。
  
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