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1)  quasi-gaseous state reaction method
准气相反应法
1.
The ZrO_2 microspheres with a smooth surface have been successfully synthesized by a novel quasi-gaseous state reaction method.
采用新颖的准气相反应法,合成出了球形度好、表面光滑的ZrO_2微球。
2)  gas-state reaction
气相反应法
1.
Using gas-state reaction,Nanometer WO_3 was synthesized by gasstate reaction with tungsten filament, WO_3 mixed with TiO_2 made by Sol-gel method was made up into gas-sensor to H_2S.
采用气相反应法,以纯钨丝为原料,制备了WO3粉末,又以此WO3粉末为基材,掺用溶胶--凝胶制成的TiO2,制作了H2S气敏传感元件。
2.
Nanometer WO_3 was synthesized by gas-state reaction with tungsten filament and made into gas-sensor to NO_2.
用气相反应法,以纯钨丝为原料,制备了WO3粉末,又以此WO3粉末为基材,制作了NO2气敏传感元件。
3.
Nanometer WO_3 was synthesized in a new designed instrument by gas-state reaction with tungsten filament.
我们创新性地设计了一套实验装置,采用气相反应法,以纯钨丝为原料, 制备WO_3 纳米气敏材料。
3)  reaction-gas chromatography
反应-气相色谱法
1.
A method is developed for the determination of trace amount of CO and CO, gases by reaction-gas chromatography.
提出了用反应-气相色谱法测定微量CO和CO2气体的方法。
4)  atmosphere solid phase reaction
气氛固相反应法
1.
In this dissertation, semiconductor sufide pigments were prepared by Ar atmosphere solid phase reaction through the orthogonal test.
本课题首先采用气氛固相反应法制备出了硫化物固溶体粉末颜料,并用正交实验法对工艺参数进行优化设计。
2.
Semiconductor sufide pigments were prepared by Ar atmosphere solid phase reaction with CdS,ZnS powders as reagents.
以CdS、ZnS等为原料,通过Ar气氛固相反应法分别在700、800、900、1000℃制备了硫化物固溶体颜料,并分别采用X射线衍射仪(XRD)、X射线能谱仪(EDS)、扫描电镜(SEM)对粉体进行结构、成分、形貌表征,通过IR-2型发射率测试仪测试粉体在8- 14μm波段的红外发射率。
5)  reaction gas chromatography
反应气相色谱法
6)  gas-phase reaction
气相反应
1.
We tailed after the gas-phase reaction of β-pinene and OH radical using LP-FTIR.
利用LP-FTIR系统跟踪β-蒎烯和OH自由基的气相反应,研究了反应混合物随反应时间的变化情况,初步确定了反应中主要羰基产物诺蒎酮、甲醛、甲酸等随反应时间的生成情况,定性讨论了反应的可能机理,为进一步定量分析提供了基础。
2.
The catalytic performance of copper-nickel oxalate catalysts prepared by concurrent coprecipitation was studied in the gas-phase reaction of p-cymene synthesis by dehydrogenation of industrial dipentene.
研究了并流共沉淀法制备的草酸铜-草酸镍催化剂在工业双戊烯脱氢合成对伞花烃气相反应中的催化性能。
补充资料:反应气相色谱法
分子式:
CAS号:

性质:又称元素色谱法  (elemental chromatography)。样品先经过一个反应区,被化学转化或吸附,然后随载气进入检测器,产生色谱图。反应区可置于色谱柱前、柱内或柱后。反应也可采用不同的反应方式。

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