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1)  colloidal carbon
胶态碳
2)  karbogel ['kɑ:bəu,dʒel]
碳胶
3)  carbon aerogel
碳气凝胶
1.
The microstructure of carbon aerogel was investigated by using electron scanning microscope(SEM),pore size distribution and electrical conductivity measurement.
探索新型纳米多孔材料碳气凝胶的微结构控制,研究常压条件下纤维增强型碳气凝胶的制备,以及催化剂浓度、质量分数、纤维表面特性、溶胶注入纤维前的老化时间等制备参数对其微结构的影响。
2.
This paper examins carbon aerogel by SEM, BET and cyclic voltammetry.
在常压条件下通过溶胶-凝胶法和碳化、活化工艺制备碳气凝胶材料。
3.
The micro structure of the porous carbon aerogels is measured by SEM and BET.
经高温碳化处理 ,将RF有机气凝胶转化为碳气凝胶 ,改变RC比和聚合单体的质量百分数 ,可控制气凝胶的粒径及孔径、密度及比表面积。
4)  colloidal carbon spheres
胶体碳球
1.
Preparation of SiO_2,TiO_2,SnO_2 hollow spheres by colloidal carbon spheres;
利用胶体碳球为模板制备SiO_2、TiO_2、SnO_2空心球
2.
The feasibility of most templates were investigated and the colloidal carbon spheres were confirmed as the best one.
研究了多个模板的可行性,确定了最佳模板——胶体碳球。
5)  carbon aerogels
碳气凝胶
1.
For the first time,hydroquinone-formaldehyde aerogels have been prepared by sol-gel method and CO_2 supercritical drying,and after high temperature carbonization the carbonized carbon aerogels are obtained.
首次用溶胶-凝胶法和CO2超临界干燥技术制备了对苯二酚-甲醛有机气凝胶,并经高温碳化处理得到其碳气凝胶,测得气凝胶的比表面积由碳化前的375。
2.
In this paper, carbon aerogels are obtained through ordinary pressure drying; their structural properties are investigated.
碳气凝胶是一种新型多孔碳材料,具有比表面积大、电导率高的特点。
3.
SEM, BET and pore size distribution techniques were used to characterize the morphology and pore structure of the carbon aerogels.
研究了碳气凝胶在常压条件下的制备过程和干燥方法。
6)  carbonaceous aerosol
碳气溶胶
1.
The physical and chemical characterization of carbonaceous aerosol at the atmospheric background site in Diqing,Yunnan;
云南迪庆地区大气本底碳气溶胶的理化特征
2.
The purpose of this study was to investigate the day-night variation of carbonaceous aerosols in PM_(10) during spring and winter over Xi\'an.
为探讨西安市大气碳气溶胶的季节变化和昼夜变化特征及来源,于2006-12-19~2007-01-21(冬季)和2007-04-01~2007-04-30(春季)连续采集了大气可吸入颗粒物(PM10)样品,并采用IMPROVE热光分析法分析了其中有机碳(OC)和元素碳(EC)的昼夜浓度。
补充资料:胶态微晶室温磷光法
分子式:
CAS号:

性质:将被分析物制成胶态微晶,在水溶液中形成均匀稳定的分散体系。利用在胶态微晶悬浊液界面上产生的室温磷光(RTP)信号进行定量分析的一种流体室温磷光法。体系可不必除氧,无需使用外部重原子微扰剂。但重现性差,磷光强度与分析物浓度不成直线关系。

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