1)  COTS-based
COTS-based
2)  CO
CO
1.
Release pattern of CO from the combustion of wood in small-scale fire tests;
小尺寸火灾模型中CO释放特性实验
2.
Preparation and Photocatalytic Activity of Co-doped TiO_2 Nano-particles;
Co掺杂改性纳米TiO_2颗粒的制备及其光催化性能
3.
CO Detection System with Non-dispersed Infrared Absorbance Technique;
非分散红外CO气体检测系统研究
3)  cobalt
Co
1.
Successive determination of trace Co,Ni and Cu in cobalt ore by flame atomic absorption spectrometry;
火焰原子吸收光谱法连续测定钴矿中Co,Ni和Cu
2.
Determination of Iron,Cobalt and Nickel as Chelates with 4-(2-Thiazolylazo)Resorcinol by Liquid Chromatography with Electrochemical Detection;
4-(2-氨基噻唑)-间苯二酚为柱前衍化剂液相色谱/电化学检测Fe、Co、Ni
3.
Dispersity of cobalt nanoparticles in NC-based ploymer system;
纳米Co粉在NC基高分子体系中的分散性
4)  Co(Ⅱ)
Co(Ⅱ)
5)  cobalt(III) complexes
Co(Ⅲ)
6)  CO + NO
CO+NO
1.
The catalytic performance for CO + NO was investigated.
5)催化材料,以CO+NO为探针反应,运用XRD、BET、TG-DTA、XPS等手段进行表征。
参考词条
补充资料:accelerator-based 14C dating
分子式:
CAS号:

性质:用加速器质谱计测定样品中14C的原子数目以实现纪年的方法。首先由美国学者R. Muller于1977年提出的。与放射性14C纪年法相比,灵敏度提高了4至5个量级,样品量可大为减少,可测定年代范围也显著增大,可扩展到十万年以上。在考古学、古人类学、文物鉴定、法学等领域有重要应用价值。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。