1) TPD model
TPD模型
1.
the Norit RB1, Monolith and Chemviron) were estimated by using the classical TPD model and the new non.
与经典TPD模型相比,所提出的新的TPD理论模型不仅考虑了脱附过程中存在的吸附质分子再吸附现象的影响,而且还考虑了脱附分子在吸附剂孔内扩散的影响。
2.
This model was different from the classical TPD model in that the re-adsorption phenomenon of the adsorbate was taken into account.
与经典TPD模型相比,这种新的TPD理论模型考虑了脱附过程中存在的吸附质分子再吸附现象的影响,更接近实际的脱附过程。
3.
The ideal TPD model and the modified TPD model were adopted to estimate the activation energy of phenol on these adsorbents respectively.
应用程序升温吸附(TPD)技术分别测定了苯酚在空白活性炭以及负载Fe3+,Ag+的活性炭上TPD曲线,并采用理想TPD模型和改进的TPD模型估算苯酚在这些吸附材料上的脱附活化能,讨论了吸附材料表面负载Fe3+,Ag+对苯酚脱附活化能的影响。
2) PMD&TPD Protocol
PMD&TPD模型
3) NH_3-TPD
NH3-TPD
1.
The acid property of impregnated Mg/ZSM-5 catalysts was observed in NH_3-TPD.
NH3-TPD的结果表明,浸渍镁的ZSM-5催化剂的强酸中心数目明显减少。
2.
NH_3-TPD(Temperature-Programmed Desorption)technique is the effective means used for the characterization of surface acidity of solid acidic catalysts.
NH3-TPD(Temperature-ProgrammedDesorption)技术是表征固体酸催化剂表面酸性质的有效手段。
3.
Study on Surface Acidity of Modified HY Zeolite by NH_3-TPD Method;
利用NH3-TPD(Temperature-Programmed Desorption)技术对盐酸、草酸和酒石酸化学脱铝改性及无水AlCl3负载改性后的HY型沸石分子筛的表面酸性进行了表征,考察了脱铝改性用酸的浓度、种类对HY沸石表面酸性的影响规律。
4) O_2-TPD
O2-TPD
5) poly-TPD
聚TPD
6) CO2 TPD
CO_2-TPD
补充资料:TPD
分子式:C38H32N2
分子量:516.69
CAS号:65181-78-4
性质:熔点169°C。
分子量:516.69
CAS号:65181-78-4
性质:熔点169°C。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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