目的:研究了腺苷的热解过程及非等温动力学。
Purpose: to study the thermal decomposition process and the non isothermal kinetics of adenosine.
用非等温动力学方法对氢氧化镁的热分解动力学进行了研究。
The thermal decomposition kinetics of magnesium hydroxide was investigated using the non-isothermal approach.
利用DTA技术研究了一水硫酸锂脱水及固固相变的非等温动力学。
A kinetic of the thermal dehydration and solid solid transitions of lithium sulfate monohydrate were investigated by DTA.
摘要利用热重法研究了石蜡在粉末注射成形中低温热脱除的非等温动力学。
Low temperature thermal debinding non-isothermal kinetics of paraffin wax in PIM was studied by TG.
采用热重法研究头孢氨苄热分解非等温动力学和头孢氨苄与其制剂的稳定性差异。
Thermogravimetry was used to study the non-isothermal decomposition kinetics and the difference of stability between cefalexin and its excipients.
用DSC法研究了粉状聚苯乙烯磺酸钠阳离子交换树脂受热反应的非等温动力学。
The non-isothermal thermal decompsition reaction kinetics of powdered sodium polystyrene sulfonate cation exchange resin was studied by DSC method.
用dsc、非等温结晶动力学方法研究了PET切片中不同二氧化钛含量对其结晶性能的影响。
The effect of titanium dioxide content on the crystallization behavior of PET was studied by DSC and non-isothermal crystallization kinetic methods.
采用DSC方法研究了PA1212的非等温和等温结晶动力学。
The non-isothermal and isothermal crystallization kinetics of PA1212 were studied by DSC.
用非等温热重法研究了代森锰锌的热分解反应动力学。
Non-isothermal thermal decomposition kinetics of mancozeb was studied by thermogravimetry.
采用非等温结晶动力学处理方法获得了与等温结晶动力学研究相一致的结果。
The non - isothermal crystallization kinetic treatments get the similar results with that of the isothermal study.
用非等温热重法研究了代森锰锌的热分解反应动力学。
The thermal decomposition kinetics of cardanol-formaldehyde polymers has been studied by non-isothermal thermogravimetry.
采用非等温差示扫描量热法(dsc)研究了一种长侧链取代液晶环氧单体与甲基六氢苯酐的固化反应历程,考察了体系的固化反应动力学特征。
A liquid crystalline epoxy monomer with long lateral substituent was cured with anhydride and the cure kinetics was investigated by non-isothermal DSC technique.
采用非等温差示扫描量热法(dsc)研究了一种长侧链取代液晶环氧单体与甲基六氢苯酐的固化反应历程,考察了体系的固化反应动力学特征。
A liquid crystalline epoxy monomer with long lateral substituent was cured with anhydride and the cure kinetics was investigated by non-isothermal DSC technique.
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