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1)  thermodynamics of decomposition
分解热力学
1.
The comparison of the kinetics and thermodynamics of decomposition among the three kinds of blowing agents were studied.
研究了典型的放热型发泡剂 AC、吸热型发泡剂 HYDROCEROL BIH和吸放热型发泡剂 EXOCEROL 2 32分解热力学和动力学特性。
2)  thermal degradation kinetics
热分解动力学
1.
The thermal degradation behavior and thermal degradation kinetics were studied.
采用不同链长的十四酰氯和十八酰氯对超支化不饱和聚(酰胺-酯)(MHBP)的端羟基进行原位端基改性,制备出2种改性超支化聚合物,用傅立叶红外光谱(FTIR)、热重分析(TGA)、黏度法等对其结构及性能进行表征,并研究了它们的热分解行为及其热分解动力学。
2.
Four analysis methods including the Kissinger method,Ozawa method,Freeman-Carroll method and Coats-Redfem method were used to investigate the thermal degradation kinetics of polypropylene(PP) and intumescent halogen-free flame-retarded PP composites containing N and P.
采用四种不同的动力学分析方法,即Kissinger法、Ozawa法、Freeman-Carroll法和Coats-Redfem法对含N、P阻燃剂(IFR)的膨胀型无卤阻燃聚丙烯体系的热分解动力学进行了探讨。
3.
Six analysis methods including the Coats-Redfern method,Van Krevelen method,Flynn-Wall method,Horowitz-Metzger method,Freeman-Carroll method and Kissinger method were used to investigate the thermal degradation kinetics of low-density polyethylene(LLDPE)and halogen-free flame-retarded LLDPE composites containing magnesium hydroxide(MH) and red phosphorus(RP)(PEMH and PEMHRP).
采用六种不同的动力学分析方法,即Coats-Redfern方法、Van Krevelen方法、Horowitz-Metzger方法、Freeman-Carroll方法、Flynn-Wall方法以及Kissinger方法对氢氧化镁(MH)和红磷(RP)无卤阻燃聚乙烯体系的热分解动力学进行了探讨。
3)  thermal decomposition kinetics
热分解动力学
1.
Study on Thermal Decomposition Kinetics of Flame Retarded PC by Potassium Perfluorobutane Sulfonate;
全氟丁基磺酸钾阻燃PC热分解动力学研究
2.
Synthesis of zinc complex with polycarboxlate as bridging ligand and study on its thermal decomposition kinetics;
以多羧酸为桥的锌配合物的合成和热分解动力学研究
3.
Study on the curing reaction and thermal decomposition kinetics of poly(2,6-dimethyl-1,4-phenylene ether)/epoxy systems;
聚苯醚/环氧树脂体系的固化反应和热分解动力学研究
4)  the kinetics of photo-and thermo-decomposition
光、热分解动力学
5)  thermal decomposition kinetics
热分解反应动力学
1.
The third-stage thermal decomposition kinetics of the complexes was studied under non-isothermal condition by TG and DTG methods.
用非等温热重分析方法研究了La(Ⅲ)配合物的热分解反应动力学,推断出第3步热分解的动力学方程为:dα/dt=A。
6)  kinetic mechanism of thermal decomposition
热分解动力学机理
1.
Analysis of kinetic mechanism of thermal decomposition about rare earth nitrates with Schiff base derived from o-vanillin and p-toluidine;
稀土硝酸盐邻香兰素对甲苯胺Schiff碱配合物的热分解动力学机理分析
补充资料:分解热
分子式:
分子量:
CAS号:

性质:在一定温度和压力下,1摩尔化合物全部分解时所吸的热,即此分解反应的反应热。例如298.15开(25℃)、101.325千帕(1大气压)下氨气的分解热为46.19千焦/摩。

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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