Estimate the potency degradation rate constant at low temperature with that at high temperature according to Arrhenius equation. 根据阿伦尼乌斯方程,从较高温度下效力衰减的速率常数估算较低温度下的速率常数。
Through on Arrhenius equation, the reaction activation energies have been obtained. 利用Arrhenius方程求得了反应活化能。
In the model, the Arrhenius Equation is used to correlate the effect of temperature with the rate constant, and the effects of pressure and hydrogen/ oil ratio on rate constant is expressed in terms of exponent power functions. 反应温度对速率常数的影响用Arrhenius方程关联;氢分压和氢油比对速率常数的影响用幂函数的形式表示。
The effect of temperature on dissolution rates follows the Arrhenius equation. 温度对溶解速率的影响受控于阿雷尼乌斯方程。
The influence of grafted side chains on the crystallization activation energy of PP was analyzed in terms of Arrhenius equation. 用Arrhenius公式分析了接枝支链对PP结晶活化能的影响。
The relationship between valley temperature and frequencies in relaxation spectra of the interfacial polarization region follows the Arrhenius equation. The valley temperature and the slope of curve in high temperature area can reflect the compatibility. 界面极化区松弛谱的各点温度和频率的关系符合Arrhenius方程,各点温度和其高温侧松弛曲线线性部分斜率的大小可以反映相容性的好坏。
And thermodynamics parameters were analysed by Arrhenius equation. 利用Arrhenius方程,分析了牛初乳中IgG热变性过程中的热动力参数。
Based on Arrhenius equation and the theory of polymer solution, a four-parameter correlated formula for apparent viscosity was given. 最后,还根据Arrhenius方程和高聚物溶液理论提出了中间相沥青表观粘度的四元参数模型。
The apparent reaction activation energy of each reaction was obtained by the Arrhenius equation. 根据Arrhenius方程式,得到了各步反应的表观活化能。
And the activation energy of methanol crossover and proton transfer in composite membranes were calculated based on Arrhenius equation. 根据Arrhenius方程,计算出了复合膜的甲醇和质子迁移活化能。
Based on the Faraday law and Arrhenius equation, a set of universal formulas of the equivalent environment is developed. 根据损伤等效原则,由法拉第定律和阿伦尼斯方程,分别推导出一套不同环境之间的当量化关系式;
The dependence of apparent shear viscosity and shift factor on temperature could be described by arrhenius equation. 表观剪切粘度和移动因子对温度的依赖性可用Arrhenius方程描述。
The activation energy of carbon gasification and surface reaction calculated with Arrhenius equation ranged between 227.70~ 294.14 kJ/ mol. 根据Arrhenius方程计算出的碳气化反应和界面反应活化能分别为227.7和294.14kJ/mol;
D_ ( Na)~, increases exponentially with the temperature and obeys Arrhenius equation. D(Na)~随温度指数上升,符合Arrhenius方程。
And the energies of interdiffusion and grain boundary diffusion have been figured out by the Arrhenius equation. 从Arrhenius方程得出互扩散及晶界扩散激活能。
The shell ignition model, global Arrhenius equation and coherent flamelet model are used to model low temperature ignition, high temperature premixed burn and diffusion burn respectively to develop the quasi dimensional combustion model. 用Shel着火模型、Arhenius方程和相关火焰微元模型来分别模拟其中的低温着火、高温预混燃烧和扩散燃烧过程以建立准维燃烧模型。
For the kinetic equation in non-isothermal process, the temperature integral for Arrhenius Equation should be from T2 to T1, but the integral of many current kinetic equations is from T to 0 K, such as Ozawa Equation. 对于非等温过程中的动力学方程,正确的Arrhenius方程的温度积分应该是从T2到T1,但是许多动力学方程中的温度积分是从T到0K,例如Ozawa等方程。
The stability of the complex was researched by the constant temperature accelerated testing and Arrhenius equation. 通过恒温加速实验结合阿累尼乌斯方程考察复合物的稳定性。
The dissolving process accords with first-order reaction dynamic model, and the relation between dissolving rate constant and temperature can be depicted by Arrhenius equation. 结果表明,固体有机物经历了溶解和水解两个过程,溶解过程符合一级反应动力学模型,溶解速度常数与温度的关系符合Arrhenius方程;
The relationship between the rate coefficient and temperature obeys the Arrhenius equation. 另外随着反应温度的升高,该反应的速率随之增大,并且速率系数与温度的关系遵循阿仑尼乌斯方程。
Analysis was made for the effects of feed water temperatures on membrane performance using solution-diffusion model and Arrhenius equation. 用溶解&扩散模型和Arrhenius方程就进水水温对膜的影响做了分析。
Kinetics, tested the contact angle of fibers with time at room temperature, according to empirical and the Arrhenius equation to calculate the infiltration rate and infiltration of the activation energy. 动力学上,测试了常温下四种纤维的接触角随时间的变化,依据经验公式和阿累尼乌斯方程计算出浸润速率和浸润活化能。
Meanwhile, thermal aging model of EPR cable based on Arrhenius equation was calculated by using variance analysis to the test data. 针对试验数据进行了方差计算,建立了乙丙橡胶电缆基于Arrhenius公式的加速热寿命模型。
The relationship between the molar conductivity and temperature submits to Arrhenius Equation. 摩尔电导率和温度的关系遵从Arrhenius方程。
The influence of temperature meets Arrhenius equation. 2. 不同温度对果蔬呼吸速率影响满足阿伦纽斯方程。
And the activation energy which is calculated by the Arrhenius equation is bigger than blank. The energy barrier is increased with the addition of corrosion inhibitors. 根据Arrhenius方程计算结果,添加了缓蚀剂的活化能大于空白盐酸溶液的活化能,缓蚀剂的加入增大了腐蚀过程的反应能垒。
In this paper, based on T.T.T. theory and Arrhenius equation, the author deduced a function to describe the relationship among the rate of food corruption, time and temperature. 本文在T.T.T.理论与阿仑尼乌斯方程的基础上,推导出了食品腐败率与温度、时间的函数关系。
The grain growth activation energy was 19.76kJ/mol through Arrhenius equation, it also much less than the regular grain growth activation energy. 通过Arrhenius公式计算了晶粒长大的激活能,为19.76kJ/mol,远小于正常晶粒长大的激活能。
The laser ablation kinetic parameters and the dynamic reaction equations of EPDM insulation materials are gained by Arrhenius equation. 依据动力学方程,获得了EPDM内绝热材料激光烧蚀反应和炭化层激光热化学烧蚀反应的动力学参数。