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细菌生长的热动力学性质的研究 被引量:7
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作者 张洪林 刘永军 +4 位作者 孙海涛 孙秀芳 单庆祝 谢昌礼 屈松生 《物理化学学报》 SCIE CAS CSCD 北大核心 1993年第6期836-839,共4页
前文报导了大肠杆菌在不同培养基中生长的速率及热力学函数.本文在此基础上又测定了不同细菌在相同培养基中生长的规律.细菌生长是一系列非常复杂的过程,为便于研究,使复杂问题简单化,我们采取与过渡状态理论类似的模式进行处理,得出了... 前文报导了大肠杆菌在不同培养基中生长的速率及热力学函数.本文在此基础上又测定了不同细菌在相同培养基中生长的规律.细菌生长是一系列非常复杂的过程,为便于研究,使复杂问题简单化,我们采取与过渡状态理论类似的模式进行处理,得出了一些热动力学函数,这些数据为进一步探讨这一复杂过程提供了有用的信息. 展开更多
关键词 细菌生长 微量量 热动力学函数
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Thermal dehydration kinetic mechanism of Mn_(1.8)Co_(0.1)Mg_(0.1)P_2O_7·2H_2O using Málek's equations and thermodynamic functions determination
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作者 Chuchai SRONSRI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2018年第5期1016-1026,共11页
Mn1.8Co0.1Mg0.1P2O7·2H2O was synthesized via hydrothermal method and the thermal dehydration product was confirmed to be Mn1.8Co0.1Mg0.1P2O7.The thermogravimetry/differential thermogravimetry/differential thermal... Mn1.8Co0.1Mg0.1P2O7·2H2O was synthesized via hydrothermal method and the thermal dehydration product was confirmed to be Mn1.8Co0.1Mg0.1P2O7.The thermogravimetry/differential thermogravimetry/differential thermal analysis,Fourier transform infrared,atomic absorption spectrophotometry,X-ray diffraction and scanning electron microscopy techniques were employed for sample characterization.Non-isothermal kinetics was studied under air atmosphere at four heating rates and the single thermal dehydration process was observed.Iterative Kissinger-Akahira-Sunose equation was used to calculate the apparent activation energy Eαvalues.Dehydration process was confirmed to be a single-step kinetic process with the unique kinetic triplets.Málek’s equations were used to determine the kinetic model f(α)and pre-exponential factor A.?esták-Berggren model was suggested to be the mechanism function for the dehydration process.The best fit led to the kinetic triplets of Eα=(79.97±6.51)k J/mol,ln A=16.83 and f(α)=α^0.520(1-α)^1.255(αis the extent of conversion).The thermodynamic functions of activation were calculated using activated complex theory together with A value. 展开更多
关键词 non-isothermal kinetics DEHYDRATION kinetic mechanism Sestak-Berggren model thermodynamic function
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