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1)  Pitzer electrolyte solution theory
Pitzer电解质溶液理论
1.
The exchange isothermal curves of LiNiMn-H in the H+-Li+ system were measured at 15, 25, 35 and 45 ℃ and the average activity coefficients of the electrolyte were calculated using Pitzer electrolyte solution theory.
测定了15、25、35、45℃LiNiMn-H在H+-Li+体系吸附锂的离子交换等温线,并利用Pitzer电解质溶液理论计算出该离子交换体系的活度系数,得到H+-Li+交换的平衡常数Ka,△Gm、△Hm和△Sm等热力学参数。
2.
The activity coefficients were calculated by using Pitzer electrolyte solution theory,other thermodynamic constant such as equilibrium constant K aKH,Δ r Gmθ,Δ r Hmθ and Δ r Smθduring the exchange process were obtained.
测定了15、25、35、45℃下CRYMO-H对H+-K+体系的离子交换等温线,采用Pitzer电解质溶液理论计算出该离子交换体系的活度系数,得到H+-K+交换的平衡常数KaKH、ΔrGmθ、ΔrHmθ和ΔrSmθ等热力学函数。
2)  Pitzer electrolyte theory
Pitzer电解质理论
3)  electrolyte solution theory
电解质溶液理论
1.
Vapour-liquid equilibrium of H2S in aqueous solution of sterically hindered amine was measured and the model of the vapour-liquid equilibrium was developed based on electrolyte solution theory.
开发了系列液化石油气配方脱硫剂和物理-化学复合脱硫剂,并对脱硫剂的泡沫性能进行了研究,对空间位阻胺-H_2S体系汽液相平衡进行了测定,用电解质溶液理论建立了空间位阻胺-H_2S体系汽液平衡模型。
4)  electrolyte solution
电解质溶液
1.
Progress in study of phase equilibrium in electrolyte solution involving chemical reaction;
存在反应的电解质溶液相平衡研究
2.
A computer simulation study on structure and thermodynamic property of KNO_3 electrolyte solution;
硝酸钾电解质溶液的结构和热力学性质的计算机分子模拟
3.
Alternating frequency range influence on the conductivity measurements of electrolyte solutions using alternating current bridge method;
交流频率对交流电桥法测定电解质溶液电导率的影响
5)  electrolyte aqueous solution
电解质溶液
6)  Electrolyte solutions
电解质溶液
1.
A new generalized model was proposed for predicting density of electrolyte solutions by using the principle of corresponding state.
根据对应状态原理的基本思想本文提出了一种预测电解质溶液密度的新方法。
2.
The influences of the ion concentration and pH value of various electrolyte solutions on the streaming potential of the titanium dioxide-modified α-Al2O3 microfiltration membrane were studied.
研究了不同的电解质溶液、溶液的离子浓度和pH值对TiO2改性的α-Al2O3微滤膜流动电势的影响规律。
补充资料:PI
    聚酰亚胺是由4,4’-二氨基二苯醚与均苯四甲酸酐反应先得到高分子量且能溶于极性溶剂的预聚体——聚酰胺酸,然后在高温下脱水环化制得。不溶性聚合物.淡黄色粉末,细度<250um,表观密度0.35。耐高低温,性能优异.在-269~400 ℃范围内保持较高的机械性能,热变形温度360℃(1.82MPa)。使用温度-240~260℃。耐辐射性极好。耐磨性良好,能耐大多数溶剂,但易被浓酸、浓碱水解。在沸水和蒸汽的长时间作用下能被破坏。
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