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1)  stoichiometric displacement
计量置换
1.
Based on the physical meaning of each term in the linear parameter log I (a constant correlating the affinity of solute to stationary phase) of stoichiometric displacement model for retention(SDM R) of solute, the thermodynamic characteristics of log I of solute in reversed phase liquid chromatography (RPLC) were investigated theoretically.
依据液相色谱中溶质计量置换保留模型及线性参数 log I(与 1mol溶质对固定相的亲和势大小有关的常数 ) ,通过作图得知非极性和极性小分子溶质及生物大分子的 log I与绝对温度的倒数 1/T,以及小分子溶质的log I与其在正辛醇 -水中分配系数的对数 log Po/ w呈线性关系 ,从两方面进一步证明了 log I具有热力学平衡常数的性质。
2.
It is theoretically elucidated that the logarithm of stoichiometric displacement equilibrium constant, logKa dominates the linear parameter logI of the stoichiometric displacement model for retention in liquid chromatography.
从理论上阐明了计量置换平衡常数的对数logK。
3.
It was found that the retention of these proteins follow the stoichiometric displacement model for retention (SDM-R), so long as the urea concentration remains con- stant in the mobile phase.
当脲 浓度不变时,蛋白质的保留仍然服从计量置换保留模型,并可测定在该特定脲浓度条件下蛋白质的Z值。
2)  volumetric displacement meter
容量置换计
3)  stoichiometric displacement model
计量置换模型
1.
A recently developed theory for adsorption on a liquid/solid interface,the stoichiometric displacement model for adsorption(SDM A) and its thermodynamics based on the SDM A, is summarized in this paper.
综述了新近发展的液 /固吸附定量理论——吸附计量置换模型 ( SDM-A) ,以及依据SDM-A所发展的热力学理论 。
4)  stoichiometric displacement theory
计量置换理论
1.
The stoichiometric displacement theory(SDT) is used to compute the free energies of protein folding affected by the salt concentration.
采用摇床法测定不同硫酸铵浓度时天然溶菌酶(Lys)在疏水作用色谱填料PEG-600上的吸附等温线,运用计量置换理论(SDT)计算出不同盐浓度条件下蛋白在吸附过程中的吸附自由能。
5)  stoichiometric displacement theory for adsorption(SDT)
计量置换理论(SDT)
6)  fraction of stoichiometric displacement parameter
计量置换参数的分量
补充资料:长度计量(见几何量计量)


长度计量(见几何量计量)
length measurement: see geometrical quantity metrology

  由。飞州ulil心闪长度计l(le理户~~m)童。见几何童计
  
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