Boeker E A
Biochem J. 1982 Apr 1;203(1):117-23. doi: 10.1042/bj2030117.
Excellent estimations of initial rates can be obtained from plots of delta P/t versus product formed (where P is the instantaneous concentration of the product). delta P/t is the chord from P0,t0 to P,t on an ordinary P-versus-t plot. When the chord is plotted as a function of product, the intercept at P0 of the resulting curve is necessarily dP/dt0. This curve approximates to a straight line extremely closely in all cases tested thus far. If delta P/t versus product is calculated from the integrated rate equation for a first-order reaction, and if a straight line is fitted through points representing the first 50% of the reaction, the discrepancy between the true initial rate and dP/dt0 estimated from the plot is 0.68%. For the most common form of the integrated rate equation for catalysed reactions the discrepancy varies between 0 and 0.90%. Because of the complexities of the integrated rate equations, catalysed second-order reactions have not been evaluated directly; uncatalysed reactions have been done instead. For a reaction with one reactant and two products, the discrepancy varies from 0.68 to 2.02%. For two reactants and one product, it varies from 0 to 0.68%; for two and two, 0 to 2.02%. The larger discrepancies occur only when unfavourable equilibrium constants are being overcome by the initial conditions.
通过绘制ΔP/t与生成产物的关系图(其中P为产物的瞬时浓度),可以获得对初始速率的出色估计。ΔP/t是普通P对t图上从P0,t0到P,t的弦。当将该弦绘制为产物的函数时,所得曲线在P0处的截距必然是dP/dt0。在迄今为止测试的所有情况下,该曲线都极其接近直线。如果根据一级反应的积分速率方程计算ΔP/t与产物的关系,并且通过代表反应前50%的点拟合一条直线,则从该图估计的真实初始速率与dP/dt0之间的差异为0.68%。对于催化反应积分速率方程的最常见形式,差异在0到0.90%之间变化。由于积分速率方程的复杂性,尚未直接评估催化二级反应;而是进行了非催化反应。对于有一个反应物和两个产物的反应,差异在0.68%到2.02%之间变化。对于两个反应物和一个产物,差异在0到0.68%之间;对于两个反应物和两个产物,差异在0到2.02%之间。只有当初始条件克服不利的平衡常数时,才会出现较大的差异。