首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Difference equation model for isothermal gas chromatography expresses retention behavior of homologues of n-alkanes excluding the influence of holdup time
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Difference equation model for isothermal gas chromatography expresses retention behavior of homologues of n-alkanes excluding the influence of holdup time

机译:等温气相色谱的差分方程模型表达了正构烷烃同系物的保留行为,排除了保留时间的影响

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摘要

A difference equation (DE) model is developed using the methylene retention increment (Δt _z) of n-alkanes to avoid the influence of gas holdup time (t _M). The effects of the equation orders (1st-5th) on the accuracy of a curve fitting show that a linear equation (LE) is less satisfactory and it is not necessary to use a complicated cubic or higher order equation. The relationship between the logarithm of Δt _z and the carbon number (z) of the n-alkanes under isothermal conditions closely follows the quadratic equation for C _3-C _(30) n-alkanes at column temperatures of 24-260°C. The first and second order forward differences of the expression (Δlog Δt _z and Δ ~2log Δt _z, respectively) are linear and constant, respectively, which validates the DE model. This DE model lays a necessary foundation for further developing a retention model to accurately describe the relationship between the adjusted retention time and z of n-alkanes.
机译:使用正构烷烃的亚甲基保留增量(Δt_z)来开发差分方程(DE)模型,以避免气体滞留时间(t _M)的影响。方程阶次(1至5th)对曲线拟合精度的影响表明,线性方程组(LE)不太令人满意,因此不必使用复杂的三次方程或更高阶方程。等温条件下Δt_z的对数与正构烷烃的碳原子数(z)之间的关系密切遵循柱温为24-260°C时C 3-C _(30)正构烷烃的二次方程。表达式的一阶和二阶正向差异(分别为ΔlogΔt_z和Δ〜2logΔt_z)分别是线性和恒定的,这验证了DE模型。该DE模型为进一步开发保留模型以准确描述调整后的保留时间与正构烷烃z的关系奠定了必要的基础。

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