Excess refractive indices and validation of mixing rules using binary mixture of methyl laurate + Pentan-2-ol at various temperatures (298.15, 303.15, 308.15, 313.15, and 318.15K)

R. Sunita, Sangwan Nisha, K. S. Rajesh
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Abstract

Refractive index is a characteristic parameter of fluids with numerous industrial uses. The values of refractive indices of many pure liquids are known or can be found in the literature. However, when experimental values of the liquid mixtures are not available then refractive indices of binary mixtures and multi-component liquids are frequently assessed from the pure constituents using mixing rules. The refractive indices ( ) of binary mixture and pure liquids methyl laurate (M.L) and pentan -2-ol (P) over the entire mole fraction range at five temperatures (298.15, 303.15, 308.15, 313.15, and 318.15K) were measured using an Anton-Paar Abbemat 3200 refractometer and were tested with the traditional equations, viz Gladstone-Dale (G.D), Lorentz-Lorentz (L.L), Weiner-relation (W.R) and Heller-relation (H.R). The excess refractive indices ( ) were calculated using measured experimental refractive indices ( and ideal refractive indices. The values of excess refractive indices were found to be negative at low mole fractions and positive over the high mole fractions. The experimental data for binary mixture involving methyl laurate + Pentan-2-ol authenticate the mixing rules. binary mixture, mixing rules, methyl laurate.
不同温度(298.15,303.15,308.15,313.15,318.15K)下月桂酸甲酯+戊坦-2-醇二元混合物的超折射率及混合规律验证
折射率是具有许多工业用途的流体的特征参数。许多纯液体的折射率值是已知的或可以在文献中找到。然而,当液体混合物的实验值无法获得时,二元混合物和多组分液体的折射率通常使用混合规则从纯组分计算。用Anton-Paar Abbemat 3200折光计测量了二元混合物和纯液体月月酸甲酯(M.L)和戊烷-2-醇(P)在298.15、303.15、308.15、313.15和318.15K下整个摩尔分数范围内的折光率,并采用传统的Gladstone-Dale (G.D)、Lorentz-Lorentz (L.L)、weiner关系(W.R)和heller关系(H.R)方程进行了测试。利用实测的实验折射率(和理想折射率)计算多余折射率()。在低摩尔分数处,多余折射率为负,在高摩尔分数处为正。月桂酸甲酯+戊坦-2-醇二元混合物的实验数据验证了混合规律。二元混合物,混合规则,月桂酸甲酯。
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