Institut des Sciences Analytiques, CNRS, Université de Lyon, Villeurbanne, France.
Anal Chem. 2013 May 7;85(9):4644-50. doi: 10.1021/ac4002854. Epub 2013 Apr 15.
Counter-current chromatography (CCC) is a preparative separation technique working with the two liquid phases of a biphasic liquid system. One phase is used as the mobile phase when the other, the stationary phase, is held in place by centrifugal fields. Limonene is a biorenewable cycloterpene solvent coming from orange peel waste. It was evaluated as a possible substitute for heptane in CCC separations. The limonene/methanol/water and heptane/methanol/water phase diagrams are very similar at room temperature. The double bonds of the limonene molecule allows for possible π-π interactions with solutes rendering limonene slightly more polar than heptane giving small differences in solute partition coefficients in the two systems. The 24% higher limonene density is a difference with heptane that has major consequences in CCC. The polar and apolar phases of the limonene/methanol/water 10/9/1 v/v have -0.025 g/cm(3) density difference (lower limonene phase) compared to +0.132 g/cm(3) with heptane (upper heptane phase). This precludes the use of this limonene system with hydrodynamic CCC columns that need significant density difference to retain a liquid stationary phase. It is an advantage with hydrostatic CCC columns because density difference is related to the working pressure drop: limonene allows one to work with high centrifugal fields and moderate pressure drop. Limonene has the capability to be a "green" alternative to petroleum-based solvents in CCC applications.
逆流色谱(CCC)是一种制备分离技术,使用双相液相系统的两种液相。当另一个相(固定相)在离心力场中保持不动时,一个相被用作流动相。柠檬烯是一种来自橙皮废物的可再生环萜溶剂。它被评估为 CCC 分离中可能替代己烷的替代品。柠檬烯/甲醇/水和己烷/甲醇/水在室温下的相图非常相似。柠檬烯分子的双键允许与溶质发生可能的π-π相互作用,使柠檬烯比己烷略具极性,从而导致在这两个系统中溶质分配系数的微小差异。柠檬烯的密度比己烷高 24%,这是 CCC 中的一个重大差异。柠檬烯/甲醇/水 10/9/1v/v 的极性和非极性相的密度差为-0.025g/cm3(较低的柠檬烯相),而己烷(较高的己烷相)为+0.132g/cm3。这排除了使用这种具有水力 CCC 柱的柠檬烯系统的可能性,因为水力 CCC 柱需要显著的密度差才能保留液相固定相。对于静压 CCC 柱来说,这是一个优势,因为密度差与工作压降有关:柠檬烯允许在高离心力场和中等压降下工作。柠檬烯有能力成为 CCC 应用中石油基溶剂的“绿色”替代品。