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对映体拆分和高效液相色谱正相和反相条件下园艺土壤中苯氧羧酸对映体的降解。

Enantiomeric Separation and Degradation of Benoxacor Enantiomers in Horticultural Soil by Normal-Phase and Reversed-Phase High Performance Liquid Chromatography.

机构信息

College of Horticulture and Landscape Architecture, Southwest University, Chongqing 400715, China.

College of Plant Protection, Southwest University, Chongqing 400715, China.

出版信息

Int J Mol Sci. 2023 May 17;24(10):8887. doi: 10.3390/ijms24108887.

Abstract

The separation of benoxacor enantiomers on six commercial chiral columns was investigated by high-performance liquid chromatography (HPLC) under normal-phase and reversed-phase conditions. The mobile phases included hexane/ethanol, hexane/isopropanol, acetonitrile/water, and methanol/water. The effects of the chiral stationary phases (CSPs), temperature, and mobile phase composition and ratio on the separation of benoxacor enantiomers were examined. Under normal-phase conditions, the two benoxacor enantiomers were completely separated on Chiralpak AD, Chiralpak IC, Lux Cellulose-1, and Lux Cellulose-3 columns and partially separated on a Lux Cellulose-2 column. Under reversed-phase conditions, benoxacor enantiomers were completely separated on a Lux Cellulose-3 column and partially separated on Chiralpak IC and Lux Cellulose-1 columns. Normal-phase HPLC performed better than reversed-phase HPLC for the separation of benoxacor enantiomers. As the column temperature increased from 10 °C to 4 °C, the enthalpy (ΔH) and entropy (ΔS) results indicated that the resolution was strongly affected by the temperature and that the lowest temperature did not always produce the best resolution. An optimized separation method on the Lux Cellulose-3 column was used to investigate the stability of benoxacor enantiomers in solvents and the degradation of benoxacor enantiomers in three types of horticultural soil. Benoxacor enantiomers were stable, and degradation or racemization were not observed in methanol, ethanol, isopropanol, acetonitrile, hexane, or water (pH = 4.0, 7.0, and 9.0). In three horticultural soils, the degradation rate of S-benoxacor was faster than that of R-benoxacor, resulting in soil enrichment with R-benoxacor. The results of this study will help to improve the risk assessment of enantiomer levels of benoxacor in the environment.

摘要

用高效液相色谱法(HPLC)在正相和反相条件下研究了六种商业手性柱对苯氧羧酸对映体的分离。流动相包括己烷/乙醇、己烷/异丙醇、乙腈/水和甲醇/水。考察了手性固定相(CSP)、温度以及流动相组成和比例对苯氧羧酸对映体分离的影响。在正相条件下,Chiralpak AD、Chiralpak IC、Lux Cellulose-1 和 Lux Cellulose-3 柱可将两种苯氧羧酸对映体完全分离,而 Lux Cellulose-2 柱则部分分离。在反相条件下,苯氧羧酸对映体在 Lux Cellulose-3 柱上完全分离,在 Chiralpak IC 和 Lux Cellulose-1 柱上部分分离。正相 HPLC 比反相 HPLC 更适合分离苯氧羧酸对映体。随着柱温从 10°C 升高到 4°C,焓(ΔH)和熵(ΔS)结果表明,分离受温度强烈影响,而低温并不总是产生最佳分离度。在 Lux Cellulose-3 柱上优化的分离方法用于研究苯氧羧酸对映体在溶剂中的稳定性以及在三种园艺土壤中的降解情况。苯氧羧酸对映体在甲醇、乙醇、异丙醇、乙腈、己烷或水(pH 值为 4.0、7.0 和 9.0)中稳定,未观察到降解或外消旋化。在三种园艺土壤中,S-苯氧羧酸的降解速率快于 R-苯氧羧酸,导致 R-苯氧羧酸在土壤中富集。本研究结果将有助于提高苯氧羧酸对映体在环境中水平的风险评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ff8/10218933/c23b485d3c8f/ijms-24-08887-g001.jpg

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