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用于量化环丙沙星与土壤之间阳离子交换和络合相互作用的探针化合物。

Probe compounds to quantify cation exchange and complexation interactions of ciprofloxacin with soils.

作者信息

Mackay Allison A, Seremet Daniel E

机构信息

Environmental Engineering Program, University of Connecticut, 261 Glenbrook Road, Storrs, Connecticut 06269-2037, USA.

出版信息

Environ Sci Technol. 2008 Nov 15;42(22):8270-6. doi: 10.1021/es800984x.

Abstract

Ciprofloxacin (CIP)-soil sorption interactions by surface complexation (via -COOH group) and cation exchange (-NH3+ group) were estimated by use of the structurally related probe compounds flumequine (FQ) (-COOH) and phenylpiperazine (PP) (-NH3+). Comparison of CIP and FQ sorption by surface complexation on goethite indicated a 0.7 times lower driving force for sorption, K(xs), for CIP than for FQ, with a model that assumed functional group interactions were enhanced by the hydrophobicity of the rest of the molecule. Similarly, K(xs) was 9.5 times greater for CIP than for PP for sorption by cation exchange on kaolinite and montmorillonite. Use of the pure phase sorbent K(xs) scaling factors between PP, FQ, and CIP for eight soils with a range of clay and oxide contents yielded total sorbed CIP concentrations that were within a factor of 2 (at pH 7.2) or less (at pH 5) of observed values. The estimated relative contributions of CIP cation-exchange versus complexation interactions increased for soils with increasing cation-exchange capacity. The agreement between independently estimated and observed CIP sorption indicates that the use of probe compounds has the potential to provide quantitative measures of sorption contributions for other complex sorbates with multiple functional groups, including other emerging contaminants and pesticides.

摘要

通过使用结构相关的探针化合物氟甲喹(FQ)(-COOH)和苯基哌嗪(PP)(-NH₃⁺),估算了环丙沙星(CIP)与土壤通过表面络合(通过-COOH基团)和阳离子交换(-NH₃⁺基团)的吸附相互作用。在针铁矿上通过表面络合对CIP和FQ吸附的比较表明,CIP的吸附驱动力K(xs)比FQ低0.7倍,该模型假设官能团相互作用因分子其余部分的疏水性而增强。同样,在高岭土和蒙脱石上通过阳离子交换吸附时,CIP的K(xs)比PP大9.5倍。使用纯相吸附剂时,对于八种具有不同粘土和氧化物含量的土壤,PP、FQ和CIP之间的K(xs)缩放因子得出的总吸附CIP浓度在观测值的2倍以内(在pH 7.2时)或更小(在pH 5时)。随着土壤阳离子交换容量的增加,CIP阳离子交换与络合相互作用的估计相对贡献增加。独立估算的和观测到的CIP吸附之间的一致性表明,使用探针化合物有可能为其他具有多个官能团的复杂吸附质(包括其他新兴污染物和农药)的吸附贡献提供定量测量。

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