pH-Dependent Partitioning of Ionizable Organic Chemicals between the Silicone Polymer Polydimethylsiloxane (PDMS) and Water

IF 6.7 Q1 ENGINEERING, ENVIRONMENTAL
Lili Niu, Luise Henneberger, Julia Huchthausen, Martin Krauss, Audrey Ogefere and Beate I. Escher*, 
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引用次数: 5

Abstract

The silicone polymer polydimethysiloxane (PDMS) is a popular passive sampler for in situ and ex situ sampling of hydrophobic organic chemicals. Despite its limited sorptive capacity for polar and ionizable organic chemicals (IOC), IOCs have been found in PDMS when extracting sediment and suspended particulate matter. The pH-dependent partitioning of 190 organics and IOCs covering a range of octanol–water partition constants log Kow from −0.3 to 7.7 was evaluated with a 10-day shaking method using mixtures composed of all chemicals at varying ratios of mass of PDMS to volume of water. This method reproduced the PDMS–water partition constant KPDMS/w of neutral chemicals from the literature and extended the dataset by 93 neutral chemicals. The existing quantitative structure–activity relationship between the log Kow and KPDMS/w could be extended with the measured KPDMS/w linearly to a log Kow of −0.3. Fully charged organics were not taken up into PDMS. Thirty-eight monoprotic organic acids and 42 bases showed negligible uptake of the charged species, and the pH dependence of the apparent DPDMS/w(pH) could be explained by the fraction of neutral species multiplied by the KPDMS/w of the neutral species of these IOCs. Seventeen multiprotic chemicals with up to three acidity constants pKa also showed a pH dependence of DPDMS/w(pH) with the tendency that the neutral and zwitterionic forms showed the highest DPDMS/w(pH). DPDMS/w(pH) of charged species of more hydrophobic multiprotic chemicals such as tetrabromobisphenol A and telmisartan was smaller but not negligible. Since these chemicals show high bioactivity, their contribution to mixture effects has to be considered when testing passive sampling extracts with in vitro bioassays. This work has further implications for understanding the role of microplastic as a vector for organic micropollutants.

Abstract Image

有机硅聚合物聚二甲基硅氧烷(PDMS)和水之间可电离有机化学品的ph依赖分配
有机硅聚合物聚二甲基硅氧烷(PDMS)是一种流行的被动采样器,用于疏水性有机化学品的原位和非原位采样。尽管其对极性和可电离有机化学物质(IOC)的吸附能力有限,但在提取沉积物和悬浮颗粒物时,在PDMS中发现了IOC。190种有机物和ioc的ph依赖性分配,覆盖了辛醇-水分配常数log Kow从−0.3到7.7的范围,使用由不同PDMS质量与水体积比组成的所有化学物质的混合物,通过10天的摇晃方法进行了评估。该方法复制了文献中中性化学物质的pdms -水分配常数KPDMS/w,并扩展了93种中性化学物质的数据集。对数 KPDMS/w与KPDMS/w之间现有的定量结构-活性关系可以随着测量的KPDMS/w线性扩展到对数 Kow为−0.3。完全带电的有机物不被PDMS吸收。38种单质子有机酸和42种碱对带电物质的吸收可以忽略不计,其表观DPDMS/w(pH)的pH依赖性可以用中性物质的比例乘以中性物质的KPDMS/w来解释。17种具有3个酸度常数pKa的多质子化学物质也表现出DPDMS/w(pH)的pH依赖性,其中中性和两性离子形式的DPDMS/w(pH)最高。四溴双酚A和替米沙坦等疏水性较强的多质子化学物质的带电组分DPDMS/w(pH)较小,但不可忽略。由于这些化学物质显示出很高的生物活性,因此在用体外生物测定法测试被动取样提取物时,必须考虑它们对混合物效应的贡献。这项工作对理解微塑料作为有机微污染物载体的作用具有进一步的意义。
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来源期刊
ACS Environmental Au
ACS Environmental Au 环境科学-
CiteScore
7.10
自引率
0.00%
发文量
0
期刊介绍: ACS Environmental Au is an open access journal which publishes experimental research and theoretical results in all aspects of environmental science and technology both pure and applied. Short letters comprehensive articles reviews and perspectives are welcome in the following areas:Alternative EnergyAnthropogenic Impacts on Atmosphere Soil or WaterBiogeochemical CyclingBiomass or Wastes as ResourcesContaminants in Aquatic and Terrestrial EnvironmentsEnvironmental Data ScienceEcotoxicology and Public HealthEnergy and ClimateEnvironmental Modeling Processes and Measurement Methods and TechnologiesEnvironmental Nanotechnology and BiotechnologyGreen ChemistryGreen Manufacturing and EngineeringRisk assessment Regulatory Frameworks and Life-Cycle AssessmentsTreatment and Resource Recovery and Waste Management
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