Lancaster Environment Centre, Lancaster University , Lancaster, LA1 4YQ, U.K.
Environ Sci Technol. 2017 Nov 21;51(22):13274-13281. doi: 10.1021/acs.est.7b03940. Epub 2017 Nov 11.
Widespread use of organic chemicals in household and personal care products (HPCPs) and their discharge into aquatic systems means reliable, robust techniques to monitor environmental concentrations are needed. The passive sampling approach of diffusive gradients in thin-films (DGT) is developed here and demonstrated to provide in situ quantitative and time-weighted average (TWA) measurement of these chemicals in waters. The novel technique is developed for HPCPs, including preservatives, antioxidants and disinfectants, by evaluating the performance of different binding agents. Ultrasonic extraction of binding gels in acetonitrile gave good and consistent recoveries for all test chemicals. Uptake by DGT with HLB (hydrophilic-lipophilic-balanced) as the binding agent was relatively independent of pH (3.5-9.5), ionic strength (0.001-0.1 M) and dissolved organic matter (0-20 mg L), making it suitable for applications across a wide range of environments. Deployment time and diffusion layer thickness dependence experiments confirmed DGT accumulated chemicals masses are consistent with theoretical predictions. The technique was further tested and applied in the influent and effluent of a wastewater treatment plant. Results were compared with conventional grab-sampling and 24-h-composited samples from autosamplers. DGT provided TWA concentrations over up to 18 days deployment, with minimal effects from biofouling or the diffusive boundary layer. The field application demonstrated advantages of the DGT technique: it gives in situ analyte preconcentration in a simple matrix, with more quantitative measurement of the HPCP analytes.
家用和个人护理产品(HPCPs)中广泛使用有机化学品,并将其排放到水生系统中,这意味着需要可靠、强大的技术来监测环境浓度。本文开发了被动采样方法——薄膜扩散梯度(DGT),并证明其可用于原位定量和时间加权平均值(TWA)测量水中的这些化学物质。通过评估不同结合剂的性能,该新技术被开发用于 HPCPs,包括防腐剂、抗氧化剂和消毒剂。用乙腈超声提取结合凝胶可使所有测试化学品获得良好且一致的回收率。HLB(亲水-亲脂平衡)作为结合剂的 DGT 对 pH(3.5-9.5)、离子强度(0.001-0.1 M)和溶解有机物(0-20 mg L)的吸收相对独立,使其适用于广泛的环境应用。部署时间和扩散层厚度依赖实验证实,DGT 积累的化学物质质量与理论预测一致。该技术进一步在废水处理厂的进水和出水进行了测试和应用。结果与传统的随机抽样和自动采样器的 24 小时混合样本进行了比较。DGT 可提供长达 18 天部署时间的 TWA 浓度,生物污垢或扩散边界层的影响最小。现场应用证明了 DGT 技术的优势:它在简单基质中进行原位分析物预浓缩,并对 HPCP 分析物进行更定量的测量。