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Development of a Novel Equilibrium Passive Sampling Device for Methylmercury in Sediment and Soil Porewaters

机译:沉积物和土壤孔隙水中甲基汞的新型平衡无源采样装置的研制

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We explored the concept of equilibrium passive sampling for methylmercury (MeHg) using the strategy developed for hydrophobic organic chemicals. Passive sampling should allow prediction of the concentration of the chemically labile fraction of MeHg in sediment porewaters based on equilibrium partitioning into the sampler, without modeling diffusion rates through the sampler material. Our goals were to identify sampler materials with the potential to mimic MeHg partitioning into animals and sediments and provide reversible sorption in a time frame appropriate for in situ samplers. Candidate materials tested included a range of polymers embedded with suitable sorbents for MeHg. The most promising were activated carbon (AC) embedded in agarose, thiol-self-assembled monolayers on mesoporous supports embedded in agarose, and cysteine-functionalized polyethylene terephthalate, which yielded log sampler-water partition coefficients of 2.8 to 5 for MeHgOH and MeHg complexed with dissolved organic matter (Suwannee River humic acid). Sampler equilibration time in sediments was approximately 1 to 2 wk. Investigation of the MeHg accumulation mechanism by AC embedded in agarose suggested that sampling was kinetically influenced by MeHg interactions with AC particles and not limited by diffusion through the gel for this material. Also, AC exhibited relatively rapid desorption of Hg and MeHg, indicating that this sorbent is capable of reversible, equilibrium measurements. In sediment:water microcosms, porewater concentrations made with isotherm-calibrated passive samplers agreed within a factor of 2 (unamended sediment) or 4 (AC-amended sediment) with directly measured concentrations. The present study demonstrates a potential new approach to passive sampling of MeHg. Environ Toxicol Chem 2020;39:323-334. (c) 2019 SETAC
机译:我们使用针对疏水性有机化学品开发的策略,探索了甲基汞(MeHg)平衡被动采样的概念。被动采样应允许根据分配到采样器中的平衡分配来预测沉积物孔隙水中MeHg的化学不稳定部分的浓度,而无需模拟通过采样器材料的扩散速率。我们的目标是确定可以模拟MeHg分配到动物和沉积物中的采样器材料,并在适合原位采样器的时间范围内提供可逆的吸附。测试的候选材料包括一系列嵌入了适用于MeHg的吸附剂的聚合物。最有前途的是嵌入琼脂糖中的活性炭(AC),嵌入琼脂糖中孔载体上的巯基自组装单分子层和半胱氨酸官能化的聚对苯二甲酸乙二醇酯,对于MeHgOH和MeHg络合物,其对数进样器-水分配系数为2.8至5含有溶解的有机物(苏万尼河腐殖酸)。沉积物中的采样器平衡时间约为1-2 wk。嵌入琼脂糖中的AC对MeHg积累机理的研究表明,采样受MeHg与AC颗粒相互作用的动力学影响,并且不受该材料在凝胶中扩散的限制。而且,AC表现出相对较快的Hg和MeHg解吸,表明该吸附剂能够进行可逆的平衡测量。在沉积物:水的微观世界中,用等温线校准的被动采样器测得的孔隙水浓度与直接测量的浓度在2(未修正的沉积物)或4(AC修正的沉积物)的系数范围内一致。本研究证明了潜在的MeHg被动采样新方法。 Environ Toxicol Chem 2020; 39:323-334。 (c)2019年SETAC

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