丁基橡胶基大孔吸附材料作为被动采样器的性能研究。

ty10086 提交于 周三, 08/25/2021 - 16:12
文章英文标题
Performance of butyl rubber-based macroporous sorbents as passive samplers.
正文
本研究采用冷冻凝胶技术,在苯( H-BR )和环己烷( L-BR )中制备了两种不同孔隙率的大孔丁基橡胶( BR )基吸附剂。研究了它们作为被动采样器的性能,并与市售硅橡胶(聚二甲基硅氧烷,PDMS )被动采样器进行了比较。为此,研究了吸附剂对多环芳烃( PAH )的短期吸收率及其长期积累能力。利用了4种不同芳环数的PAHs (萘、菲、荧蒽、芘)。用荧光分光光度计测定溶液中PAHs的浓度。结果表明,在苯( H-BR )中制备的BR采样器对所有PAHs的吸收率普遍最高。H - BR、L - BR和PDMS样品的速率常数k ( h-1 )分别为萘1.07、0.55和0.55,菲0.73、0.16和0.09,荧蒽0.24、0.26和0.08,芘0.97、0.38和0.17。在苯中制备的BR吸附剂对所有PAHs的吸收能力最高。因此,在丁基橡胶基采样器的制备中,选择苯作为有机溶剂而不是环己烷作进一步研究。具有最高吸收率和容量的H-BR强调了它们作为一种能力强的被动采样器用于水环境的短期和长期监测活动。
文章内容(英文)
In this study, two macroporous butyl rubber (BR)-based sorbents prepared in benzene (H-BR) and in cyclohexane (L-BR) with different porosities were synthesized by cryogelation technique. Their performances as a passive sampler were studied and then compared with commercially available silicon rubber (polydimethylsiloxane, PDMS) passive sampler. For that aim, polycyclic aromatic hydrocarbon (PAH) absorption rates of the sorbents in the short-term and their accumulation capacities in the long-term periods were investigated. Four PAHs (naphthalene, phenanthrene, fluoranthene, and pyrene) with a different number of aromatic rings were utilized. The concentrations of the PAHs in solutions were quantified by fluorescence spectrophotometer. The results showed that the BR sampler prepared in benzene (H-BR) generally has the highest absorption rates for all PAHs. The rate constants k (h-1) of the H-BR, L-BR, and PDMS samplers were found as 1.07, 0.55, and 0.55 for naphthalene; 0.73, 0.16, and 0.09 for phenanthrene; 0.24, 0.26, and 0.08 for fluoranthene; and 0.97, 0.38, and 0.17 for pyrene, respectively. The highest PAH absorption capacity was found for the BR sorbents prepared in benzene for all PAHs. Thus, benzene was selected as the organic solvent rather than cyclohexane for further studies in the preparation of butyl rubber-based samplers. The H-BR possessing the highest absorption rate and capacity underlines their usage as a capable passive sampler for both short- and long-term monitoring activities in the aquatic environments.
来源出处
Journal|[J]Environmental Science and Pollution ResearchVolume 28, Issue 4. 2021. PP 3766-3773
DOI
https://doi.org/10.1007/S11356-020-08945-4

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