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用二氧化钛改性的纤维素微膜用于砷酸盐和亚硒酸盐的分离、测定及形态分析。

Cellulose mini-membranes modified with TiO for separation, determination, and speciation of arsenates and selenites.

作者信息

Zawisza Beata, Sitko Rafal, Queralt Ignasi, Margui Eva, Gagor Anna

机构信息

Institute of Chemistry, University of Silesia, Szkolna 9, 40-006, Katowice, Poland.

Department of Geosciences, Institute of Environmental Assessment and Water Research, IDAEA-CSIC, Jordi Girona St., 18-26, 08034, Barcelona, Spain.

出版信息

Mikrochim Acta. 2020 Jul 6;187(8):430. doi: 10.1007/s00604-020-04387-4.

Abstract

Sorptive and selective mini-membranes based on TiO directly synthesized onto cellulose filters (TiO@cellulose) have been developed. The in situ synthesis of TiO@cellulose applied is simple and economically advantageous. The obtained membranes can be useful for (1) separating arsenic(V) and selenium(IV) from other ions and organic matter, (2) speciation of arsenic and selenium, and (3) determining ulratraces of these ions in water samples. The membranes exhibit good stability and high maximum adsorption capacities for Se(IV) (71 mg g) and As(V) (41 mg g). A monolayer chemical adsorption of analytes on the membranes was confirmed. The structure of membranes was examined with scanning electron microscopy, x-ray diffractometry, and micro energy-dispersive x-ray fluorescence spectrometry (μ-EDXRF). The membranes were characterized by homogenous distribution of TiO onto cellulose. The TiO@cellulose was used as a new sorbent in micro-solid phase extraction for determination of Se(IV) and As(V) by EDXRF. Using direct analysis of mini-membranes after sorption of analytes avoids the elution step. Thus, the proposed procedure is an attractive and solvent-free option for quantitative monitoring of Se(IV) and As(V) in different materials. Both analytes were quantitatively and simultaneously separated/determined from samples at pH 2 with very good recovery (close to 100%), precision (4.5%), and detection limits (0.4 ng mL Se and 0.25 ng mL As). TiO@cellulose membranes were applied to water analysis. Graphical-abstract Effective method for determination of ultra trace arsenates and selenites using cellulose-based sorbent.

摘要

已开发出直接合成在纤维素滤膜上的基于TiO的吸附性和选择性微型膜(TiO@纤维素)。所应用的TiO@纤维素原位合成方法简单且具有经济优势。所得的膜可用于:(1)从其他离子和有机物中分离砷(V)和硒(IV);(2)砷和硒的形态分析;(3)测定水样中这些离子的超痕量。这些膜对Se(IV)(71 mg g)和As(V)(41 mg g)表现出良好的稳定性和高最大吸附容量。证实了分析物在膜上的单层化学吸附。用扫描电子显微镜、X射线衍射和微能量色散X射线荧光光谱法(μ-EDXRF)对膜的结构进行了研究。膜的特征是TiO在纤维素上均匀分布。TiO@纤维素被用作微固相萃取中的新型吸附剂,通过EDXRF测定Se(IV)和As(V)。在分析物吸附后对微型膜进行直接分析避免了洗脱步骤。因此,所提出的方法是一种有吸引力的、无溶剂的选择,用于定量监测不同材料中的Se(IV)和As(V)。在pH 2时,两种分析物都能从样品中定量且同时分离/测定,回收率非常好(接近100%),精密度为4.5%,检测限为0.4 ng mL Se和0.25 ng mL As。TiO@纤维素膜应用于水分析。图形摘要:使用基于纤维素的吸附剂测定超痕量砷酸盐和亚硒酸盐的有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd85/7338822/f2f898e5f2d8/604_2020_4387_Figa_HTML.jpg

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