Preparation of Amphiphilic Solid Phase Extraction Material and Its Application in Aqueous Steroid Hormones Extraction

Author:

Zhang Miao12,Zhao Jia‐Hui3,Liu Bo124ORCID,Wang Hao‐Dong12,Xiao Ning‐Lan12,Li Qiang12,Li Pei‐Ying12,Hu Guo‐Wei12,Lai Hua‐Jie12356,Jin Tao123

Affiliation:

1. Guangzhou Institute of Chemistry Chinese Academy of Sciences Guangzhou 510650 China

2. University of Chinese Academy of Sciences Beijing 100049 China

3. CAS Testing Technical Services (Guangzhou) Co. Ltd Guangzhou 510650 China

4. New Materials Research Institute of CASCHEM (Chongqing) Co. Ltd Chongqing 400714 China

5. CAS Engineering Laboratory for Special Fine Chemicals Chinese Academy of Sciences Guangzhou 510650 China

6. Guangdong Provincial Key Laboratory of Organic Polymer Materials for Electronics Guangzhou 510650 China

Abstract

AbstractThe steroid hormones have attracted increasing attentions in aquatic environment because of their endocrine disrupting effects at trace concentrations. In this work, amphiphilic solid phase extraction material of divinylbenzene‐N‐vinyl‐2‐pyrrolidinone polymer microsphere was synthesized by free radical polymerization. The adsorption of 4 steroid hormones in aqueous solution by prepared amphiphilic microsphere was determined by high‐performance liquid chromatography‐tandem mass spectrometry method. When methyl cellulose and sodium dodecyl sulfonate were used as dispersants, 2,2’‐azobis(2‐methylpropionitrile) was used as initiator, the amphiphilic microsphere was successfully prepared at 80 °C for 6 h. The amphiphilic microsphere has high specific surface area of 774 m2 g−1 with uniform particle size, which is comparable to the commercial solid phase extraction fillers. The amphiphilic microsphere has been successfully applied to the enrichment and detection of 4 steroid hormones (17α‐hydroxyprogesterone, metandienone, norethindrone and boldenone) in natural water. The recoveries of 4 steroid hormones ranged from 83.7 % to 114 %, and the limit of detection were in the range of 0.70–13.5 ng L−1.

Publisher

Wiley

Subject

General Chemistry

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