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Baqiyatallah University of Medical Sciences

An enquiry on appropriate selection of polymers for preparation of polymeric nanosorbents and nanofiltration/ultrafiltration membranes for hormone micropollutants removal from water effluents

(2017) An enquiry on appropriate selection of polymers for preparation of polymeric nanosorbents and nanofiltration/ultrafiltration membranes for hormone micropollutants removal from water effluents. Chemosphere. pp. 91-99. ISSN 0045-6535

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Abstract

To analyze polymeric nanosorbents and nanofiltration/ultrafiltration membranes for hormone micro pollutants removal from water effluents, here an in-through investigation on the suitability and compatibility of various polymers has been carried out. For this work, estradiol, estrone, testosterone, progesterone, estriol, mestranol, and ethinylestradiol were considered. A total number of 452 polymers were analyzed and initially screened using Hansen solubility parameters. The identified good pairs of hormones and polymers then were examined to obtain the equilibrium capacity of hormones removal from water effluents using a modified Flory-Huggins model. A distribution coefficient was defined as the ratio of hormones in water effluent phase and polymer phase. For removal of mestranol, estradiol and ethinylestradiol, no compatible polymer was identified based on initial screening of collected database. Three compatible polymers were identified for estriol. For progesterone, a wide variety of polymers was identified as good matching of polar, dispersion and hydrogen forces contributions can be observed for these pairs. For estrone, only two polymers can be proposed due to the mismatch Observed between polar, dispersion and hydrogen forces contributions of other polymers and this hormone. The phase calculations showed that not all the identified good pairs could be used for practical separation applications. The domain of applicability of each good pair was investigated and potential polymers for practical micropollutants removal together with their removal capacity were represented in terms of phase envelops. The theoretical approach follows fundamental chemical thermodynamic equations and then can be simply applied for any system of interest. (C) 2016 Elsevier Ltd. All rights reserved.

Item Type: Article
Keywords: Hormones micropollutants Sorption Polymers Hansen parameter Phase envelops endocrine-disrupting chemicals active compounds nf/ro membranes treatment works pharmaceuticals adsorption rejection estrogens Environmental Sciences & Ecology
Divisions:
Page Range: pp. 91-99
Journal or Publication Title: Chemosphere
Journal Index: ISI
Volume: 168
Identification Number: https://doi.org/10.1016/j.chemosphere.2016.10.049
ISSN: 0045-6535
Depositing User: مهندس مهدی شریفی
URI: http://eprints.bmsu.ac.ir/id/eprint/4572

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