4.7 Article

Clinoptilolite and palygorskite as sorbents of neutral emerging organic contaminants in treated wastewater: Sorption-desorption studies

Journal

CHEMOSPHERE
Volume 175, Issue -, Pages 534-542

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2017.02.057

Keywords

Clinoptilolite; Palygorskite; Sorption; Desorption; Treated wastewater; EOCs

Funding

  1. Ministerio de Ciencia e Innovacion and Minsiterio de Economia y Cornpetitividad (Spanish Government) [CGL2009-13168-0O3-01-02, CGL2012-39520-0O301]

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Water reuse for aquifer recharge could be an important route for the introduction of emerging organic contaminants (EOCs) into the environment. The installation of a Horizontal Permeable Reactive Barrier (H-PRB) could constitute a tertiary treatment process to remove EOCs from treated domestic wastewater prior to recharge activities. The sorption-desorption behaviour of six neutral EOCs present in treated domestic wastewater (acetaminophen, caffeine, carbamazepine, cotinine, 4-acetamidoantipyrine (4-AAA) and 4-formylaminoantipyrine (4-FAA)) has been evaluated. Clinoptilolite and palygorskite have been studied as sorbents to be installed in the H-PRB. Batch tests were carried out using an EOC initial concentration ranging from 5 to 100 mu g L-1. Apart from acetaminophen and caffeine, both materials showed a limited sorption capacity of neutral EOCs (K-d = 0.63-5.42 L kg(-1)). In general, the experimental results show that EOCs exhibit a higher sorption affinity for clinoptilolite than for palygorskite. With the exception of carbamazepine, the sorption of the compounds occurs mainly by interactions with mineral surfaces as indicated by the comparison of the partition coefficients into organic matter and into mineral surfaces. According to the molecular geometry of the compounds and the sorption sequences observed, it appears that the dimensions of the organic molecules play a key role in the sorption process. All the studied EOCs exhibit irreversible sorption and sorption-desorption hysteresis. (C) 2017 Elsevier Ltd. All rights reserved.

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