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  4. Competitive sorption of bisphenol A and phenol in soils and the contribution of black carbon
 
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Competitive sorption of bisphenol A and phenol in soils and the contribution of black carbon

Journal
Ecological Engineering
Journal Volume
92
Journal Volume
92
Pages
270-276
Start Page
270
End Page
276
ISSN
09258574
Date Issued
2016-07-01
Author(s)
Ou, Yu-Heng
Chang, Ying-Jie
Lin, Feng-yi
Chang, Meei-ling
Yang, Chien-Ying
YANG-HSIN SHIH  
DOI
10.1016/j.ecoleng.2016.04.006
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/446310
https://www.scopus.com/pages/publications/84992304863?origin=resultslist
URL
https://www2.scopus.com/inward/record.uri?eid=2-s2.0-84992304863&doi=10.1016%2fj.ecoleng.2016.04.006&partnerID=40&md5=310d0a2645e9da4d6d1b21bb856a8c77
Abstract
The sorption of contaminants such as bisphenol A (BPA), an endocrine disrupting chemical associated with various health problems, plays an important role in their transport and bioavailability in soils. This study investigates the sorption of BPA and phenol in two soils, Lu-Kung soil (LK) and Chen-Chu-Llu soil (CCL), as well as in straw-derived black carbon (BC). The sorption of both phenolic compounds in LK is much higher than that in CCL because of the higher organic content in LK (3.5%) as compared to CCL (1.3%). In addition, a higher BC fraction is observed in LK than in CCL. Furthermore, the sorption of BPA is greater than that of phenol because BPA exhibits higher hydrophobicity. For BPA, Freundlich affinity constants, Kf, are 2.62 (Freundlich exponent constant, n = 0.91) in LK and 1.54 (n = 0.92) in CCL. For phenol, Kf is 0.695 (n = 1.0) in LK and 0.0014 (n = 2.3) in CCL. For competitive sorption experiments, phenol sorption in LK could be suppressed by BPA, but the reverse is not possible. Chemical hydrophobicity strongly affects their competition. Similar competitive adsorption behaviour is observed on BC. Phenolic compounds' sorption on carbonaceous materials occurs through a bilayer formation. Thus, surface adsorption on carbonaceous materials largely determines the sorption of organic compounds in soils.
Subjects
Bisphenol A
Black carbon
Competitive sorption
Phenol
Soils
SDGs

[SDGs]SDG3

[SDGs]SDG6

[SDGs]SDG15

Publisher
Elsevier B.V.
Type
journal article

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