Journal article
Enhancement of soil retention for phenanthrene in binary cationic gemini and nonionic surfactant mixtures: Characterizing two-step adsorption and partition processes through experimental and modeling approaches
Abstract
The enhancement of soil retention for phenanthrene (PHE) through the addition of a binary mixture of cationic gemini (12-2-12) and nonionic surfactants (C12E10) was investigated. The maximum apparent sorption coefficient Kd(*) reached 4247.8 mL/g through the addition of mixed 12-2-12 gemini and C12E10 surfactants, which was markedly higher than the summed individual results in the presence of individual 12-2-12 gemini (1148.6 mL/g) or C12E10 …
Authors
Zhao S; Huang G; An C; Wei J; Yao Y
Journal
Journal of Hazardous Materials, Vol. 286, , pp. 144–151
Publisher
Elsevier
Publication Date
April 2015
DOI
10.1016/j.jhazmat.2014.12.044
ISSN
0304-3894