Science Current Events | Science News | Brightsurf.com
 
Combined effect of nonionic surfactant Tween 80 and DOM on the behaviors of PAHs in soil-water system [An article from: Chemosphere]
View Larger Image

Combined effect of nonionic surfactant Tween 80 and DOM on the behaviors of PAHs in soil-water system [An article from: Chemosphere] | Digital

by K.Y. Cheng (Author), J.W.C. Wong (Author)

List Price: $8.95  
Available:  Available for download now

Binding:  Digital
Publisher:  Elsevier


EDITORIAL REVIEWS


Product Description
This digital document is a journal article from Chemosphere, published by Elsevier in . The article is delivered in HTML format and is available in your Amazon.com Media Library immediately after purchase. You can view it with any web browser.Description: Batch experiments were performed to examine the desorption behavior of phenanthrene and pyrene in soil-water system in the presence of nonionic surfactant Tween 80 and dissolved organic matter (DOM) derived from pig manure or pig manure compost. Addition of 150mgl^-^1 Tween 80 desorbed 5.8% and 2.1% of phenanthrene and pyrene from soil into aqueous phase, respectively, while the addition of both Tween 80 and DOM derived from pig manure compost and pig manure could further enhance the desorption of phenanthrene to 15.8% and 16.2%, respectively, and 6.4% and 10.9%, respectively, for pyrene. In addition, our finding also suggested that subsequent addition of Tween 80 into the soil-water system could further enhance PAHs desorption. The enhancement effect of the co-existence of Tween 80 and DOM was more than the additive effect of the Tween 80 and DOM individually. It is likely that the formation of DOM-surfactant complex in the soil-water system may be a possible reason to explain such desorption enhancement phenomenon. Therefore, it is anticipated that the coexistence of both Tween 80 and DOM derived from pig manure or pig manure compost in soil environment will enhance the bioavailability of PAHs as well as other hydrophobic organic contaminants (HOCs) by enhancing the desorption during remediation process.
© 2009 BrightSurf.com