首页 | 本学科首页   官方微博 | 高级检索  
     检索      

添加表面活性剂土壤中蒽的去除以及矿质态氮动态研究
引用本文:M. R. C&#;RDENAS-AQUINO,G. SALOM&#;N-HERNáNDEZ,&#;. AGUILAR-CH&#;VEZ,M. L. LUNA-GUIDO,R. MARSCH,L. DENDOOVEN.添加表面活性剂土壤中蒽的去除以及矿质态氮动态研究[J].土壤圈,2014,24(6):783-790.
作者姓名:M. R. C&#;RDENAS-AQUINO  G. SALOM&#;N-HERNáNDEZ  &#;. AGUILAR-CH&#;VEZ  M. L. LUNA-GUIDO  R. MARSCH  L. DENDOOVEN
基金项目:Supported by Cinvestav, Mexico, Consejo Nacional de Ciencia y Tecnologfa (CONACyT), Mexico and Sistema Nacional de Investigadores (SNI), Mexico.
摘    要:Surfactants, such as non-ionic Surfynol 485 (ethoxylated 2,4,7,9-tetramethyl-5-decyne-4,7-diol), have been applied to accelerate removal of polycyclic aromatic hydrocarbons from soil. This study investigated the dissipation of anthracene, and carbon (C) and nitrogen (N) mineralization in soil amended with non-ionic Surfynol 485 at different rates. Soil samples of a Typic Fragiudept taken from Otumba, Mexico were spiked with anthracene at a final concentration of 520 mg kg^-1 dry soil using acetone as solvent, amended with 0.0, 24.9, 49.8 or 124.4 g kg^-1 soil of the surfactant and incubated in the laboratory. The soil not amended with anthracene, acetone and the surfactant was used as a control. Dynamics of C and N and the concentration of anthracene were monitored for 56 d. After 56 d of incubation, 38% of the anthracene was removed from the unamended soil, and 47%, 55% and 66% of the anthracene were removed when 24.9, 49.8 and 124.4 g kg^-1 of the surfactant were applied, respectively. Application of acetone, anthracene or surfactant increased the emission of CO2, but decreased the mineral N compared to the unamended control. Applying the surfactant to the acetone or anthracene-amended soil reduced emission of CO2, but increased the mineral N at the lower application rates of the surfactant. It was found that the application of the non-ionic surfactant increased the bioavailability of anthracene and thus its removal from soil, increased C mineralization, but decreased N miaeralization. Consequently, the application of non-ionic surfactant could be easily used to accelerate the removal of pollutants from hydrocarbon-contaminated soils, but mineral N in the soil would decrease, which might inhibit plant growth.

关 键 词:非离子表面活性剂  氮动态  土壤  修订    矿质  拆卸  二氧化碳
收稿时间:28 November 2013

Anthracene removal and mineral N dynamics in a surfactant-amended soil
M. R. CARDENAS-AQUINO G. SALOMON-HERNANDEZ A. AGUILAR-CHAVEZ M. L. LUNA-GUIDO R. MARSCH L. DENDOOVEN.Anthracene removal and mineral N dynamics in a surfactant-amended soil[J].Pedosphere,2014,24(6):783-790.
Authors:M R CARDENAS-AQUINO G SALOMON-HERNANDEZ A AGUILAR-CHAVEZ M L LUNA-GUIDO R MARSCH L DENDOOVEN
Institution:Laboratory of Soil Ecology, Department of Biotechnology and Bioengineering, Cinvestav, Mexico D.F. C.P. 07360 (Mexico)
Abstract:Surfactants, such as non-ionic Surfynol® 485 (ethoxylated 2,4,7,9-tetramethyl-5-decyne-4,7-diol), have been applied to accelerate removal of polycyclic aromatic hydrocarbons from soil. This study investigated the dissipation of anthracene, and carbon (C) and nitrogen (N) mineralization in soil amended with non-ionic Surfynol® 485 at different rates. Soil samples of a Typic Fragiudept taken from Otumba, Mexico were spiked with anthracene at a final concentration of 520 mg kg-1 dry soil using acetone as solvent, amended with 0.0, 24.9, 49.8 or 124.4 g kg-1 soil of the surfactant and incubated in the laboratory. The soil not amended with anthracene, acetone and the surfactant was used as a control. Dynamics of C and N and the concentration of anthracene were monitored for 56 d. After 56 d of incubation, 38% of the anthracene was removed from the unamended soil, and 47%, 55% and 66% of the anthracene were removed when 24.9, 49.8 and 124.4 g kg-1 of the surfactant were applied, respectively. Application of acetone, anthracene or surfactant increased the emission of CO2, but decreased the mineral N compared to the unamended control. Applying the surfactant to the acetone or anthracene-amended soil reduced emission of CO2, but increased the mineral N at the lower application rates of the surfactant. It was found that the application of the non-ionic surfactant increased the bioavailability of anthracene and thus its removal from soil, increased C mineralization, but decreased N mineralization. Consequently, the application of non-ionic surfactant could be easily used to accelerate the removal of pollutants from hydrocarbon-contaminated soils, but mineral N in the soil would decrease, which might inhibit plant growth.
Keywords:acetone  anthracene  bioavailability  C mineralization  CO2 emission  non-ionic surfactant Surfynol®   485  polycyclic aromatic hydrocarbons
本文献已被 CNKI 维普 ScienceDirect 等数据库收录!
点击此处可从《土壤圈》浏览原始摘要信息
点击此处可从《土壤圈》下载免费的PDF全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号