首站-论文投稿智能助手
典型文献
Sorption of Perfluorooctane sulfonate (PFOS)including its isomers on hydrargillite as a function of pH,humic substances and Na2SO4
文献摘要:
Perfluooroctane sulfonate (PFOS) is a persistent organic pollutant (POP) and emergent con-taminant that are widespread in the environment.Understanding the mechanisms control-ling the distribution of PFOS and its isomers between hydrargillite and the water phase is important in order to study their redistribution and mobility in the environment.This study investigated the effects of pH,humic acid,fulvic acid and Na2SO4 on sorption of PFOS iso-mers to hydrargillite.A mixture of PFOS isomers was spiked into water and hydrargillite was added to the system and shaken for one day;the system was tested with different aqueous composition.Concentrations of PFOS isomers in the aqueous phase were quanti-fied using an ultra-performance liquid chromatograph coupled to a triple quadrupole mass spectrometer.Our results showed that the distribution coefficients of PFOS isomers were found to be 0.76,0.71,0.93 and 0.90 at pH 6.5,for 3-/4-/5-PFOS,6-/2-PFOS,L-PFOS and to-tal PFOS respectively.The distribution coefficients increased at lower pH and decreased at alkaline conditions.The presence of humic substances (HS) increased the sorption slightly at the environmental pH of 6.5,although a competition effect was observed during acidic conditions.A tendency of PFOS distribution to hydrargillite in the presence of Na2SO4 was like its behavior in the presence of HS although the mechanisms behind the sorption were interpreted differently.This study revealed that L-PFOS was readily sorbed when no other chemicals were added or in 20 mg/L FA or 100 mg/L Na2SO4.We suggest that an increase in PFOS sorption in the presence of HS may be due to hydrophobic mechanisms while Na2SO4 contributed to increased sorption through ionic strength effects.
文献关键词:
作者姓名:
Jean-Noel Uwayezu;Leo W.Y.Yeung;Mattias B(a)ckstr(o)m
作者机构:
Man-Technology-Environment Research Centre (MTM),(O)rebro University,70182 (O)rebro,Sweden
引用格式:
[1]Jean-Noel Uwayezu;Leo W.Y.Yeung;Mattias B(a)ckstr(o)m-.Sorption of Perfluorooctane sulfonate (PFOS)including its isomers on hydrargillite as a function of pH,humic substances and Na2SO4)[J].环境科学学报(英文版),2022(01):263-272
A类:
hydrargillite,Perfluooroctane,taminant,shaken
B类:
Sorption,Perfluorooctane,sulfonate,PFOS,including,its,isomers,function,humic,substances,Na2SO4,persistent,organic,pollutant,POP,emergent,that,are,widespread,Understanding,mechanisms,control,ling,between,water,phase,important,order,study,their,redistribution,mobility,This,investigated,effects,fulvic,sorption,mixture,was,spiked,into,added,system,one,day,tested,aqueous,composition,Concentrations,were,quanti,fied,using,ultra,performance,liquid,chromatograph,coupled,triple,quadrupole,mass,spectrometer,Our,results,showed,coefficients,found,respectively,increased,lower,decreased,alkaline,conditions,presence,HS,slightly,environmental,although,competition,observed,during,acidic,tendency,like,behavior,behind,interpreted,differently,revealed,readily,sorbed,when,no,other,chemicals,FA,We,suggest,may,due,hydrophobic,while,contributed,through,ionic,strength
AB值:
0.43702
相似文献
Response of soil respiration to environmental and photosynthetic factors in different subalpine forest?cover types in a loess alpine hilly region
Yuanhang Li;Sha Lin;Qi Chen;Xinyao Ma;Shuaijun Wang;Kangning He-School of Soil and Water Conservation,Key Laboratory of State Forestry Administration On Soil and Water Conservation,Beijing Forestry University,Beijing 100083, People's Republic of China;Beijing Engineering Research Center of Soil and Water Conservation,Beijing Forestry University,Beijing 100083, People's Republic of China;Engineering Research Center of Forestry Ecological Engineering,Ministry of Education,Beijing Forestry University,Beijing 100083,People's Republic of China;North China Power Engineering Co.,Ltd.of China Power Engineering Consulting Group,Changchun 130021, People's Republic of China;Power China Huadong Engineering Corporation Limited, Hangzhou 311122,People's Republic of China
Sorption mechanisms of diphenylarsinic acid on natural magnetite and siderite:Evidence from sorption kinetics,sequential extraction and extended X-ray absorption fine-structure spectroscopy analysis
Meng Zhu;Yuhuan He;Xiaobao Wei;Haoran Qi;Yunpeng Zhang;Yijun Zhang;Ruyi Yang;Yongming Luo-School of Ecology and Environment,Anhui Normal University,Wuhu 241002,China;Key Laboratory of Coastal Environmental Processes and Ecological Remediation,Yantai Institute of Coastal Zone Research,Chinese Academy of Sciences,Yantai 264003,China;Anhui Provincial Engineering Laboratory of Water and Soil Pollution Control and Remediation,Anhui Normal University,Wuhu 241002,China;Center of Cooperative Innovation for Recovery and Reconstruction of Degraded Ecosystem in Wanjiang City Belt,Anhui Normal University,Wuhu 241002,China;Key Laboratory of Soil Environment and Pollution Remediation,Institute of Soil Science,Chinese Academy of Sciences,Nanjing 210008,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。