首页> 外文期刊>Environmental Toxicology and Chemistry >ADSORPTION OF HYDROPHOBIC ORGANIC COMPOUNDS ONTO A HYDROPHOBIC CARBONACEOUS GEOSORBENT IN THE PRESENCE OF SURFACTANTS
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ADSORPTION OF HYDROPHOBIC ORGANIC COMPOUNDS ONTO A HYDROPHOBIC CARBONACEOUS GEOSORBENT IN THE PRESENCE OF SURFACTANTS

机译:在表面活性剂存在下将疏水性有机化合物吸附到疏水性碳质土工吸附剂上

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The adsorption of hydrophobic organic compounds (HOCs; atrazine and diuron) onto lampblack was studied in the presence of nonionic, cationic, and anionic surfactants (Triton® X-100), benzalkonium chloride [BC], and linear alkylbenzene sulfonate [LAS]) to determine the effect of the surfactant on HOC adsorption onto a hydrophobic carbonaceous geosorbent. Linear alkylbenzene sulfonate showed an adsorption capacity higher than that of BC but similar to that of Triton X-100, implying the charge property of a surfactant is not a useful indicator for predicting the surfactant's adsorption onto a hydrophobic medium. The results also indicated that the octanol–water partition coefficient (KOW) of a surfactant is not a good predictor of that surfactant's sorption onto a hydrophobic medium. Under subsaturation adsorption conditions (i.e., before sorption saturation is reached), surfactant adsorption reduced HOC adsorption to a significant extent, with the reduction in HOC adsorption increasing monotonically with the amount of surfactant adsorbed. Among the three surfactants, Triton X-100 was the most effective in reducing HOC adsorption, whereas BC and LAS showed similar effectiveness in this regard. Under the same amount of the surfactant sorbed, the reduction in atrazine adsorption was consistently greater than that for diuron because of atrazine's lower hydrophobicity. No significant difference was observed in the amount of the HOC adsorbed under different adsorption sequences. Our results showed that the presence of surfactant can significantly decrease HOC adsorption onto hydrophobic environmental media and, thus, is important in predicting HOC fate and transport in the environment
机译:在非离子,阳离子和阴离子表面活性剂(Triton®X-100),苯扎氯铵[BC]和直链烷基苯磺酸盐[LAS]的存在下,研究了疏水有机化合物(HOCs;阿特拉津和杜隆)在油烟上的吸附。以确定表面活性剂对HOC在疏水性碳质地质吸附剂上的吸附作用。直链烷基苯磺酸盐显示出比BC高的吸附能力,但与Triton X-100相似,这表明表面活性剂的带电性能不是预测表面活性剂在疏水性介质上吸附的有用指标。结果还表明,表面活性剂的辛醇-水分配系数(KOW)不能很好地预测表面活性剂在疏水性介质上的吸附。在亚饱和吸附条件下(即在达到吸附饱和之前),表面活性剂吸附在很大程度上降低了HOC吸附,HOC吸附的减少随表面活性剂的吸附量单调增加。在这三种表面活性剂中,Triton X-100在减少HOC吸附方面最有效,而BC和LAS在这方面显示出相似的效果。在相同量的表面活性剂吸附下,由于at去津的疏水性较低,因此at去津的吸收减少量始终大于敌草隆。在不同的吸附顺序下,HOC的吸附量没有显着差异。我们的结果表明,表面活性剂的存在可以显着降低HOC在疏水性环境介质中的吸附,因此,对于预测HOC在环境中的命运和运输至关重要

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