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首页> 外文期刊>International Journal of Environmental Science and Technology >The extracted saponin from ginseng as an efficient renewable biosurfactant for desorption enhancement of phenanthrene and nickel
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The extracted saponin from ginseng as an efficient renewable biosurfactant for desorption enhancement of phenanthrene and nickel

机译:来自人参的提取的皂苷作为一种有效的可再生能源活性剂,用于解吸增强菲和镍的解吸

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摘要

Biosurfactants, especially plant-derived saponins, are capable of solubilizing and removing both heavy metals and polycyclic aromatic hydrocarbons (PAHs), simultaneously. The purpose of this study was proposing a procedure to extract Korean ginseng saponin (KGS), evaluating the characteristics and thermodynamic parameters of the KGS and exploring the possible application of the KGS for enhancing solubilization and desorption of phenanthrene (as a representative of low molecular weight PAHs) and nickel (as a representative of heavy metals). The KGS can effectively reduce surface tension of water from 73 to 40Mnm(-1) at critical micelle concentration of 0.83g/L. Analysis of the FTIR data suggested that KGS can form complex with nickel caused by hydroxyl group of saponin; nevertheless, phenanthrene has no significant effect on KGS solution spectra. The solubility of phenanthrene was enhanced about 76-fold by 15g/L of KGS solution than by pure water. Batch desorption tests were conducted on kaolinite contaminated with phenanthrene (102mg/kg) and nickel (112mg/kg). The results showed that 30g/L KGS can simultaneously remove 79 and 86% of phenanthrene and nickel, respectively. Hence, KGS can be considered as an enhancing agent in remediation technologies of soils contaminated simultaneously with heavy metals and PAHs.
机译:生物表面活性剂,尤其是植物衍生的皂苷,能够同时溶解和除去重金属和多环芳烃(PAH)。本研究的目的是提出提取韩国人参皂苷(KGS)的程序,评价KGS的特征和热力学参数,并探索KG的可能施加以增强苯苯甲烷的增强和解吸(作为低分子量的代表PAHS)和镍(作为重金属的代表)。 KGS可以在0.83g / L的临界胶束浓度下有效地将水的表面张力从73-40mnm(-1)降低。 FTIR数据的分析表明,KGs可以与皂苷羟基引起的镍形成复合物;然而,Phenanthrene对KGS溶液光谱没有显着影响。菲的溶解度增强约76倍,比纯水为15g / L的KGS溶液。分批解吸试验在含有菲甲烷(102mg / kg)和镍(112mg / kg)污染的高岭石上进行。结果表明,30g / L kgs分别可以分别同时去除79%和86%的菲和镍。因此,KGS可以被认为是与重金属和PAHs同时污染的土壤的修复技术中的增强剂。

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