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首页> 外文期刊>European Journal of Soil Science >Low-molecular-weight organic acids enhance desorption of polycyclic aromatic hydrocarbons from soil
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Low-molecular-weight organic acids enhance desorption of polycyclic aromatic hydrocarbons from soil

机译:低分子量有机酸可促进土壤中多环芳烃的解吸

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The impact of low-molecular-weight organic acids (LMWOAs) on desorption of phenanthrene and pyrene as representative polycyclic aromatic hydrocarbons (PAHs) from a contaminated soil was investigated by using a laboratory batch experiment. Three LMWOAs were used in this study and were citric, oxalic and malic acids. The LMWOAs in aqueous solution promoted desorption of PAHs from soil significantly and demonstrated an increasing trend as the concentration of LMWOAs increased. When compared with desorption of phenanthrene and pyrene from soil to water, the addition of LMWOAs enhanced desorption of test PAHs by up to 285 and 299%, respectively. Among the three LMWOAs studied, citric acid demonstrated the greatest efficiency in promoting PAH desorption from soil. Solutions of LMWOA continuously promoted PAH removal from soil during the multiple cycles of desorption. Overall, the experimental results suggest that LMWOAs in aqueous solution could disrupt soil organic matter (SOM)-metal cation-mineral linkages in soils, resulting in the release of SOM from soil and simultaneous increase of dissolved organic carbon (DOC) in solution. The loss of SOM from soil and increase of DOC in solution are responsible for the enhanced PAH desorption from soil. The positive correlation between DOC in solution and desorbed PAHs from soil suggests that the loss of SOM from soil plays an important role in LMWOA-enhanced desorption of PAHs from soil.
机译:通过实验室分批实验研究了低分子量有机酸(LMWOA)对菲和pyr作为代表性多环芳烃(PAHs)从受污染土壤中解吸的影响。这项研究中使用了三种LMWOA,分别是柠檬酸,草酸和苹果酸。水溶液中的LMWOAs显着促进了PAHs从土壤中的解吸,并显示出随着LMWOAs浓度的增加而增加的趋势。与菲和pyr从土壤到水中的解吸相比,LMTOA的添加分别使测试PAH的解吸分别提高了285%和299%。在研究的三个LMWOA中,柠檬酸显示出促进PAH从土壤中解吸的最大效率。 LMWOA溶液在多个解吸循环中持续促进从土壤中去除PAH。总体而言,实验结果表明,水溶液中的LMWOA可能会破坏土壤中的土壤有机物(SOM)-金属阳离子-矿物质之间的联系,从而导致SOM从土壤中释放出来并同时增加溶液中的溶解有机碳(DOC)。土壤中SOM的损失和溶液中DOC的增加是造成PAH从土壤中解吸增强的原因。溶液中DOC与土壤中解吸的PAHs之间存在正相关关系,表明土壤中SOM的损失在LMWOA增强PAHs从土壤中解吸中起着重要作用。

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