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Effects of DOM on Sorption of Polar Compounds to Soils: Sulfapyridine as a Case Study

机译:DOM对土壤中极化化合物吸附的影响:苏氟吡啶作为案例研究

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Sorptive behavior of sulfapyridine (SPD) in three organic-poor soils having different mineral compositions was investigated. The effects of adding biosolids-derived compost extract (dissolved organic matter, DOM) on SPD sorption to soil were evaluated. The primary goal was to discern between effects caused by DOM, pH, and ionic composition. SPD sorption in the three-phase (soil-DOM-SPD) systems was shown to decrease relative to non-DOM amended soils, when DOM and SPD were co-introduced to soil. This trend intensified with increasing pH as well as with increasing ionic strength. However, when DOM was applied prior to SPD, allowing for DOM sorption onto soil, only slight reduction in SPD sorption was observed with two of the soils. For the soil representing the weakest sorbent, the DOM pretreatment significantly increased SPD sorption. Finally, compost extract application was clearly demonstrated to affect the chemical properties of both SPD and its sorbents. Therefore, it may be necessary to consider soil chemical conditions in any attempt of assessing the effects of organic amendment on the sorption of polar contaminants.
机译:研究了不同矿物组合物的三种有机贫瘠土壤中磺吡啶(SPD)的吸附行为。评价将生物溶胶衍生的钙提取物(溶解有机物质,DOM)添加对土壤SPD吸附的影响。主要目标是在DOM,pH和离子组合物引起的效果之间辨别。当DOM和SPD共同引入土壤时,三相(土壤-OM-SPD)系统中的SPD吸附相对于非DOM修正的土壤,显示出相对于非Dom修正的土壤。这种趋势随着pH的增加以及增加的离子强度而增强。然而,当在SPD之前应用DOM时,允许DOM吸附到土壤上,只有两种土壤才观察到SPD吸附的略微降低。对于代表最弱的吸附剂的土壤,Dom预处理显着增加了SPD吸附。最后,清楚地证明了堆肥提取申请,以影响SPD及其吸附剂的化学性质。因此,可能需要考虑土壤化学条件,以任何评估有机修正对极性污染物吸附的影响。

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