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首页> 外文期刊>Journal of Soil Contamination >Impact of dissolved organic matter on the desorption and mineralization rates of naphthalene
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Impact of dissolved organic matter on the desorption and mineralization rates of naphthalene

机译:溶解有机物对萘解吸矿化速率的影响

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The persistence of organic contaminants in plant-soil systems will be largely determined by the basic processes controlling bioavailability: desorption and biodegradation. Both processes can be affected by the presence of and variations in dissolvedorganic matter (DOM). To evaluate potential effects of DOM in surface soil remediation systems, the kinetics of naphthalene desorption from soil and mineralization in soil solution in the presence of DOM were studied in completely mixed batch reactors (CMBRs). Three different DOM solutions were studied. These were obtained from water extraction of two different soils (muck-highly organic and lucerne field-agricultural) and a third prepared by reconstituting a fulvic acid reference standard purchased commercially. Neither the desorption rate nor equilibrium partitioning of naphthalene was affected by the presence of varying DOM solutions. The effect on mineralization was evaluated based on an evaluation of a first-order rate constant produced by nonlinear regression of data fitted to a 14CO2 production model. For the muck DOM solution, lucerne DOM solution, and fulvic acid DOM solution, first-order rate constants were 0.0474, 0.0657, 0.0422 min-1, respectively. These differences were not significant at a 90% confidence level. Although not apparent in this data, the impact of DOM on the mechanisms of desorption and biodegradation in a plant-soil environment may be important for other contaminant/organism/soil combinations.
机译:植物-土壤系统中有机污染物的持久性在很大程度上取决于控制生物利用度的基本过程:解吸和生物降解。溶解有机物(DOM)的存在和变化都会影响这两个过程。为了评估DOM在地表土壤修复系统中的潜在影响,在完全混合间歇式反应器(CMBR)中研究了DOM在存在DOM的情况下萘从土壤中解吸和矿化的动力学。研究了三种不同的DOM解决方案。这些是从两种不同土壤(渣土高度有机和卢塞恩田间农业)的水提取物中获得的,第三种是通过重构商业购买的黄腐酸参考标准品制备的。各种DOM溶液的存在都不会影响萘的解吸速率和平衡分配。基于对通过拟合14CO2生产模型的数据进行非线性回归而产生的一级速率常数的评估,评估了对矿化的影响。对于渣土DOM解决方案,卢塞恩DOM解决方案和黄腐酸DOM解决方案,其一级速率常数分别为0.0474、0.0657和0.0422 min-1。在90%的置信水平下,这些差异并不显着。尽管在此数据中不明显,但是DOM对植物-土壤环境中解吸和生物降解机理的影响对于其他污染物/生物/土壤组合可能很重要。

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