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Role of organic acids in enhancing the desorption and uptake of weathered p,p'-DDE by Cucurbita pepo

机译:有机酸在增强南瓜对风化p,p'-DDE的解吸和吸收中的作用

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Experiments were conducted to assess the effect of seven organic acids [succinic, tartaric, malic, malonic, oxalic, citric, ethylene-diaminetetraacetic (EDTA)] over a concentration range of two orders of magnitude (0.001―0.10 M) on the abiotic desorption of weathered p,p'-DDE and the extraction of polyvalent inorganic ions from soil. At 0.05 M all organic acids significantly increased contaminant desorption by 19-80%. Organic acids also increased the aqueous concentration of eight inorganic constituents extracted from soil, with at least a six-fold increase in the release of Al, Fe, Mn, and P at 0.001 M. Zucchini seedlings grown for 28 d in soil containing weathered p,p'-DDE (300 ng/'g, dry weight) were periodically amended with distilled water, citric or oxalic acids (0.01 M). Plants receiving water removed 1.7% of the p,p'-DDE from the soil. Seedlings amended with citric or oxalic acids removed 2.1 and 1.9% of the contaminant, respectively, and contained up to 66% more contaminant in the shoot system than unamended vegetation. A second crop of untreated (distilled water) zucchini in the same soil removed more contaminant than the first crop (2.5%), although the addition of organic acids did not further enhance contaminant uptake. The data indicate that the addition of low molecular weight organic acids causes the partial dissolution of the soil structure through the chelation of inorganic structural ions, ' potentially enhancing bioavailability and having implications for the phytoremediation of persistent organic pollutants in soil.
机译:进行了实验,以评估两种有机酸[琥珀酸,酒石酸,苹果酸,丙二酸,草酸,柠檬酸,乙二胺四乙酸(EDTA)]在两个数量级(0.001〜0.10 M)的浓度范围内对非生物解吸的影响。的p,p'-DDE的合成及从土壤中提取多价无机离子。在0.05 M时,所有有机酸都会使污染物的解吸显着增加19-80%。有机酸还增加了从土壤中提取的8种无机成分的水含量,在0.001 M时,Al,Fe,Mn和P的释放量至少增加了6倍。西葫芦幼苗在含风化土壤的土壤中生长28 d用蒸馏水,柠檬酸或草酸(0.01 M)定期修正p'-DDE(300 ng /'g,干重)。接受水的植物从土壤中去除了1.7%的p,p'-DDE。用柠檬酸或草酸改良的幼苗分别去除了2.1%和1.9%的污染物,并且与未改良的植被相比,苗木系统中的污染物最多增加了66%。尽管添加了有机酸并没有进一步增加污染物的吸收,但在同一土壤中的第二批未处理(蒸馏水)西葫芦比第一批(2.5%)去除了更多的污染物。数据表明,添加低分子量有机酸会导致无机结构离子的螯合,部分溶解土壤结构,从而潜在地提高生物利用度,并对土壤中持久性有机污染物的植物修复产生影响。

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