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引用次数: 4

摘要

在温室条件下,研究了用茎枝繁殖的多氯联苯(Chromolaena odorata)在含有不同浓度的多氯联苯同系物Aroclor 1254的土壤中生长的能力,以及对土壤的修复作用。在1L的花盆中,将臭毛草移栽到含有100ppm、200ppm和500ppm芳香剂的土壤中。试验每天按70%的田间水分浇水。测定了采收时单株全展叶、茎长、叶片叶绿素含量和根长等参数。多氯联苯对臭臭草的生长没有植物毒性,但500ppm处理的植株仅在第6周表现出生长减弱。100、200和500 ppm处理的株高增长率分别为45.9%、39.4%和40.0%。叶片数、根长和叶片叶绿素浓度均明显减少。对照样品的株高增加48.3%,但与处理样品相比增幅不显著,说明臭臭草能在这样的浓度下存活,可用于修复污染土壤。平均每公斤土壤对多氯联苯的总吸收量为6.40 ~ 64.60 ppm,每公斤土壤对多氯联苯的吸收量为0.03% ~ 17.03%。多氯联苯主要存在于植物的根组织中,其生物积累因子在0.006 ~ 0.38之间。植物吸收的总多氯联苯随着化合物浓度的增加而增加。在保证了高BAF的条件下,臭草可作为一种有前途的植物从PCB污染的土壤中提取PCB。
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Phytotreatment of Polychlorinated Biphenyls Contaminated Soil by Chromolaena odorata L. King and Robinson
The ability of Chromolaena odorata propagated by stem cuttings and grown for six weeks in the greenhouse to thrive in soil containing different concentrations of PCB congeners found in Aroclor 1254, and to possibly remediate such soil was studied under greenhouse conditions. Chromolaena odorata plants were transplanted into soil containing 100, 200, and 500 ppm of Aroclor in 1L pots. The experiments were watered daily at 70 % moisture field capacity. Parameters such as fully expanded leaves per plant, shoot length, leaf chlorophyll content as well as root length at harvest were measured. PCB was not phytotoxic to C. odorata growth but plants in the 500 ppm treatment only showed diminished growth at the sixth week. Percentage increases in height of plant were 45.9, 39.4 and 40.0 for 100, 200 and 500 ppm treatments respectively. Such decreases were observed in the leaf numbers, root length and leaf chlorophyll concentration. The control sample showed 48.3 % increase in plant height which was not significant from the treated samples, an indication that C. odorata could survive such PCB concentration and could be used to remediate contaminated soil. Mean total PCB absorbed by C. odorata plant was between 6.40 and 64.60 ppm per kilogram of soil, leading to percentage PCB absorption of 0.03 and 17.03 % per kilogram of contaminated soil. PCBs were found mostly in the root tissues of the plants, and the Bioaccumulation factor were between 0.006-0.38. Total PCB absorbed by the plant increases as the concentration of the compound is increased. With these high BAF ensured, C. odorata could serve as a promising candidate plant in phytoextraction of PCB from a PCB-contaminated soil.
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