Duquène L, Vandenhove H, Tack F, Meers E, Baeten J, Wannijn J
SCK-CEN, Biosphere Impact Studies, Boeretang 200, B-2400 Mol, Belgium.
Sci Total Environ. 2009 Feb 15;407(5):1496-505. doi: 10.1016/j.scitotenv.2008.10.049. Epub 2008 Dec 2.
The applicability of biodegradable amendments in phytoremediation to increase the uptake of uranium (U), cadmium (Cd), chromium (Cr), copper (Cu), lead (Pb) and zinc (Zn) by Indian mustard (Brassica juncea) and ryegrass (Lolium perenne) was tested in a greenhouse experiment. Plants were cultivated during one month on two soils with naturally or industrially increased contaminant levels of U. Treatments with citric acid, NH4-citrate/citric acid, oxalic acid, S,S-ethylenediamine disuccinic acid (EDDS) or nitrilotriacetic acid (NTA) at a rate of 5 mmol kg(-1) dry soil caused increases in soil solution concentrations that were up to 18 times higher for U and up to 1570 times higher for other heavy metals, compared to the controls. Shoot concentrations increased to a much smaller extent. With EDDS, 19-, 34-, and 37-fold increases were achieved in shoots of Indian mustard for U, Pb and Cu, respectively. The increases in plant uptake of Cd, Cr and Zn were limited to a factor of four at most. Ryegrass generally extracted less U and metals than Indian mustard. Despite a marked increase of U and metal concentrations in shoots after addition of amendments, the estimated time required to obtain an acceptable reduction in soil contaminant concentrations was impractically long. Only for Cu and Zn in one of the studied soils, could the Flemish standards for clean soil theoretically be attained in less than 100 years.
在温室试验中测试了可生物降解改良剂在植物修复中对提高印度芥菜(Brassica juncea)和黑麦草(Lolium perenne)对铀(U)、镉(Cd)、铬(Cr)、铜(Cu)、铅(Pb)和锌(Zn)吸收的适用性。在两种天然或工业污染导致U含量增加的土壤上,将植物培养一个月。以5 mmol kg(-1)干土的用量施用柠檬酸、NH4 - 柠檬酸/柠檬酸、草酸、S,S - 乙二胺二琥珀酸(EDDS)或次氮基三乙酸(NTA),与对照相比,土壤溶液浓度增加,其中U增加高达18倍,其他重金属增加高达1570倍。地上部分浓度增加幅度小得多。使用EDDS时,印度芥菜地上部分的U、Pb和Cu含量分别增加了19倍、34倍和37倍。植物对Cd、Cr和Zn的吸收增加最多为4倍。黑麦草通常比印度芥菜吸收的U和金属更少。尽管添加改良剂后地上部分的U和金属浓度显著增加,但要使土壤污染物浓度达到可接受的降低水平所需的估计时间长得不切实际。仅在所研究的一种土壤中的Cu和Zn,理论上在不到100年的时间内可以达到佛兰德清洁土壤标准。