Department of Biology, Faculty of Science, Mahidol University, Bangkok, Thailand.
Int J Phytoremediation. 2011 Oct;13(9):897-911. doi: 10.1080/15226514.2010.525556.
Greenhouse and field trial experiments were performed to evaluate the use of Chromolaena odorata with various soil amendments for phytoextraction of Pb contaminated soil Pb mine soils contain low amount of nutrients, so the additions of organic (cow manure) and inorganic (Osmocote and NH4NO3 and KCl) fertilizers with EDTA were used to enhance plant growth and Pb accumulation. Greenhouse study showed that cow manure decreased available Pb concentrations and resulted in the highest Pb concentration in roots (4660 mg kg(-1)) and shoots (389.2 mg kg(-1)). EDTA increased Pb accumulation in shoots (17-fold) and roots (11-fold) in plants grown in soil with Osmocote with Pb uptake up to 203.5 mg plant(-1). Application of all fertilizers had no significant effects on relative growth rates of C. odorata. Field trial study showed that C. odorata grown in soil with 99545 mg kg(-1) total Pb accumulated up to 3730.2 and 6698.2 mg kg(-1) in shoots and roots, respectively, with the highest phytoextraction coefficient (1.25) and translocation factor (1.18). These results indicated that C. odorata could be used for phytoextraction of Pb contaminated soil. In addition, more effective Pb accumulation could be enhanced by Osmocote fertilizer. However, the use of EDTA in the field should be concerned with their leaching problems.
进行了温室和田间试验,以评估用不同土壤改良剂处理臭牡丹来进行 Pb 污染土壤的植物修复。Pb 矿污染土壤的养分含量较低,因此添加有机(牛粪)和无机(Osmocote 以及 NH4NO3 和 KCl)肥料和 EDTA 以促进植物生长和 Pb 积累。温室研究表明,牛粪降低了有效 Pb 浓度,导致根部(4660 mg kg(-1))和地上部(389.2 mg kg(-1))的 Pb 浓度最高。EDTA 增加了在添加 Osmocote 的土壤中生长的植物地上部(17 倍)和根部(11 倍)中的 Pb 积累,植物对 Pb 的吸收量高达 203.5 mg 株(-1)。所有肥料的应用对臭牡丹的相对生长率均无显著影响。田间试验研究表明,在总 Pb 含量为 99545 mg kg(-1)的土壤中生长的臭牡丹,地上部和根部分别积累了高达 3730.2 和 6698.2 mg kg(-1)的 Pb,具有最高的植物萃取系数(1.25)和迁移系数(1.18)。这些结果表明,臭牡丹可用于 Pb 污染土壤的植物修复。此外,通过 Osmocote 肥料可增强更有效的 Pb 积累。但是,应注意 EDTA 在田间的淋溶问题。