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Gallic acid和SDS对黑麦草体内重金属亚细胞及形态分布的影响
引用本文:冉文静,傅大放.Gallic acid和SDS对黑麦草体内重金属亚细胞及形态分布的影响[J].环境科学学报,2010,30(11):2264-2269.
作者姓名:冉文静  傅大放
作者单位:1. 东南大学土木工程学院市政工程系,南京,210096
2. 东南大学土木工程学院市政工程系,南京210096;江苏省水处理与生态修复工程技术研究中心,南京,210013
基金项目:江苏省环保科技基金重大项目(No.2005011)
摘    要:通过盆栽试验,研究了投加螯合剂没食子酸gallic acid(5mmol·kg-1)与表面活性剂十二烷基磺酸钠SDS(1mmol·kg-1)对黑麦草(Lolium perenneL.)体内重金属亚细胞及形态分布的影响.结果表明,单独投加gallicacid增强了黑麦草对Cd、Pb的区室化作用及对Zn的细胞壁沉积作用;复合投加gallic acid和SDS增强了黑麦草对Cd的区室化作用和细胞壁沉积作用,以及对Zn的细胞壁沉积作用.单独投加gallic acid使黑麦草体内Cd、Zn总量分别增加了33.5%和6.0%,其中,惰性态Cd、Zn所占比例分别增加了6.2%、6.3%;复合投加gallic acid和SDS使黑麦草体内Cd总量增加了35.6%,Zn总量减少了1.1%,其中,惰性态Cd、Zn所占比例分别增加了7.2%、8.6%,增强了植物对Cd、Zn的螯合作用.各处理对Pb的亚细胞分布及形态无明显影响.

关 键 词:重金属  植物提取  亚细胞分布  形态分布
收稿时间:2/2/2010 10:56:26 AM
修稿时间:4/24/2010 4:59:51 PM

Influence of gallic acid and SDS on the subcellular and chemical form distribution of heavy metals in Ryegrass (Lolium perenne L.)
RAN Wenjing and FU Dafang.Influence of gallic acid and SDS on the subcellular and chemical form distribution of heavy metals in Ryegrass (Lolium perenne L.)[J].Acta Scientiae Circumstantiae,2010,30(11):2264-2269.
Authors:RAN Wenjing and FU Dafang
Institution:Department of Municipal Engineering, School of Civil Engineering, Southeast University, Nanjing 210096 and 1. Department of Municipal Engineering, School of Civil Engineering, Southeast University, Nanjing 210096; 2. Jiangsu Province Engineering Research Center for Water Treatment and Ecological Restoration, Nanjing 210013
Abstract:The commonly used chelating agent gallic acid (3,4,5-trihydroxybenzoic acid, 5 mmol·kg-1), the surfactant SDS (sodium dodecyl sulfate, 1 mmol·kg-1) and the accumulator Lolium perenne L. were selected for use in pot experiments to investigate the effects of gallic acid and SDS on the subcellular distribution and chemical form of heavy metals in Lolium perenne L. The results showed that dosing with gallic acid enhanced the role of Lolium perenne L. in compartmentalizing cadmium and lead, and depositing zinc. Dosing with both gallic acid and SDS enhanced the compartmentalizing and depositing of cadmium, and depositing of zinc. Adding gallic acid alone increased the uptake of total cadmium by 33.5% and zinc by 6.0%, while the non-labile cadmium and zinc were increased by 6.2% and 6.3%, respectively. By dosing with gallic acid and SDS, the total cadmium increased by 35.6% but zinc dropped by 1.1%; the non-labile cadmium and zinc were increased by 7.2% and 8.6%, respectively, and the chelation of cadmium and zinc was enhanced. The subcellular distribution and chemical form of lead did not change under either set of conditions.
Keywords:heavy metals  phytoextraction  subcellular distribution  chemical form distribution
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