首页> 外文会议>2010 4th International Conference on Bioinformatics and Biomedical Engineering >Bioconcentration of Nutrients and Heavy Metals in Eichornia crassipes in Zhejiang, China
【24h】

Bioconcentration of Nutrients and Heavy Metals in Eichornia crassipes in Zhejiang, China

机译:浙江省凤眼莲营养和重金属的生物富集

获取原文
获取外文期刊封面目录资料

摘要

The concentration of eighteen nutrients and heavy metals in E. crassipes collected from different sites in the North Zhejiang, China was concurrently studied. The concentration of the elements in whole plants was in the order of K (14896.92 μg g-1)﹥P (5775.78 μg g-1)﹥S (5596.38 μg g-1)﹥Ca (2368.92μg g-1)﹥Pb (2380.03 μg g-1)﹥Mn (852.90 μg g-1)﹥Fe (782.63 μg g-1) ﹥Al (456.26 μg g-1)﹥Zn (134.94 μg g-1)﹥Sr (84.73 μg g-1)﹥Mo (26.82 μg g-1)﹥B﹥(23.16 μg g-1)﹥Cr (10.51 μg g-1)﹥Cu (4.64 μg g-1)﹥Ni (4.49 μg g-1)﹥As (3.94 μg g-1)﹥Co (0.96 μg g-1)﹥Cd (0.23 μg g-1). The bioconcentration factor (BCF) of Pb and Al in plant roots were as high as in the order of magnitude of 105, followed by P in whole plant, Pb in shoots in the order of 104, K in whole plant, Co, Cd, and As in roots in the order of 103, and most of other detected elements in the order of 102. The present study proved E. crassipes as a good accumulator of P, K, and heavy metals, indicated that E. crassipes possessed promising potential of phytoremediation for waste water or eutrophic water. A rapid re-growth ability of E. crassipes makes it possible that frequent harvesting of the plant is necessary to remove the nutrients and toxic metal ions from the polluted environment.
机译:中国北浙江北部不同地点的大型营养素和重金属中的十八营养素和重金属的浓度。全植物中的元素的浓度为k(14896.92μgg-1)> p(5775.78μgg-1)> s(5596.38μgg-1)> ca(2368.92μgg-1)> pb (2380.03μgg-1)> Mn(852.90μgg-1)> Fe(782.63μgg-1)> Al(456.26μgg-1)> Zn(134.94μgg-1)> sr(84.73μgg- 1)> Mo(26.82μgg-1)> b>(23.16μgg-1)> Cr(10.51μgg-1)> Cu(4.64μgg-1)> Ni(4.49μgg-1)>作为(3.94μgg-1)> CO(0.96μgg-1)> Cd(0.23μgg-1)。植物根中Pb和Al的生物浓度因子(BCF)与105的数量级高,然后是全植物中的P,芽中的PB为104,K在整个植物中,CO,CD,并且如103的根,大多数其他检测元素为102.本研究证明了E.沉默沉默作为P,K和重金属的良好蓄能器,表明E.沉默潜力具有有希望的潜力废水或富营养化水的植物修复。 E. Crassipes的快速重新生长能力使得可以频繁收获植物是从污染环境中除去营养素和有毒金属离子。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号