|Table of Contents|

Enrichment Ability of Heavy Metals for Haplocladium capillatum and Hypnum cupressiforme(PDF)

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2016年21
Page:
77-79
Research Field:
Publishing date:

Info

Title:
Enrichment Ability of Heavy Metals for Haplocladium capillatum and Hypnum cupressiforme
Author(s):
SUN TianguoXIONG YiGUO YancuiZHAO YanYANG Zhihong
(College of Life Science and Agriculture-Forestry,Qiqihaer University,Qiqihaer,Heilongjiang 161006)
Keywords:
Haplocladium capillatumHypnum cupressiformeheavy metalenrichment abilitypurification plants
PACS:
-
DOI:
10.11937/bfyy.201621019
Abstract:
In order to study enrichment ability for heavy metals, Haplocladium capillatum and Hypnum cupressiforme were used as test materials.The contents of four chemical elements,namely,cadmium(Cd),nickel(Ni),lead(Pb) and copper(Cu)were analyzed by means of CP-MS analysis method.0.2 mmol?L-1,0.4 mmol?L-1,0.8 mmol?L-1 of three concentration gradient were set up respectively,according to the orthogonal experimental design of nine different concentrations of mixed group,with distilled water treatment for comparison,the mosses were treated with stresses for seven days using different concentrations of single metals and complex metals.The results showed that heavy metal contents were significantly greater than the control group, Haplocladium capillatum and Hypnum cupressiforme had the very strong enrichment ability to heavy metal.It was suggested that the moss Haplocladium capillatum and Hypnum cupressiforme could be used as purification plants for the heavy metals polution.

References:

 

[1]魏海英,方炎明.苔藓植物与环境重金属污染监测研究进展[J].南京林业大学学报(自然科学版),2004,28(5):77-81.

[2]SALEMAA M,DEROME J,HELMISAARI H,et al.Element accumulation in boreal bryophyteslichens and vascular plants exposed to heavy metal and sulfur deposition in Finland[J].Science of the Environment,2004,324(1-3):141-160.

[3]SZCZEPANIAK K,BIZIUK M.Aspects of the biomonltoring studies using mosses and lichens as indlcators of metal pollution[J].Environmental Research,2003,93(3):221-230.

[4]WOLTERBEEK B.Biomonitoring of trace element air pollution:Princ iplespossibilities and perspectives[J].Environmental Pollution,2002,120:11-21.

[5]安丽,曹同,俞膺浩.不同苔藓植物对重金属富集能力的比较[J].上海师范大学学报(自然科学版),2006,35(6):64-69.

[6]李进猛,王定勇,陈益,.重庆市不同功能区苔藓植物重金属含量及吸附特性研究[J].西南师范大学学报(自然科学版),2012,37(9):68-73.

[7]MARIET C,GAUDRY A,AYRAULT S,et al.Heavy metal bioaccumulation by the bryophyte Scleropodium purum at three French sites under various influencesrural conditionstrafficand industry[J].Environmental Monitoring and Assessment,2011,174:107-118.

[8]孙玉斌,于欣宇,宋士伟,.鼠尾藓和砂藓对重金属富集能力的研究[J].黑龙江畜牧兽医,2015,485(9):10-12.

[9]娄玉霞.苔藓植物对重金属污染的响应机理和生物指示的研究[D].上海:上海师范大学,2013.

[10]黄朝表,郭水良,李海斌.浙江金华市郊苔藓植物体内重金属离子含量测定与分析[J].上海交通大学学报,2004,22(3):231-236.

[11]朱秀敏,王僧虎,李丽.几种苔藓植物对五种重金属富集能力的比较[J].北方园艺,2012(23):88-90.

Memo

Memo:
-
Last Update: 2016-12-28