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Moss (Barbula sp.) used as biomonitor of atmospheric heavy metal deposition: Estimation of uptake efficiencies

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dc.contributor.author Jayalath, J.I.K.G.
dc.contributor.author Deeyamulla, M.P.
dc.contributor.author Senanayake, S.P.
dc.date.accessioned 2015-07-27T09:56:06Z
dc.date.available 2015-07-27T09:56:06Z
dc.date.issued 2008
dc.identifier.citation Jayalath, J.I.K.G., Deeyamulla, M.P. and Senanayake, S.P., 2008. Moss (Barbula sp.) used as biomonitor of atmospheric heavy metal deposition: Estimation of uptake efficiencies. Proceedings of the 64th Annual Sessions of Sri Lanka Association for the Advancement of Science, pp 279. en_US
dc.identifier.uri http://repository.kln.ac.lk/handle/123456789/8989
dc.description.abstract Concentrations of Pb, Ni, Cu, Cr and Cd in two Barbula species in permeable bags (moss bag method) were compared with bulk deposition measurements of these elements at three monitoring stations; Dalugama, Biyagama and Sedawatte which can be identified as highly polluted areas in Sri Lanka. Amount of heavy metals in moss and bulk collector were determined by Atomic Absorption Spectrophotometry (AAS) during six months of period from October 2007 to March 2008. Heavy metal concentrations measured in three monitoring stations during six months period is given in μg/g dry weight of moss sample. Concentration of heavy metals in bulk collector is expressed in μg/cm2 area of the funnel. These elements showed generally significant correlations between moss and bulk deposition, and uptake efficiencies (Ex) relative to that of Pb were estimated using the formula E x (%) = K x × 100 where Kx is the slope of the K Pb regression line of element x, and KPb is the slope of the regression line of Pb in mosses vs atmospheric deposition. The uptake efficiency of heavy metals were also established for each site using another formula Esx (%) = C D×A where Esx (%) is the uptake efficiency of an element x at monitoring station s, C is the moss concentration, D is the bulk deposition and A is a “ratio constant” estimated for each monitoring station. The uptake efficiencies of heavy metals to be: Ni 50-65 %; Cu 55-70%; Cr 45-60 %; Cd 60-70% for Barbula sp.1 and Ni 65- 70%; Cu 80-90 %; Cr 30-50%; Cd 45-60% for Barbula sp.2. Therefore Ni and Cu have higher uptake efficiency towards Barbula sp.2 whereas Cr and Cd have higher uptake efficiency towards Barbula sp.1. en_US
dc.language.iso en en_US
dc.publisher Sri Lanka Association for the Advancement of Science en_US
dc.title Moss (Barbula sp.) used as biomonitor of atmospheric heavy metal deposition: Estimation of uptake efficiencies en_US
dc.type Article en_US


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