In this paper,the contents of nine elements including Cu, Fe, Mn, Zn, Al, Cd, Pb, Ti and V were determined by ICP-AES technique, which elements originated from Nostoc commune Vauch from different places. Detection limits ranged 0.0018 ug•ml-1 and 0.068 ug•ml-1, the relative standard deviations for all these elements were lower than 2%, and recovery rates ranged 95.8% and 105.6%. The results showed that there were rich elements in N. commune Vauch from different places; contens of Fe, Al and V were highest; contents of Mn, Zn and Ti were moderately high,and contents of Cu, Cd and Pb were lowest. Futhermore, Cu, Fe, Mn, Zn and V were essential to people’s health,and Al, Cd, Pb and Ti had potentially physiologically toxic.Finally,Concentrations of elements within N. commune Vauch from different places were different,which may have some relations with the soil and environment where N. Commune grew.As a result, the determining method which elements of N. Commune are determined by ICP-AES is rapid,accurate and convenient, and wild N. Commune may contain toxic elements because of pollutional soil and environment,so N. Commun cultivated artificially can effectively reduce harmful elements.
In this paper, the contents of these elements including Cu, Fe, Mn, Zn, Al, Cd, Pb, Ti and As were determined by ICP-AES technique, which elements originated from E. rugulosa from different places. Detection limits ranged 0.0029 ug/ml-1 and 0.079 ug/ml-1, the relative standard deviations for all these elements were lower than 2%, and recovery rates ranged 93% and 105.8%. The results showed that there were rich elements in E. rugulosa from different places; contents of Fe and Al were highest; contents of Mn, Zn and Ti were moderately high; and contents of Cu, As, Cd and Pb were lowest. Finally, concentrations of elements within E. rugulosa from different places were different, which may have some relations with the environment where it grew. As a result, the determining method which elements of E. Rugulosa are determined by ICP-AES is rapid, accurate and convenient.
In this paper, the contents of these elements including Cu, Fe, Mn, Zn, Al, Cd, Pb, Ti and As were determined by ICP-AES technique, which elements originated from maca from different places. Detection limits ranged 0.0022 ug/ml-1 and 0.077ug/ml-1, the relative standard deviations for all these elements were lower than 2%, and recovery rates ranged 95.56% and 106.2%. The results showed that there were rich metal elements in maca from different places; contents of Fe and Al were highest; contents of Mn, Zn, Cu and Ti were moderately high, and contents of As, Cd and Pb were lowest. Futhermore, Cu, Fe, Mn, Zn were essential to people’s health, and Al, Cd, As, Pb and Ti had potentially physiologically toxic. Finally, concentrations of elements within macafrom different places were different, which may have some relations with the environment where maca grew. As a result, the determining method which elements of maca. are determined by ICP-AES is rapid, accurate and convenient, and wild macamay contain toxic elements because of pollutional soil and environment, so macacultivated artificially can effectively reduce harmful elements.
Relative percentage content of Fe in tailings decreased from 15.92% to 10.71% after treated by using sulfuric acid mixed with oxalic acid at 350K for 60 min. And the relative content of Si decreased from 16.3% to 11.9% after treated by molten sodium hydroxide at 1073K for 30 min. Titanium content increased from 6.315% (original tailings) to 8.512% after removed Fe, and continued to go up to 10.44% after removed Si. The contents of Ca, P and Mn were slightly changed in entire enrichment process by XRF analysis. The phase change of the entire process was studied by XRD, and results indicated that tailings had very complex phases, and after removed Si the phase of tailings partly changed into FeTiO3.
In this research, these elements such as Cu, Fe, Al, Cd, Pb,Mn, Zn, Ti and As were measured by ICP-AES equipment, the elements derived from Dipsacus asper Wall. from different places such as Gesala county, Pingdi county, Puwei county,Ala county etc. Detection limits ranged 0.0020 ug/ml-1 and 0.079ug/ml-1, the relative standard deviations for all these elements were lower than 2%, and recovery rates ranged 94.5% and 107.2%. The results showed that there were many metal elements in Dipsacus asper Wall. from different location; contents of Fe and Al were highest in Panlian county’s sample specially; contents of Mn, Cu, Zn and Ti were moderately high inYumen county specially; and contents of As, Cd and Pb were lowest in Yongxing county. From the result we tested,It was differernt the contents of metallic element of all sample origined from differnt place.It’s relation to environment. so, environment supervise was important goal to achieve.
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