Particle size distribution and dissolution properties of metals in cyclone fly ash

被引:22
|
作者
Rönkkömäki H. [1 ]
Pöykiö R. [2 ]
Nurmesniemi H. [3 ]
Popov K. [4 ]
Merisalu E. [5 ]
Tuomi T. [6 ]
Välimäki I. [7 ]
机构
[1] Finnish Institute of Occupational Health, FI-90220 Oulu
[2] City of Kemi, Town Planning and Building Committee, Environmental Research Division, FI-94100 Kemi
[3] Stora Enso Oyj, Veitsiluoto Mill
[4] Moscow State University of Food Technologies, Moscow 125080
[5] Department of Public Health, University of Tartu, 50411 Tartu
[6] Finnish Institute of Occupational Health, FI-00370 Helsinki
[7] Suomen Ympäristöpalvelu Oy, FI-90250 Oulu
关键词
Bark; Forest residues; Grate-fired boiler; Waste; Wood;
D O I
10.1007/BF03326045
中图分类号
学科分类号
摘要
The particles in the examined cyclone fly ash were all smaller than 0.25 mm. in diameter, and particles smaller than 0.075 mm. in diameter accounted for 88.4 % of the ash weight. This result indicates that cyclone fly ash consists of particles with a small diameter. The metals in the cyclone fly ash were enriched in small particles. The highest concentrations for zinc, copper, lead, cadmium and molybdenum in the cyclone fly ash were found in the smallest particle size fraction (< 0.075 mm.) and for Barium, chromium, nickel, Vanadium and Cobalt in the second to smallest particle size fraction (0.075-0.125 mm.). From an environmental and toxicological standpoint, the smallest particles are of the greatest concern when ash is handed at landfill disposal sites (transport and disposal especially in stormy weather conditions), and some studies have reported risks to workers from prolonged exposure to ash. The results of the comparison of various dissolution methods for metals showed that the digestion procedures with nitric acid alone (USEPA 3051) or with a mixture of nitric acid + hydrogen peroxide (USEPA 3050B) slightly underestimated the metal concentrations in the cyclone fly ash. Although the use of hydrofluoric acid is often necessary for the determination of a number of elements associated with siliceous minerals, its use can result in loss of trace elements during dissolution. © IRSEN, CEERS, IAU.
引用
收藏
页码:485 / 494
页数:9
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