IMPACT OF KRYPTON-85 BETA RADIATION ON AEROSOL PARTICLE FORMATION AND TRANSFORMATION

被引:2
作者
Ulevicius, V. [1 ]
Butkus, D. [2 ]
Plauskaite, K. [1 ]
Girgzdys, A. [2 ]
Bycenkiene, S. [1 ]
Spirkauskaite, N. [1 ]
机构
[1] Inst Phys, LT-02300 Vilnius, Lithuania
[2] Vilnius Gediminas Tech Univ, LT-10223 Vilnius, Lithuania
来源
LITHUANIAN JOURNAL OF PHYSICS | 2009年 / 49卷 / 04期
关键词
aerosol particles; experimental chamber; air ionization; nucleation characteristics; Kr-85; SO2; SIZE DISTRIBUTION MEASUREMENTS; FORMATION EVENTS; GROWTH-RATES; NUCLEATION; CONVERSION; RADIOLYSIS;
D O I
10.3952/lithjphys.49411
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
In this study the effect of the air ionization by Kr-85 beta radiation on the new particle formation and evolution of aerosol particle size distribution in the experimental chamber was investigated. During the experiments the interaction between air ionization and gas-to-particle conversion processes was distinctly observed. Results showed that the amplitude of the ionic current was dependent both on the chemical impurity concentration and the ionization source activity. Calculated values of parameters (growth and formation rates) of the particle nucleation process were larger when in the experimental chamber concentrations Of SO2 and Kr-85 were higher. The growth rate values (42.1 and 45.3 nm/h) were by one order of magnitude higher than the environmental ones (1.2-9.9 nm/h at the Preila station, Lithuania). Experimental data showed that after injection of high SO2 and Kr-85 concentrations in the chamber during the 20 min interval nanometre-size particles created by nucleation were produced in large amounts. Thus, a larger amount Of SO2 significantly influenced the formation of new particles. During the first 5 min the concentration of 10 nm particles increased by 3 orders of magnitude with the formation rate of 7.47 cm(-3) s(-1). The formation rate of 0.06 cm(-3) s(-1) in the experiment with the average ambient SO2 concentration (2-3 mu g/m(3)) was analogous to the environmental one (0.14 cm(-3) s(-1)). The coagulation sink (CoagS(1,2,3)) was higher in the experiment with the ambient SO2 concentration and resulted in the lower concentration of particles. The smaller values of the coagulation sink at the higher concentration Of SO2 gas have shown that these nano-particles in the air could persist for a longer time, probably in a stable size due to the ion charge.
引用
收藏
页码:471 / 478
页数:8
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