High concentration agglomerate dynamics at high temperatures

被引:31
|
作者
Heine, M. C. [1 ]
Pratsinis, S. E. [1 ]
机构
[1] ETH, Dept Mech & Proc Engn, Inst Proc Engn, Particle Technol Lab, CH-8092 Zurich, Switzerland
关键词
D O I
10.1021/la062022q
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The dynamics of agglomerate aerosols are investigated at high solids concentrations that are typical in industrial scale manufacture of fine particles (precursor mole fraction larger than 10 mol %). In particular, formation and growth of fumed silica at such concentrations by chemical reaction, coagulation, and sintering is simulated at nonisothermal conditions and compared to limited experimental data and commercial product specifications. Using recent chemical kinetics for silica formation by SiCl4 hydrolysis and neglecting aerosol polydispersity, the evolution of the diameter of primary particles (specific surface area, SSA), hard- and soft-agglomerates, along with agglomerate effective volume fraction (volume occupied by agglomerate) is investigated. Classic Smoluchowski theory is fundamentally limited for description of soft-agglomerate Brownian coagulation at high solids concentrations. In fact, these high concentrations affect little the primary particle diameter (or SSA) but dominate the soft-agglomerate diameter, structure, and volume fraction, leading to gelation consistent with experimental data. This indicates that restructuring and fragmentation should affect product particle characteristics during high-temperature synthesis of nanostructured particles at high concentrations in aerosol flow reactors.
引用
收藏
页码:10238 / 10245
页数:8
相关论文
共 50 条
  • [31] DYNAMICS OF QUASILOCALIZED VIBRATIONS WITH A HIGH CONCENTRATION OF IMPURITY CENTERS
    IVANOV, MA
    SOVIET PHYSICS SOLID STATE,USSR, 1971, 12 (07): : 1508 - +
  • [32] High time for high temperatures
    Dobrowsky, Martina
    ZKG INTERNATIONAL, 2015, 68 (05): : 56 - 63
  • [33] ELECTROLYSIS IN AQUEOUS SOLUTIONS AT HIGH TEMPERATURES .1. CONCENTRATION POLARIZATION
    GORBACHEV, SV
    KONDRATEV, VP
    ZHURNAL FIZICHESKOI KHIMII, 1962, 36 (10): : 2162 - 2168
  • [34] CHANGES OF GAS CONCENTRATION IN BLOOD OF MAN EXPOSED TO HIGH AMBIENT TEMPERATURES
    AZHAEV, AN
    PANCHENK.VS
    KOSMICHESKAYA BIOLOGIYA I MEDITSINA, 1973, 7 (01): : 45 - 49
  • [35] Adaptation to high temperatures through macromolecular dynamics by neutron scattering
    Tehei, Moeava
    Zaccai, Giuseppe
    FEBS JOURNAL, 2007, 274 (16) : 4034 - 4043
  • [36] ReaxFF Molecular Dynamics Simulations of Oxidation of Toluene at High Temperatures
    Cheng, Xue-Min
    Wang, Quan-De
    Li, Juan-Qin
    Wang, Jing-Bo
    Li, Xiang-Yuan
    JOURNAL OF PHYSICAL CHEMISTRY A, 2012, 116 (40): : 9811 - 9818
  • [37] Molecular dynamics study of hydrogenated silicon clusters at high temperatures
    Galashev, Alexander Y.
    MOLECULAR PHYSICS, 2009, 107 (23-24) : 2555 - 2568
  • [38] MOLECULAR-DYNAMICS OF WATER AT HIGH-TEMPERATURES AND PRESSURES
    BRODHOLT, J
    WOOD, B
    GEOCHIMICA ET COSMOCHIMICA ACTA, 1990, 54 (09) : 2611 - 2616
  • [39] Phase transition of spiropyrans: impact of isomerization dynamics at high temperatures
    Gerkman, Mihael A.
    Yuan, Shichen
    Duan, Pu
    Taufan, Jennifer
    Schmidt-Rohr, Klaus
    Han, Grace G. D.
    CHEMICAL COMMUNICATIONS, 2019, 55 (41) : 5813 - 5816
  • [40] Oxidation Rate and Crystallinity Dynamics of Silver Nanoparticles at High Temperatures
    Chaparro, Diego
    Goudeli, Eirini
    JOURNAL OF PHYSICAL CHEMISTRY C, 2023, 127 (27): : 13389 - 13397