Taguchi Optimization of Solvent-Antisolvent Crystallization to Prepare Ammonium Perchlorate Particles

被引:5
|
作者
Norouzi, Mahdi [1 ]
Tahernejad, Malihe [1 ]
Ghorban Hosseini, Seyed [1 ]
Tavangar, Saeed [1 ]
机构
[1] Malek Ashtar Univ Technol, Dept Chem & Chem Engn, Tehran 158751774, Iran
关键词
Ammonium perchlorate; Particle size; Solvent-antisolvent crystallization; Sphericity; Taguchi; SIZE; POLYMORPHS; CRYSTALS;
D O I
10.1002/ceat.202000180
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The sphericity and size of ammonium perchlorate (AP) particles significantly influence the properties of composite propellants. As the AP particles become more spherical, the accumulation coefficient increases, the viscosity during casting decreases, and the particle loading and burning rate increase. Hence, the production of micronized AP particles with an average size between 1 and 20 mu m is important to increase the loading percentage of AP in the composite propellant. Here, the Taguchi experimental design was used to optimize the solvent-antisolvent crystallization (SAC) process for the preparation of micronized AP particles with higher sphericity. SAC parameters such as the type of antisolvent, the solvent-to-antisolvent ratio, the antisolvent temperature, the stirring speed, and the retention time were investigated at four levels. The type of antisolvent and the solvent-to-antisolvent ratio were found to mainly contribute to improving the sphericity and size of the AP particles, respectively.
引用
收藏
页码:2215 / 2223
页数:9
相关论文
共 26 条
  • [1] Antisolvent crystallization kinetics of different substances in solvent-antisolvent systems
    Sangwal, Keshra
    Polak, Wieslaw Z.
    [J]. JOURNAL OF CRYSTAL GROWTH, 2024, 628
  • [2] Solvent-Antisolvent Competitive Interactions Mediate Imidacloprid Polymorphs in Antisolvent Crystallization
    Xue, Su
    Xu, Jipeng
    Han, You
    Zhang, Jinli
    Li, Wei
    [J]. CRYSTAL GROWTH & DESIGN, 2021, 21 (08) : 4318 - 4328
  • [3] Preparation of superfine ammonium perchlorate particles using some advanced liquid antisolvent crystallization (LASC) methods
    Hosseini, Seyed Ghorban
    Zinab, Javad Mohebbi
    [J]. PARTICULATE SCIENCE AND TECHNOLOGY, 2019, 37 (03) : 371 - 380
  • [4] Sphericity and size optimization of ammonium perchlorate (AP) particles in cooling crystallization process (CCP) based on the Taguchi method: separately and simultaneously
    Norouzi, Mahdi
    Hosseini, Seyed Ghorban
    Salimi, Moslem
    Tahernejad, Malihe
    [J]. PARTICULATE SCIENCE AND TECHNOLOGY, 2022, 40 (03) : 296 - 306
  • [5] Evaluation of Ultrasonic Treatment for the Size Reduction of HNS and HMX in Comparison to Solvent-Antisolvent Crystallization
    Kaur, Jatinder
    Arya, Vandana P.
    Kaur, Gurvinder
    Raychaudhuri, Tusharkanti
    Lata, Prem
    [J]. PROPELLANTS EXPLOSIVES PYROTECHNICS, 2012, 37 (06) : 662 - 669
  • [6] Preparation of Submicron RDX Particles by High-gravity Assisted Solvent-Antisolvent Recrystallization Method
    Cao, Shao-Bo
    Zhou, Lin-Yu
    Zhang, Liang-Liang
    Chen, Jian-Feng
    [J]. Huozhayao Xuebao/Chinese Journal of Explosives and Propellants, 2022, 45 (01): : 46 - 52
  • [7] Preparation and growth mechanism of micro spherical ammonium dinitramide crystal based on ultrasound-assisted solvent-antisolvent method
    Li, Jingjing
    Yang, Rongjie
    Zeng, Tao
    Hu, Jinghui
    Tang, Weiqiang
    Liu, Zhenhui
    Gong, Li
    [J]. ULTRASONICS SONOCHEMISTRY, 2021, 78
  • [8] Micro-seeding and soft template effects on the control of polymorph and morphology of HMX micro particles in solvent-antisolvent process
    Sajjad Damiri
    Shahriar Namvar
    Hadi Panahi
    [J]. Defence Technology, 2017, (06) : 392 - 396
  • [9] Micro-seeding and soft template effects on the control of polymorph and morphology of HMX micro particles in solvent-antisolvent process
    Damiri, Sajjad
    Namvar, Shahriar
    Panahi, Hadi
    [J]. DEFENCE TECHNOLOGY, 2017, 13 (06): : 392 - 396
  • [10] Micro-seeding and soft template effects on the control of polymorph and morphology of HMX micro particles in solvent-antisolvent process
    Sajjad Damiri
    Shahriar Namvar
    Hadi Panahi
    [J]. Defence Technology, 2017, 13 (06) : 392 - 396