Ali K (2015) Design of a spray tower for the granulation of melt. Al-Nahrain J Eng Sci 18(1):111–117
Artyukhov A (2016) Application software products for calculation trajectories of granules movement in vortex granulator. CEUR Workshop Proc 1761:363–373
Artyukhov AE, Ivaniia AV (2017) Obtaining porous ammonium nitrate in multistage and multifunctional vortex granulators. Naukovyi Visnyk Natsionalnoho Hirnychoho Universytetu 6:68–75
Artyukhov A, Artyukhova N (2018) Utilization of dust and ammonia from exhaust gases: new solutions for dryers with different types of fluidized bed. J Environ Health Sci Eng 16(2):193–204
Artyukhov AE, Artyukhova NO (2019) Technology and the main technological equipment of the process to obtain N4HNO3 with nanoporous structure. Springer Proc Phys 221:585–594
Artyukhov A, Sklabinskiy V, Ivaniia A, Moskalenko K (2016) Software for calculation of vortex type granulation devices. CEUR Workshop Proc 761:374–385
Artyukhov A, Artyukhova N, Krmela J, Krmelova V (2020) Complex designing of granulation units with application of computer and software modeling: case “Vortex granulator.” IOP Conf Ser Mater Sci Eng 776(1):012016
Artyukhov AE, Artyukhova NO, Ivaniia AV (2018) Creation of software for constructive calculation of devices with active hydrodynamics. Proceedings of the 14th International Conference on Advanced Trends in Radioelectronics, Telecommunications and Computer Engineering (TCSET 2018) 2018-April: 139–142.
Artyukhov AE, Artyukhova NO, Krmela J, Krmelova V (2021) Ammonium nitrate with nanoporous structure: production methods, phase composition and morphological features of the surface. Appl Nanosci Switzerland. https://doi.org/10.1007/s13204-021-01800-z
Biessikirski A, Kuterasiński Ł, Pyra J, Dworzak M (2016) Comparison of properties of ammonium nitrates used of fertilizers and explosive materials. Przem Chem 95:1381–1384
Biessikirski A, Kuterasiński L, Dworzak M, Pyra J, Twardosz M (2019) Comparison of structure, morphology, and topography of fertilizer-based explosives applied in the mining industry. Microchem J 144:39–44
Biessikirski A, Pytlik M, Kuterasiński Ł, Dworzak M, Twardosz M, Napruszewska BD (2020) Influence of the ammonium nitrate(v) porous prill assortments and absorption index on ammonium nitrate fuel oil blasting properties. Energies 13:3763
Buczkowski B, Zygmunt B (2008) Modification of ammonium nitrate granules physical structure for ANFO production. Przem Chem 87:707–710
Buczkowski D, Zygmunt B (2011) Detonation properties of mixtures of ammonium nitrate based fertilizers and fuels. Cent Eur J Energ Mater 8(2):99–106
Erode GM (2013) Ammonium nitrate explosives for civil applications: slurries, emulsions and ammonium nitrate fuel oils. Wiley-VCH Verlag & Co, Weinheim
Gezerman AO (2020) Mathematical modeling for prilling processes in ammonium nitrate production. Eng Rep 2:e12173
Jackson SI (2017) The dependence of ammonium-nitrate fuel-oil (ANFO) detonation on confinement. Proc Combust Inst 36(2):2791–2798
Janssen TJ (2011) Explosive materials: classification composition and properties. Nova Science Publishers Inc
Lipinska K, Lipinski M, Maranda A (2005) Demilitarized propellants as ingredients in commercial explosives. European Federation of Explosives Engineers: Brighton Conference Proceedings, Brighton. 493–498.
Maranda A, Papliński A, Gałezowski D (2003) Investigation on detonation and thermochemical parameters of aluminized ANFO. J Energ Mater 21(1):1–13
Martin G, Barbour W (2003) Industrial nitrogen compounds and explosives, chemical manufacture and analysis. Watchmaker Publishing
Miyake A, Takahara K, Ogawa T, Ogata Y, Wada Y, Arai H (2001) Influence of physical properties of ammonium nitrate on the detonation behaviour of ANFO. J Loss Prev Process Ind 14(6):533–538
Obodiak V, Artyukhova N, Artyukhov A (2020) Calculation of the residence time of dispersed phase in sectioned devices: Theoretical basics and software implementation. In: Ivanov V, Trojanowska J, Machado J, Liaposhchenko O, Zajac J, Pavlenko I, Edl M, Perakovic D (eds) Advances in Design, Simulation and Manufacturing II. DSMIE 2019. Lecture Notes in Mechanical Engineering, p 813–820
Prokopov MG, Levchenko DA, Artyukhov AE (2014) Investigation of liquid-steam stream compressor. Appl Mech Mater 630:109–116
Short M, Quirk JJ, Kiyanda CB, Jackson SI, Briggs ME, Shinas MA (2010) Simulation of detonation of ammonium nitrate fuel oil mixture confined by aluminum: edge angles for DSD. Proceedings of the 14th International Detonation Symposium, Office of Naval Research, Idaho, 769–778
Viktorov SD, Frantov AE, Lapikov IN, Andreev VV, Starshinov AV (2016) Effect of the microstructure of ammonium nitrate granules on the detonability of composite propellants based on it. Combust Explos Shock Waves 52(6):727–731
Wang LL, Wu GZ, Li D (2014) Factors affecting urea granulation tower simplification of ventilation. Appl Mech Mater 501–504:2293–2296
Yukhymenko M, Ostroha R, Artyukhov A, Bocko J (2020) Effect of temperature on formation of nanoporous structure of granule shell in technology of obtaining organo-mineral fertilizers. nanooptics and photonics, nanochemistry and nanobiotechnology, and their applications. Springer Proc Phys 247:159–169
Zygmunt B, Buczkowski D (2007) Influence of ammonium nitrate prills’ properties on detonation velocity of ANFO. Propellants Explos Pyrotech 32(5):411–414
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