Experimental and Industrial Introduction of the Improved Devices to Generate NH4NO3 Granules with Nanoporous Structure

A. Artyukhov, A. Ivaniia
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Abstract

The first results are obtained, which confirm that the formation process of porous ammonium nitrate can be carried out in the drying agent's vortex flow with high intensity. It is proved that combination of humidification and thermal treatment methods of ammonium nitrate granules in the vortex weighted layer allows to get a product with developed nanoporous structure, high indexes of the absorptivity, retentivity and firmness. The nanoporous structure of porous ammonium nitrate granule is studied. It is demonstrated that in order to provide normative indexes of porous ammonium nitrate quality, various structure of the granule surface and inner layers is required. The presented results together with theoretical studies performed earlier in the sphere of flows hydrodynamics and granules porous structure formation thermal dynamics in the twisting flow of the heat transfer agent are bases to investigate technique of vortex granulators' engineering calculation.
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纳米孔结构NH4NO3颗粒制备改进装置的实验与工业介绍
初步结果证实了多孔硝酸铵的形成过程可以在干燥剂的高强度涡流中进行。实验证明,在涡流加权层中对硝酸铵颗粒进行加湿和热处理相结合,可以得到纳米孔结构发达、吸收率、保持性和坚固性指标高的产品。研究了多孔硝酸铵颗粒的纳米孔结构。结果表明,为了提供规范的多孔硝酸铵质量指标,需要颗粒表面和内层结构的多样化。本文的研究结果与前人在流体力学和颗粒多孔结构形成热动力学方面的理论研究结果相结合,为研究涡旋造粒机的工程计算技术奠定了基础。
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