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Semi-batch reactive crystallisation of mono-ammonium phosphate: An experimental study

机译:磷酸一铵的半间歇反应结晶:实验研究

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摘要

NH4H2PO4, mono-ammonium phosphate (MAP) and (NH4)2HPO4, di-ammonium phosphate (DAP) have become leading phosphate fertiliser products worldwide. Ammonium phosphates are produced by reactions of ammonia and phosphoric acid resulting in the formation of the mono-basic, di-basic, or tri-basic salts. Inefficiencies in the MAP/DAP production process are due to the lack of a fundamental understanding of the crystallisation-reaction mechanisms. A semi-batch reactive crystalliser equipped with a cooling jacket, a dual feed system and a turbine type agitator has been used in this study. Effects of N/P ratio, seed crystals, feeding system, feed flow rate, initial supersaturation, feeding time and mixing intensity to the real-time supersaturation, crystal yield, crystal shape (aspect ratio) and final crystal size distribution (CSD) were studied in order to understand the kinetics. This study aims to provide new insights into the MAP/DAP reaction-crystallisation mechanisms.
机译:NH4H2PO4,磷酸一铵(MAP)和(NH4)2HPO4,磷酸二铵(DAP)已成为全球领先的磷酸盐肥料产品。磷酸铵是通过氨和磷酸反应生成的,导致形成一元,二元或三元盐。 MAP / DAP生产过程效率低下是由于对结晶反应机理缺乏基本了解。这项研究中使用了配有冷却夹套,双进料系统和涡轮式搅拌器的半间歇式反应结晶器。 N / P比,籽晶,进料系统,进料流速,初始过饱和度,进料时间和混合强度对实时过饱和度,晶体产率,晶体形状(长宽比)和最终晶体尺寸分布(CSD)的影响学习以了解动力学。这项研究旨在为MAP / DAP反应结晶机制提供新的见解。

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