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对二水磷酸氢钙多步热脱水的物理几何动力学洞察

Physico-geometrical kinetic insight into multistep thermal dehydration of calcium hydrogen phosphate dihydrate.

作者信息

Hara Masami, Koga Nobuyoshi

机构信息

Chemistry Laboratory, Department of Science Education, Graduate School of Humanities and Social Sciences, 1-1-1 Kagamiyama, Higashi-Hiroshima 739-8524, Japan.

出版信息

Phys Chem Chem Phys. 2023 May 3;25(17):12081-12096. doi: 10.1039/d3cp01323e.

Abstract

The origin of the multistep thermal dehydration of calcium hydrogen phosphate dihydrate (dibasic calcium phosphate dihydrate (DCPD)) to form γ-calcium diphosphate (γ-calcium pyrophosphate (γ-CPP)) calcium hydrogen phosphate anhydride (dibasic calcium phosphate anhydride (DCPA)) was investigated from a specific viewpoint of physico-geometrical constraints generated during the reaction. The overall thermal dehydration was separated into five partially overlapping steps through systematic kinetic analysis. The first three steps and the residual two steps were attributed to the thermal dehydration of DCPD to form DCPA and of DCPA to form γ-CPP, respectively. The first to third steps were kinetically characterized by the surface reaction of plate-like particles controlled by nucleation and growth, the movement of the reaction interface inward to the plate by releasing water vapor through voids formed in the surface product layer, and the rapid escape of water vapor accompanied by the cleavage of plate-like particles into slices, respectively. The contributions of each component step varied with the heating conditions and atmospheric water vapor pressure. The subsequent dehydration of DCPA proceeded in two steps by the release of trapped water molecules in amorphous DCPA induced by its gradual crystallization and the dehydration of DCPA to form poorly crystalline γ-CPP, which continued to grow during the fifth mass loss step and exhibited a detectable exothermic phenomenon after the mass loss was completed. The possible causes of the variation in the multistep reaction features with reaction conditions were discussed by correlating the kinetic analysis results with the crystallographic and morphological findings.

摘要

从反应过程中产生的物理几何限制这一特定视角出发,研究了磷酸氢钙二水合物(磷酸二钙二水合物(DCPD))多步热脱水生成γ - 焦磷酸钙(γ - 焦磷酸钙(γ - CPP))和无水磷酸氢钙(无水磷酸二钙(DCPA))的过程。通过系统的动力学分析,将整个热脱水过程分为五个部分重叠的步骤。前三步和后两步分别归因于DCPD热脱水生成DCPA以及DCPA热脱水生成γ - CPP。第一步到第三步在动力学上的特征分别为:由成核和生长控制的板状颗粒的表面反应、通过表面产物层中形成的空隙释放水蒸气使反应界面向板内移动以及板状颗粒裂解成薄片并伴有水蒸气的快速逸出。各组成步骤的贡献随加热条件和大气水蒸气压力而变化。随后,DCPA的脱水分两步进行,先是由其逐渐结晶诱导释放非晶态DCPA中捕获的水分子,然后是DCPA脱水形成结晶性差的γ - CPP,γ - CPP在第五步质量损失过程中持续生长,并在质量损失完成后出现可检测到的放热现象。通过将动力学分析结果与晶体学和形态学研究结果相关联,讨论了多步反应特征随反应条件变化的可能原因。

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