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Comparative experimental study on reactive crystallization of Ni(OH)2 in an airlift-loop reactor and a stirred reactor 被引量:4

Comparative experimental study on reactive crystallization of Ni(OH)_2 in an airlift-loop reactor and a stirred reactor
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摘要 The objective of this work is to study the reactive crystallization in an airlift-loop reactor(ALR)using the precipitation of Ni(OH)_2 as a model reaction.The growth of Ni(OH)_2 particles in an ALR and a stirred tank was quantified by scanning electronic microscope(SEM),X-ray diffraction(XRD),laser particle analyzer,tap densitometer and optical microscope,and the growth process of Ni(OH)_2 particles is analyzed.It is found that the Ni(OH)_2 particles prepared in an ALR have a better sphericity than those in a stirred tank and the growth of Ni(OH)_2 particle tap density mainly depends on the size of crystallites:the bigger the size of crystallites,the bigger the tap density is.Based on these,the growth process of Ni(OH)_2 particles in ALR is elaborated.Crystallites precipitated from solution aggregate to form large particles with much void.These constituting crystallites continue to grow up,that takes up the void inside particles and makes the tap density increase. The objective of this work is to study the reactive crystallization in an airlift-loop reactor (ALR) using the precipitation of Ni(OH)2 as a model reaction. The growth of Ni(OH)2 particles in an ALR and a stirred tank was quantified by scanning electronic microscope (SEM), X-ray diffraction (XRD), laser particle analyzer, tap densitometer and optical microscope, and the growth process of Ni(OH)2 particles is analyzed. It is found that the Ni(OH)2 particles prepared in an ALR have a better sphericity than those in a stirred tank and the growth of Ni(OH)2 particle tap density mainly depends on the size of crystallites: the bigger the size of crystallites, the bigger the tap density is. Based on these, the growth process of Ni(OH)2 particles in ALR is elaborated. Crystallites precipitated from solution aggregate to form large particles with much void. These constituting crystallites continue to grow up, that takes up the void inside particles and makes the tap densitv increase.
出处 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2018年第1期196-206,共11页 中国化学工程学报(英文版)
基金 Supported by the National Key Research and Development Program(2016YFB0301701) the National Natural Science Foundation of China(21406236,91434126) the Major National Scientific Instrument Development Project(21427814) Jiangsu National Synergetic Innovation Center for Advanced Materials
关键词 反应堆 结晶化 Ni 搅动 学习 空运 扫描电子显微镜 试验性 Reactive crystallization Airlift-loop reactor Nickel hydroxide Aggregation
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