详细信息

结晶硫酸铝脱水过程中晶型与形貌的转变    

Transformation of crystalline shape and morphology in dehydration process of hydrate aluminum sulfate

文献类型:期刊文献

中文题名:结晶硫酸铝脱水过程中晶型与形貌的转变

英文题名:Transformation of crystalline shape and morphology in dehydration process of hydrate aluminum sulfate

作者:柴林涛[1];乔秀臣[2];秦东[3];潘晓艺[3];顾钦卓[3]

机构:[1]华东理工大学材料科学与工程学院,上海200237;[2]华东理工大学资源与环境工程学院;[3]华东理工大学化工学院

年份:2016

卷号:48

期号:11

起止页码:17

中文期刊名:无机盐工业

外文期刊名:Inorganic Chemicals Industry

收录:CSTPCD;;北大核心:【北大核心2014】;

基金:国家863重大项目(2011AA06A102)

语种:中文

中文关键词:硫酸铝;脱水;形貌模拟;氧化铝

外文关键词:aluminum sulfate ; dehydration ; morphology simulation ; alumina

摘要:通过TG、XRD、SEM和MS分子模拟的方法,研究了结晶硫酸铝脱水过程中晶型与形貌的变化特点,为结晶硫酸铝制备冶金氧化铝提供了理论基础。依据晶体结构变化特点,将结晶硫酸铝脱水分为3个阶段第一阶段(30~80℃)脱水2.7份,属于三斜晶系;第二阶段(80~22℃)脱水12.65份,属于单斜晶系;第三阶段(322~383℃)脱水1.15份,属于六方晶系。MS模拟结果和SEM形貌观察表明,结晶硫酸铝单晶在脱水过程中,其形貌经历了从片状到粒状再到片状的过程,其中无水硫酸铝的片状暴露面与十七水硫酸铝的片状暴露面呈垂直关系。在结晶硫酸铝到无水硫酸铝的制备过程中,伴随明显体积收缩和颗粒碎裂。采用多晶结晶硫酸铝脱水,具有制备砂状氧化铝的潜力。
The variation features of crystalline shape and morphology of hydrate aluminum sulfate in the dehydration process by TG, XRD, SEM, and molecular simulation were investigated, and the theoretical data for alumina preparation from hydrate aluminum sulfate was offered.The dehydration was divided into three steps according to the transformation of crystal structure. In the 1st step (30-80 ℃) ,2.7 moles of water was dehydrated,and the structure belonged to triclinic system. In the 2nd step (80-322 ℃ ), 12.65 moles of water was dehydrated,the structure belonged to monoclinic system.The 3rd stage occurred at 322-383 ℃ with 1.15 mole water loss,and the structure belonged to hexagonal system.Results of SEM and MS simulation showed that in the dehydration process, the crystal morphology transformed from flake-like to granular-like, and finally to flake-like again.The exposed surfaces of anhydrous aluminum sulfate were vertical to that of 17-hydrate aluminum sulfate.In the preparation of anhydrate aluminum sulfate from hydrate aluminum sulfate,obvious volume shrinkage occurred with breaking of granules.The dehydration of multi-crystalline hydrate aluminum sulfate is a potential way to prepare sand-like alumina.

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