江汉大学学报(自然科学版) ›› 2019, Vol. 47 ›› Issue (1): 12-17.doi: 10.16389/j.cnki.cn42-1737/n.2019.01.002

• 烟层与废气污染治理研究 • 上一篇    下一篇

纳米级碳酸钙煅烧分解特性研究

夏伟1,黄芳*1,王梅2,辛善志1,米铁1   

  1. 1. 江汉大学 工业烟尘污染控制湖北省重点实验室,化学与环境工程学院,湖北 武汉 430056;2. 武汉轻工大学 化学与环境工程学院,湖北 武汉 430023
  • 出版日期:2019-02-28 发布日期:2019-02-25
  • 通讯作者: 黄芳
  • 作者简介:夏伟(1994—),男,研究方向:燃煤污染物排放特性。
  • 基金资助:
    国家自然科学基金青年科学基金项目(51706085);湖北省教育厅科研计划指导性项目(B2018253)

Characteristics of Calcination Decomposition of Nanoscale Calcium Carbonate

XIA Wei1,HUANG Fang*1,WANG Mei2,XIN Shanzhi1,MI Tie1   

  1. 1.Hubei Key Laboratory of Industrial Fume and Dust Pollution Control,School of Chemical and Enviromental Engineering,Jianghan University,Wuhan 430056,Hubei,China;2. School of chemistry and Environmental Engineering,Wuhan Polytechnic University,Wuhan 430023,Hubei,China
  • Online:2019-02-28 Published:2019-02-25
  • Contact: HUANG Fang

摘要: 利用热重分析仪研究了纯氮气氛下,升温速率、环境气氛等因素对纳米级碳酸钙的热分解控制途径,并且与两种常规碳酸钙进行了比较,同时对其煅烧分解动力学进行了分析。研究发现,纳米级碳酸钙煅烧分解比常规碳酸钙更加活跃,同等反应条件下分解温度更低,且随着升温速率的增加反应向高温区移动。CO2分压极大影响纳米级碳酸钙的煅烧分解,致其分解温度极大推迟。纳米级碳酸钙煅烧分解受n = 1 的成核与生长机制控制,活化能总体比其他两种常规碳酸钙要低。

关键词: 纳米级碳酸钙, 煅烧分解, 动力学机制, 升温速率, 高浓度CO2

Abstract: Thermogravimetric analyzer was used to study the factors influence on calcining decomposition of nanoscale calcium carbonate under pure nitrogen atmosphere,the factors included heating rate, environmental atmosphere,etc. The results were compared with two routine calcium carbonates,meanwhile,the calcining decomposition kinetics of nanoscale calcium carbonate were also analyzed. It was found that the decomposition of nanoscale calcium carbonate was more active than that of routine calcium carbonates,and the decomposition temperature was lower under the same reaction condition. The decomposition reaction moved to the high temperature area with the increase of the heating rate. The partial pressure of CO2 greatly affected the decomposition of nanoscale calcium carbonate,which resulted in a great delay in its decomposition temperature. The decomposition of nanoscale calcium carbonate is controlled by the mechanism of nucleation and growth(n=1). The activation energy of nanoscale calcium carbonateis is generally lower than that of the other two routine calcium carbonates.

Key words: nanoscale calcium carbonate, calcination decomposition, dynamic mechanism, heating rate, high concentration CO2

中图分类号: