Ultrasonic Power to Enhance Limestone Dissolution in the Wet Flue Gas Desulfurization Process. Modeling and Results from Stepwise Titration Experiments

被引:4
|
作者
De Blasio, Cataldo [1 ]
Carletti, Claudio [1 ]
Salonen, Jarno [2 ]
Bjoerklund-Saenkiaho, Margareta [1 ]
机构
[1] Abo Akad Univ, Dept Chem Engn, Fac Sci & Engn, Biskopsgatan 8, Turku 20500, Finland
[2] Univ Turku, Dept Phys & Astron, Lab Ind Phys, FI-20014 Turku, Finland
关键词
limestone dissolution; flue gas desulfurization; mathematical modeling; Z-potential; process design options;
D O I
10.3390/chemengineering2040053
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The goal of this work is to assess the application of ultrasonic power to the reactive dissolution of limestone particles in an acidic environment; this would represent a novel method for improving wet Flue Gas Desulfurization industrial systems. In this study a stepwise titration method is utilized; experiments were done by using different particle size distributions with and without the application of ultrasound. The use of ultrasonic power sensibly affected the reaction rate of limestone and its dissolution; a major difference could be observed when samples from the Wolica region in Poland were studied. In this case, the overall dissolution rate was found to increase by more than 70%. The reactive dissolution of limestone does not follow the same mathematical model when sonication is in effect; in this case, an extra Ultrasonic Enhancement Constant was introduced. It was demonstrated that the dissolution is proportional to an Effective Reaction Surface and, therefore, surface interactions should also be taken into consideration. For this purpose, a study is presented here on the Z-potential and electrophoretic mobility of limestone samples measured in aqueous dispersions by means of Laser Doppler Micro-Electrophoresis.
引用
收藏
页码:1 / 17
页数:17
相关论文
共 50 条
  • [21] Semi-Empirical Model for Limestone Dissolution in Adipic Acid for Wet Flue Gas Desulfurization
    Koech, Lawrence
    Rutto, Hilary
    Everson, Ray
    Neomagus, Hein
    CHEMICAL ENGINEERING & TECHNOLOGY, 2014, 37 (11) : 1919 - 1928
  • [22] The impact of the electrical potential gradient on limestone dissolution under wet flue gas desulfurization conditions
    Brogren, C
    Karlsson, HT
    CHEMICAL ENGINEERING SCIENCE, 1997, 52 (18) : 3101 - 3106
  • [23] Semi-empirical model for limestone dissolution in adipic acid for wet flue gas desulfurization
    Koech, Lawrence
    Rutto, Hilary
    Everson, Ray
    Neomagus, Hein
    Chemical Engineering and Technology, 2014, 37 (11): : 1919 - 1928
  • [24] Modeling of the wet flue gas desulfurization system to utilize low-grade limestone
    Lim, Jonghun
    Choi, Yeongryeol
    Kim, Geonyeol
    Kim, Junghwan
    KOREAN JOURNAL OF CHEMICAL ENGINEERING, 2020, 37 (12) : 2085 - 2093
  • [25] Modeling of the wet flue gas desulfurization system to utilize low-grade limestone
    Jonghun Lim
    Yeongryeol Choi
    Geonyeol Kim
    Junghwan Kim
    Korean Journal of Chemical Engineering, 2020, 37 : 2085 - 2093
  • [26] MODELLING OF FLUE GAS DESULFURIZATION PROCESS BY WET LIMESTONE METHOD AND THE KNOW-HOW
    Glomba, Michal
    Mazurek, Jerzy
    Krahl, Sabina
    RYNEK ENERGII, 2010, (05): : 103 - 109
  • [27] Calcium bisulfite oxidation rate in the wet limestone-gypsum flue gas desulfurization process
    Lancia, A
    Musmarra, D
    ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1999, 33 (11) : 1931 - 1935
  • [28] New wet flue gas desulfurization process using granular limestone and organic acid additives
    Liu, Shengyu
    Xiao, Wende
    INTERNATIONAL JOURNAL OF CHEMICAL REACTOR ENGINEERING, 2006, 4
  • [29] Catalytic oxidation of calcium bisulfite in the wet limestone-gypsum flue gas desulfurization process
    Lancia, A
    Musmarra, D
    Prisciandaro, M
    Tammaro, M
    CHEMICAL ENGINEERING SCIENCE, 1999, 54 (15-16) : 3019 - 3026
  • [30] One-dimensional numerical modeling of wet flue gas desulfurization process
    School of Energy and Power Engineering, North China Electric Power University, Beijing 102206, China
    不详
    Zhongguo Dianji Gongcheng Xuebao, 2008, 14 (15-19):