预分解,过程模拟,输送床,轻烧,Fortran编程," /> 预分解,过程模拟,输送床,轻烧,Fortran编程,"/> pre-decomposition,process simulation,transport bed,calcination,Fortran programming,"/> <p class="MsoPlainText"> 菱镁矿输送床轻烧过程模拟与分析
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沈阳化工大学学报, 2024, 38(1): 7-16    doi: 10.3969/j.issn.2095-2198.2024.01.002
  化学与化学工程 本期目录 | 过刊浏览 | 高级检索 |

菱镁矿输送床轻烧过程模拟与分析

1.沈阳化工大学 特色资源化工与材料教育部重点实验室, 辽宁 沈阳 110142;2.万隆理工学院 化学工程系, 西爪哇 万隆 40132)

Process Simulation and Analysis of Magnesite Calcination in a Transport Bed

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摘要 

利用Aspen Plus对菱镁矿输送床轻烧过程进行系统模拟.通过外接菱镁矿分解动力学方程Fortran子程序建立第一级旋风预热器内同时进行气固换热(煅烧炉出口的高温烟气与预热菱镁矿原料)与菱镁矿预分解反应模型(简称气固换热预分解模型),并与先进行气固换热、后发生固体绝热预分解反应的模型(简称固体绝热预分解模型)进行对比.结果表明气固换热预分解模型计算得到的预分解率更大、系统的能量效率更高、能耗更低.基于此模型,进一步研究轻烧温度、菱镁矿含水量对轻烧过程的影响,结果表明:随着轻烧温度和菱镁矿含水量的增加,系统能量效率逐渐降低、能耗逐渐增加,特别是菱镁矿含水量对整个轻烧系统的可操作性影响显著.

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关键词:  预分解')" href="#">

预分解  过程模拟  输送床  轻烧  Fortran编程    

Abstract: 

A transport bed calcination process applied to magnesite was systematically investigated through Aspen Plus process simulator.By connecting the external Fortran subroutine of magnesite decomposition kinetics,a pre-decomposition model of magnesite simultaneously considering gas-solid heat transfer(the fed magnesite preheated by the high-temperature calciner flue gas)and magnesite pre-decomposition reaction in the first-stage cyclone-type preheater was established(i.e.,gas-solid heat transferpre-decomposition model).Compared with the model considering gas-solid heat transfer without magnesite pre-decomposition first and then occurring the adiabatic pre-decomposition of magnesite(i.e.,solid adiabatic pre-decomposition model),the calculated result of pre-decomposition conversion based on the gas-solid heat transfer pre-decomposition model was greater,and the system had higher energy efficiency and lower energy consumption.Based on this model,the influence of calcination temperature and water content of magnesite on the light calcination process was further studied.It could be seen that with the increase of calcination temperature and water content of magnesite,the energy efficiency of the system gradually decreased and energy consumption rise.Especially,the water content of magnesite had a significant impact on the operability of the whole light calcination system.This paper provides guidance and reference for its industrial design as well as operation of light calcination process of magnesite.

Key words:  pre-decomposition')" href="#">

pre-decomposition    process simulation    transport bed    calcination    Fortran programming

               出版日期:  2024-02-29      发布日期:  2024-09-23      整期出版日期:  2024-02-29
ZTFLH: 

TF111.12

 
基金资助: 

国家重点研发计划(2020YFC1909300);辽宁省教育厅项目(LJKMZ20220797

通讯作者:  安萍   
作者简介:  齐鹏翔(1999—),男,河南周口人,硕士研究生在读,主要从事菱镁矿煅烧过程模拟研究.
引用本文:    
齐鹏翔1, 安萍1, 宋晓锋1, 王超1, 韩振南1, RIZKIANA Jenny2.

菱镁矿输送床轻烧过程模拟与分析 [J]. 沈阳化工大学学报, 2024, 38(1): 7-16.
QI Pengxiang1, AN Ping1, SONG Xiaofeng1, WANG Chao1, HAN Zhennan1, RIZKIANA Jenny2.

Process Simulation and Analysis of Magnesite Calcination in a Transport Bed . Journal of Shenyang University of Chemical Technology, 2024, 38(1): 7-16.

链接本文:  
https://xuebao.syuct.edu.cn/CN/10.3969/j.issn.2095-2198.2024.01.002  或          https://xuebao.syuct.edu.cn/CN/Y2024/V38/I1/7

1]WANG L,TAI P D,JIA C Y,et al.Magnesium Contamination in Soil at a Magnesite Mining Region of Liaoning Province,China[J].Bulletin of Environmental Contamination and Toxicology,2015,95(1):90-96.

2]黄娜娜,李会杰,仇龙,等.轻烧粉酸溶法制备氢氧化镁及热分解机理研究[J].沈阳化工大学学报,2021,35(4):309-315.

3]宋闯.菱镁矿尾矿处理与再利用研究进展[J].环境保护与循环经济,2022,42(3):12-15.

[4]张艳丽,张小会,程庆先,等.我国耐火原料的现状与发展[J].耐火与石灰,2023,48(1):12-18.

5]丁怡,李军生,王风,等.中国菱镁产业发展现状及趋势[J].佛山陶瓷,2021,31(11):1-5,12.

6]王可心,刘雪景,许光文.热重和微型流化床中菱镁矿非等温分解动力学[J].当代化工,2022,51(7):1566-1571.

7]JOSE N,AHMED H,MIGUEL B,et al.Magnesia(MgO)Production and Characterization,and Its Influence on the Performance of Cementitious Materials,a Review[J].Materials,2020,13(21):4752.

8]PILARSKA A,KLAPISZEWSKI L,JESIONOWSKI T.Recent Development in the Synthesis,Modification and Application of Mg(OH)2 and MgO:a Review[J].Powder Technology,2017,319:373-407.

9]李广垠,李志坚,郭玉香,等.煅烧温度对轻烧镁粉显微结构与活性的影响[J].耐火材料,2016,50:367-369.

10]REN W,XUE B,LU C,et al.Evaluation of GHG Emissions from the Production of Magnesia Refractory Raw Materials in Dashiqiao,China[J].Journal of Cleaner Production,2016,135:214-222.

11]MO L,DENG M,TANG,M,et al.MgO Expansive Cement and Concrete in China:Past,Present and Future[J].Cement and Concrete Research,2014,57:1-12.

12]陈英春,周桂芳,路贵民,等.高纯镁砂及氧化镁陶瓷研究进展[J].化工进展,2019,38(1):505-515.

13]GAO Q,WEI G,JIANG X,et al.Characteristics of Calcined Magnesite and Its Application in Oxidized Pellet Production[J],Journal of Iron and Steel Research International,2014,21(4):408-412.

14]TSIPLAKOU E,PAPPAS A C,MITSIOPOULOU C,et al.Evaluation of Different Types of Calcined Magnesites as Feed Supplement in Small Ruminant[J].Small Ruminant Research,2017,149:188-195.

15]YANG N,NING P,LI K,et al.MgO-Based Adsorbent Achieved from Magnesite for CO2 Capture in Simulate Wet Flue Gas[J].Journal of the Taiwan Institute of Chemical Engineers,2018,86:73-80.

16]薛原,阎富生,胡贤忠,等.菱镁矿煅烧制备轻烧镁正交试验[J].材料与冶金学报〖JP〗,2021,20(1):64-67.

17]MO L W,PANESAR D K.Effects of Accelerated Carbonation on the Microstructure of Portland Cement Pastes Containing Reactive MgO[J].Cement Concrete Research,2012,42(6):769-777.

18]李红梅,李美玲.轻烧镁窑烟尘污染治理技术的筛选与应用[J].环境保护科学,1997,2:8-10.

19]巴浩静,白丽梅,赵文青,等.轻烧镁制备及深加工研究进展[J].矿产保护与利用,2017(1):84-89.

20]LI J H,ZHANG Y,SHAO S,et al.Application of Cleaner Production in a Chinese Magnesia Refractory Material Plant[J].Journal of Cleaner Production,2016,113:1015-1023.

21]李志坚.对辽宁省镁质耐火原料的思考[J].耐火材料,2011,45(5):382-385,389.

22]姜微微,郝文倩,刘雪景,等.微型流化床内菱镁矿轻烧反应特征及动力学[J].化工学报,2019,70(8):2928-2937.

23]孙聪,闫博威,蔡长庸,等.菱镁矿输送床轻烧过程反应与产物微观结构特性[J].化工学报,2020,71(12):5735-5744,5352.

24]AN P,HAN Z N,WANG K J,et al.Energy-Saving Strategy for a Transport Bed Flash Calcination Process Applied to Magnesite[J].Carbon Resources Conversion,2021,4(1):122-131.

25]Aspen Technology.Aspen Plus User Models[EB/OL].(2012-03-17)[2023-04-10].https://www.doc88.com/p-174439097614.html.

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