循环流化床烟气脱硫,CFB-FGD
1)CFB-FGD循环流化床烟气脱硫
1.Analysis of scaling on absorber wall of CFB-FGD system and its mechanism;循环流化床烟气脱硫吸收塔内结垢现象及机理分析
2.Neural Network-Based Intelligent Integrated Modeling for the CFB-FGD Processes;基于神经网络的循环流化床烟气脱硫过程的智能集成建模研究
英文短句/例句

1.Study on the Humidified Sorbent FGD in an Internally Circulating Fluidized Bed;增湿灰内循环流化床烟气脱硫技术研究
2.A model of flue gas desulfurization for circulating fluidized bed using Aspen Plus基于Aspen Plus软件的循环流化床烟气脱硫模型
3.Experimental Research on Gas-Solid Two-phase Flow Characteristic for Flue Gas Desulfurization in Circulating Fluidized Bed循环流化床烟气脱硫气固两相流动特性的试验研究
4.A Study on SO_2 and NO Removal with Activated Carbon in Circulating Fluidized Bed;活性炭用于循环流化床烟气脱硫脱硝的试验研究
5.BASIS OF MODERATE TEMPERATURE FLUE GAS DESULPHURIZATION PROCESSES IN CFB-DRAG FORCE MODEL AND NUMERICAL RESEARCH OF TWO-PHASE FLOWS中温循环流化床烟气脱硫基础——曳力模型与流动的数值研究
6.Analysis of scaling on absorber wall of CFB-FGD system and its mechanism循环流化床烟气脱硫吸收塔内结垢现象及机理分析
7.Experimental Investigation and Numerical Simulation on Cold Gas Flow Field in Multi-Venturi CFB-FGD;多管文丘里循环流化床烟气脱硫冷态试验研究及数值模拟
8.Neural Network-Based Intelligent Integrated Modeling for the CFB-FGD Processes;基于神经网络的循环流化床烟气脱硫过程的智能集成建模研究
9.Exploiture and Application of CFB-FGD System Design and Calculate Software;循环流化床烟气脱硫系统计算设计软件的开发及应用
10.DESIGN FOR VENTURI OF FLUE GAS DESULPHURIZATION BY CIRCULATING FLUIDIZED BED ABSORBER烟气循环流化床脱硫塔内文丘里设计
11.Application of turbosorp dry FGD in Nanchang power plant循环流化床干法烟气脱硫技术的应用
12.An investigation of the desulfurization mechanisms by double circulating fluidized bed-flue gas suspension desulfurization apparatus;循环流化床烟气悬浮脱硫装置脱硫机理研究
13.Study on the Characteristics of Solid Internally Circulating in the CFB-FGD;烟气循环流化床脱硫塔物料内循环特性研究
14.Study on Cleaning Flue Gas to Satisfy the Emission Standard in CFB-FGD;烟气循环流化床脱硫后净烟气达标排放的研究
15.Experimental Studies on Simultaneous Desulfurization and Denitrification by Flue Gas Circulating Fluidized Bed;烟气循环流化床同时脱硫脱硝实验研究
16.Technology Study on Circulating Fluidized Bed for Simultaneous Desulfurization and Denitrification of Flue Gas;烟气循环流化床同时脱硫脱硝技术研究
17.Study on Simultaneous Removal of SO_2 and NO from Flue Gas by Circulating Fluidized Bed;烟气循环流化床同时脱硫脱氮技术研究
18.Modeling on Desulfurization and Denitrification by Flue Gas Circulating Fluidized Bed and Mechanism Research;烟气循环流化床联合脱硫脱氮模型和机理研究
相关短句/例句

circulating fluidized bed flue gas desuifurization烟气循环流化床脱硫
3)CFB-FGD process循环流化床烟气脱硫工艺
4)circulating fluidized bed semi-dry flue gas desulfurization循环流化床半干法烟气脱硫
5)CFB desulphurisation循环流化床脱硫
1.Technical and eco-nomical compare is given between the project of CFB desulphurisation and pulverized-coal-fired boiler plus damp-dry FGD process,and sugestions are given for the selection of desulphurisation process combinded with the specific conditions of ther-mal power plant expanding construction project.简要介绍了循环流化床脱硫技术和几种烟气脱硫技术工艺的特点,结合电厂扩建工程的实际情况,对循环流化床锅炉脱硫和煤粉炉加半干法烟气脱硫技术方案进行了技术经济比较,对脱硫技术方案的选择给出了建议。
6)CFB烟气循环流化床
1.The desulfurization experiments were carried out by using highly active absorbent prepared from CaO,FA and additives at a circulating fluidized bed(CFB),physical model of circulating fluidized bed under fast fluidization was established by the analysis of velocity and concentration distribution in reactor.利用以工业石灰,粉煤灰和添加剂制备的高活性吸收剂在循环流化床上进行了脱硫实验,通过对床内流场和温度场的分析,建立了快速流态化下循环流化床的物理模型;在此基础上,针对床内喷水增湿活化脱硫时吸收剂的三种不同物态:新鲜干燥颗粒、干燥再循环颗粒、含水颗粒,分别建立了与之对应的表面覆盖模型、气固反应模型、浆滴脱硫模型;总结得到了快速流态化下烟气循环流化床总的脱硫模型;同时利用模型模拟了各种参数对脱硫效率的影响。
2.A review on pollution and control for SO2 in flue gas is carried out in the dissertation, CFB FGD process is brought forward on the base of large number of literatures.本文对烟气中二氧化硫污染与控制技术进行了综述,在参考大量文献的基础上,提出了烟气循环流化床脱硫工艺。
3.Highly active absorbent is used in CFB firstly, 90% desulfurization , 63% denitrification efficiency can be achieved under optimum operating conditions.首次在烟气循环流化床上进行了联合脱硫脱氮实验,研究表明,在最佳工况下脱硫脱氮率分别达90%、63%,实验结果表明运行温度和烟气湿度是影响脱硫脱氮效率的主要因素。
延伸阅读

循环流化床分子式:CAS号:性质:在气速大于颗粒的自由沉降速度下进行流化,颗粒被气流带出,把气体与固体分离后,固体又循环回床层中所构成的流化床。它在工业上有很多用途。例如用于催化裂化,催化剂在提升管中被重油蒸气流化并输送,同时发生反应。在提升管顶部失活的催化剂与油气分离后进入另一个流化反应器(再生器),被空气流化并进行再生。再生后的催化剂又循环回提升管,构成一组循环流化床的催化裂化反应器。