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1.
以不同粒径范围的新疆准东煤为原料,在耦合下部流化床和上部输送床的复合流化床中热解制备兰炭,考察了热解温度、过量氧气系数、气化温度、煤颗粒停留时间等对热解产物分布和热解半焦性质的影响. 结果表明,随过量氧气系数、气化温度和颗粒平均停留时间增加,气体产率升高,半焦和焦油产率降低;半焦的比表面积随气化温度升高而增大,而随过量氧气系数增大先增大后减小. 当煤从下部流化床进料时,在过量氧气系数0.11、流化床气化温度850℃、输送床热解温度750℃、流化床内煤颗粒停留时间90 s的操作条件下,可制备出固定碳含量超过83%(w)、挥发分含量低于9%(w)的兰炭.  相似文献   

2.
以不同热解条件下制取的陕西烟煤(YL)半焦为原料,使用预糊化淀粉为黏结剂冷压成型制取成型燃料,分析不同热解条件下获得的煤焦成型后的物理特性,研究热解条件对半焦挥发分和表面含氧官能团的影响规律,揭示热解半焦特性对其成型的影响机理。结果表明:热解停留时间和热解终温对半焦成型特性具有显著影响。热解停留时间增加和热解终温升高会降低半焦挥发分含量和表面含氧官能团,影响黏结剂颗粒和半焦颗粒之间的黏结作用,从而会降低半焦成型后的冷压强度和跌落强度。结果表明:挥发分质量分数在16%以上的半焦成型后冷压强度大于450 N,适宜成型;热解终温小于600℃且热解停留时间小于5 min的半焦表面含氧官能团含量较高,成型后冷压强度大于450 N,可用于成型。半焦的成型特性受其挥发分含量和表面含氧官能团的综合影响。  相似文献   

3.
为了研究煤粉粒径对煤快速热解半焦特性的影响,对微负压系统中煤快速热解产生半焦的收率、灰分、挥发分含量和结构等特性进行了分析.结果表明,随着粒径增加,煤粉热解的活化能逐渐增加,低温区大粒径煤粉热解挥发分逸出量高于小粒径煤粉逸出量.热解半焦收率随着煤粉粒径减小逐渐增加,挥发分中焦油收率却随着煤粉粒径的减小而增加.小粒径煤热解生成的半焦结晶程度较低,边缘碳原子和其他缺陷较多,半焦炭层结构较不致密.极小颗粒中矿物质含量较高导致煤粉粒径越小,所得半焦的灰分含量越高,大粒径煤粉由于在低温区间失重速率快,挥发分逸出量大而导致半焦中残余的挥发分含量较低.  相似文献   

4.
李少华  高俊男  车德勇 《化工进展》2014,(2):358-362,462
在热重分析仪上以CO2为气化介质,制取了不同温度下乌拉盖煤半焦,并采用SEM和FTIR分析半焦的物化特性变化规律。利用TG-FTIR研究其气相产物的析出规律和机理。研究发现,煤焦表面孔隙随着挥发分的析出逐渐变得发达直至变形塌陷。褐煤中的有机官能团主要在320~850℃断裂缩合,850℃时褐煤已基本气化完全。烷烃类气体主要在热解阶段析出,由甲基、亚甲基、甲氧基中C—H键的断裂、重组所致;热解段CO的析出归因于羧基等含氧官能团的断裂,气化段是由于CO2气氛参与了焦炭的气化反应。  相似文献   

5.
综述了钙元素对褐煤热解和气化特性的影响,讨论了钙元素对热解产物中挥发分、焦油产率和气体产物分布的影响,以及对褐煤半焦气化的催化作用。结果表明,与酸洗煤相比,热解过程中,钙元素降低焦油产率,提高半焦产率;气化过程中,钙元素的植入提高褐煤半焦的反应活性,缩短了反应时间。高温时钙元素主要以氧化态的形式存在,低温时则不断与半焦基体键合而参与交联反应,少部分挥发。  相似文献   

6.
?80mm×3000mm气流床和?40mm×200mm流化床中进行了O2、H2O、H2O+O2气氛下800℃胜利褐煤气化实验,同时在流化床中进行了O2、H2O、H2O+O2气氛下半焦原位气化实验和H2O气氛下半焦完全气化实验。比较了2种反应器中氧化反应与水蒸气气化反应协同作用的大小(强弱);结合实验条件利用缩核模型分别推导了2种反应器中协同作用影响下水蒸气气化反应速率方程;同时,从传质(扩散)速率、动力学、半焦-挥发分相互作用3方面探讨了2种反应器中协同作用存在显著差异的原因。结果发现,气流床中H2O+O2气氛下褐煤转化率明显大于H2O和O2单独气氛下褐煤转化率之和,其差值稳定在2.11%~4.01%,而在流化床中差值仅为0~0.75%,相对流化床,气流床中协同作用更明显。这是由于,在流化床中水蒸气向炭粒表面扩散的传质速率约为气流床的11%~25%,水蒸气气化过程受气膜扩散控制,炭粒表面水蒸气全部参与气化反应,炭粒表面无“多余”水分子,氧气开孔/扩孔作用提供的活性位“闲置”,而气流床中气化反应为速控步,炭粒表面有“富裕”水分子,可充分利用氧气开孔/扩孔作用提供的活性位,促进作用显著;挥发分-半焦相互作用不是流化床反应器中协同作用不显著的原因。  相似文献   

7.
为提高褐煤热解多联产技术中半焦的利用效率,本文提出将低温热解半焦用于"一步法"制甲烷技术,考察了热解条件对半焦性质和一步甲烷化活性的影响。利用管式炉制备了不同气氛和温度的褐煤热解半焦,采用傅里叶红外光谱、X射线衍射技术和固定床反应器,对半焦表面化学、微晶结构和甲烷化活性进行了表征。结果表明,与N2和H2氛围相比,褐煤在水蒸气氛围中进行热解,半焦表面含氧官能团受到保护而含量更高,同时石墨化程度因受阻而降低,甲烷化活性更高;在水蒸气氛围中,773~873K范围内,随着热解温度升高,褐煤裂解反应进行程度加深,半焦表面含氧官能团数量降低,石墨化程度增加,致使甲烷化活性降低。总之,在水蒸气氛围中,773K时热解形成了一步甲烷化反应活性最好的褐煤半焦,对于低阶褐煤热解过程与气化过程优化联产具有重要指导意义。  相似文献   

8.
三塔式循环流化床(TBCFB)是基于低阶煤分质转化利用理念开发的新型工艺系统,包含热解、气化及燃烧三个主反应器。提出了采用半焦颗粒代替石英砂作为循环热载体的新工艺,并使用Aspen Plus建立了基于半焦颗粒的TBCFB系统模拟流程,寻求系统内物料转化和能量利用的适宜操作条件。结果表明,只需燃烧40%的热解半焦,即可满足低阶煤在600℃热解和60%的热解半焦在800.9℃进行水蒸气气化所需热量;与石英砂或高温灰相比,利用热容较高的半焦颗粒作为循环介质可以显著降低热载体循环量,与原煤质量比仅为5.5。综合气化产物组成、低热值和冷煤气效率等指标,适宜的水蒸气与反应半焦质量比为1.5。上述模拟结果对半焦循环TBCFB新技术的工业应用具有一定指导意义。  相似文献   

9.
低阶煤热解-气化-燃烧TBCFB系统模拟及优化   总被引:1,自引:0,他引:1       下载免费PDF全文
三塔式循环流化床(TBCFB)是基于低阶煤分质转化利用理念开发的新型工艺系统,包含热解、气化及燃烧三个主反应器。提出了采用半焦颗粒代替石英砂作为循环热载体的新工艺,并使用Aspen Plus建立了基于半焦颗粒的TBCFB系统模拟流程,寻求系统内物料转化和能量利用的适宜操作条件。结果表明,只需燃烧40%的热解半焦,即可满足低阶煤在600℃热解和60%的热解半焦在800.9℃进行水蒸气气化所需热量;与石英砂或高温灰相比,利用热容较高的半焦颗粒作为循环介质可以显著降低热载体循环量,与原煤质量比仅为5.5。综合气化产物组成、低热值和冷煤气效率等指标,适宜的水蒸气与反应半焦质量比为1.5。上述模拟结果对半焦循环TBCFB新技术的工业应用具有一定指导意义。  相似文献   

10.
为考察热解温度对热解产物品质及挥发分残留的影响,在10 kg/h自制褐煤快速热解提质试验设备上,以胜利褐煤为试验原料,考察了400~900℃热解提质温度对热解产物产率、气体产物组成、半焦微观结构以及残余挥发分的影响。结果表明,随着热解温度的升高,半焦产率逐渐降低,气体产率升高,焦油的产率先升高后降低,700℃时焦油产率最大;热解气体中的CO_2随着热解温度的升高逐渐降低,H_2和CO含量随着热解温度的升高而增加;随着热解温度的升高,挥发分不断释放导致半焦含氧官能团以及高活性的小的缩合芳环减少;热解温度≥700℃,半焦残留的挥发分较低,固定碳较多,基本满足电石用焦的要求。  相似文献   

11.
A demineralized North Dakota lignite was loaded with 2.9 wt% Ca by ion exchange. Chars were prepared by pyrolysis in N2 at 1275 K and residence times between 0.3 s and 1 h. Major differences were observed in their subsequent reactivities in 0.1 MPa air. X-ray diffraction analysis was carried out to obtain information on the state and dispersion of the Ca species on the various chars. The results clearly indicate that CaO is the predominant species responsible for catalysis of lignite char gasification. It is concluded that pyrolysis residence time also has a profound effect on CaO dispersion. Thus, a correlation was established between a fundamental physical property (catalyst dispersion) and the observed gasification behaviour of lignite chars prepared under different pyrolysis conditions.  相似文献   

12.
由下行床热解和提升管(或输送床)气化组合形成的流化床两段气化将煤气化反应过程解耦为煤热解和半焦气化两个反应阶段,热解产物完全进入气化反应器,利用其中的高温环境和输送的半焦催化作用分别实现焦油的热裂解与催化裂解,完成低焦油气化。利用该流化床两段气化的10 kg/h级实验室工艺实验装置,以榆林烟煤为原料、水蒸气/氧气作为气化剂,变化过量氧气系数ER、蒸汽炭比S/C、热解及气化温度等参数,研究水蒸气/氧流化床两段煤气化制备低焦油合成气的特性。结果表明,流化床两段气化系统可实现稳定运行(实验3 h以上),在ER=0.36和S/C=0.15时,热解和气化的代表温度分别稳定在735℃和877℃,合成气的CO、CO2、H2、CH4、C n H m 和N2含量分别为14.33%、10.07%、18.39%、9.89%、1.82%和45.50%,相应的合成气产量达到1.8 m3/kg,低位热值8.99 MJ/m3,焦油含量0.437 g/m3,展示了制备低焦油合成气的技术特征。对于实际的长时间连续运行,更高的气化温度将使流化床两段气化具有更好的低焦油特性。  相似文献   

13.
由下行床热解和提升管(或输送床)气化组合形成的流化床两段气化将煤气化反应过程解耦为煤热解和半焦气化两个反应阶段,热解产物完全进入气化反应器,利用其中的高温环境和输送的半焦催化作用分别实现焦油的热裂解与催化裂解,完成低焦油气化。利用该流化床两段气化的10 kg/h级实验室工艺实验装置,以榆林烟煤为原料、水蒸气/氧气作为气化剂,变化过量氧气系数ER、蒸汽炭比S/C、热解及气化温度等参数,研究水蒸气/氧流化床两段煤气化制备低焦油合成气的特性。结果表明,流化床两段气化系统可实现稳定运行(实验3 h以上),在ER=0.36和S/C=0.15时,热解和气化的代表温度分别稳定在735℃和877℃,合成气的CO、CO2、H2、CH4、C n H m 和N2含量分别为14.33%、10.07%、18.39%、9.89%、1.82%和45.50%,相应的合成气产量达到1.8 m3/kg,低位热值8.99 MJ/m3,焦油含量0.437 g/m3,展示了制备低焦油合成气的技术特征。对于实际的长时间连续运行,更高的气化温度将使流化床两段气化具有更好的低焦油特性。  相似文献   

14.
碱金属及灰分对煤焦碳微晶结构及气化反应特性的影响   总被引:4,自引:1,他引:3  
通过对原煤、酸洗原煤、酸洗后负载NaOH的原煤在750~1050℃热解制得焦样,用X射线衍射技术考察了热解温度、NaOH负载量以及灰分对热解过程中煤焦微晶结构变化的影响,并运用高温高压热天平(PTGA)考察了热解后煤焦的气化反应活性。结果表明碱金属及灰分的存在可以明显减小煤焦的微晶结构参数的变化(堆垛高度Lc、微晶尺寸La、及晶层间距d002),阻碍煤焦的石墨化进程,提高煤焦的气化反应性。随着热解温度的升高,堆垛高度Lc增大显著,而微晶尺寸La和晶层间距d002变化较小。煤焦的气化反应性k0和煤焦微晶结构参数Lc、d002存在如下关系:lnk0=a(Lc/d002)+b;研究还表明用氧化还原循环机理来描述碱金属的催化作用机理是不恰当的,但碱金属Na的存在可以明显降低煤焦的石墨化程度,提高煤的活性,对煤焦的气化起到部分催化作用。  相似文献   

15.
E Cetin  B Moghtaderi  R Gupta  T.F Wall 《Fuel》2004,83(16):2139-2150
The physical and chemical structure as well as gasification reactivities of chars generated from several biomass species (i.e. pinus radiata, eucalyptus maculata and sugar cane bagasse) were studied to gain insight into the role of heating rate and pressure on the gasification characteristics of biomass chars. Char samples were generated in a suite of reactors including a wire mesh reactor, a tubular reactor, and a drop tube furnace. Scanning electron microscopy analysis, X-ray diffractometry, digital cinematography and surface area analysis were employed to determine the impact of operating conditions on the char structure. The global gasification reactivities of char samples were also determined for a range of pressures between 1 and 20 bar using pressurised thermogravimetric analysis technique. Char reactivities were found to increase with increasing pyrolysis heating rates and decreasing pyrolysis pressure. It was found that under high heating rates the char particles underwent plastic deformation (i.e. melted) developing a structure different to that of the virgin biomass. Pressure was also found to influence the physical and chemical structures of char particles. The difference in the gasification reactivities of biomass chars at pressure was found to correlate well with the effect of pyrolysis pressure on the graphitisation process in the biomass char structure.  相似文献   

16.
The effect of coal particle size on pyrolysis and steam gasification   总被引:3,自引:0,他引:3  
For future power generation from coal, one preferred option in the UK is the air-blown gasification cycle (ABGC). In this system coal particles sized up to 3 mm, perhaps up to 6 mm in a commercial plant, are pyrolysed and then gasified in air/steam in a spouted bed reactor. As this range of coal particle sizes is large it is of interest to investigate the importance of particle size for those two processes. In particular the relation between the coal and the char particle size distribution was investigated to assess the error involved in assuming the coal size distribution at the on-set of gasification. Different coal size fractions underwent different changes on pyrolysis. Smaller coal particles were more likely to produce char particles larger than themselves, larger coal particles had a greater tendency to fragment. However, for the sizes investigated in this study ranging from 0.5 to 2.8 mm, the pyrolysis and gasification behaviour was found not to vary significantly with particle size. The coal size fractions showed similar char yields, irrespective of the different char size distributions resulting from pyrolysis. Testing the reactivity of the chars in air and CO2 did not reveal significant differences between size fractions of the char, nor did partial gasification in steam in the spouted bed reactor. From the work undertaken, it can be concluded that pyrolysis and gasification within the range of particle sizes investigated are relatively insensitive to particle size.  相似文献   

17.
The structure and composition of coal determine its fast pyrolysis characteristics,and the study of the relationship between them can play an important role in the efficient and clean utilization of coal.So,in this work,hydrothermal pretreatment was used to artificially change the structure and composition of ShengLi (SL) lignite,which was used to investigate the influence of structural changes on pyrolysis.The physicochemical structure and composition of samples were characterized by X-ray diffraction,specific surface area and porosity analyzer,solid-state 13C nuclear magnetic resonance,Fourier transform infrared spectroscopy,and elemental analyzer.Pyrolysis experiments were carried out in a powder-particle fluidized bed reactor,and the distribution and composition of the pyrolysis products were ana-lyzed.The gasification activity of char was investigated by thermogravimetric analysis with a CO2 atmo-sphere.The results show that hydrothermal pretreatment (HTP) can destroy the cross-linking structure of SL lignite,and affect its aromaticity,pore structure,functional group,and carbon structure to change the distribution and composition of pyrolysis products of SL lignite,especially the composition of tar.Finally,the structure-activity relationship between the structure,composition,and pyrolysis characteristics of coal was comprehensively studied.  相似文献   

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