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1.
利用热天平考察了流化床气化炉半焦细粉的水蒸气再气化特性及其动力学,并与相应的自制半焦及脱灰半焦细粉进行了比较分析.结果表明,半焦细粉的再气化反应性随着温度的升高而增加.与自制热解半焦相比,半焦细粉的反应性较高,这主要取决于比表面积的影响,而不同细粉的气化反应性差异还与其石墨化程度和灰含量有关.在此基础上,利用缩核模型对半焦细粉的再气化行为进行了模型拟合并得到了动力学参数,从而为细粉的再气化提供了一定的理论指导.  相似文献   

2.
废轮胎热解半焦CO_2气化反应动力学   总被引:1,自引:0,他引:1  
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3.
利用热天平对比研究了大同煤及煤焦在O2/N2、O2/CO2和O2/H2O/CO2中的燃烧行为,探讨CO2和H2O气化反应对其富氧燃烧特性的影响。结果表明,在5%氧气浓度下,煤粉在O2/N2、O2/CO2和O2/H2O/CO2中的燃烧速率按顺序依次降低。氧气浓度降低到2%,由于CO2和H2O气化反应的作用,煤粉在高温区的整体反应速率按顺序依次增大。当氧气浓度为5%时,煤焦在O2/CO2中的燃烧速率要低于O2/N2中的燃烧速率,但燃烧反应推迟后气化反应的参与使得煤焦在O2/H2O/CO2中的整体反应速率显著升高。当氧气浓度降低到2%后,随着温度的升高,在CO2气化反应的作用下,煤焦在O2/CO2中的整体反应速率逐渐高于O2/N2中的燃烧速率。在O2/H2O/CO2中,由于H2O在共气化中起主要作用,煤焦在O2/H2O/CO2高温区的整体反应速率进一步升高。动力学分析表明,在5%氧浓度时,煤焦在O2/N2、O2/CO2和O2/H2O/CO2中的表观活化能依次升高。随着氧气浓度的降低,在不同反应气氛中的表观活化能均有所下降。  相似文献   

4.
废轮胎热解半焦CO2气化反应动力学   总被引:2,自引:1,他引:2  
利用热重-差热(TG-DTA)分析仪对废轮胎热解半焦进行气化反应的研究,反应气体为CO2,在20-1100度温度范围内以不同的加热速率(10℃/min,30℃/min,50℃/min对各种热解条件下制得的废轮胎半焦进行气化动力学研究,分析了升温速率,制焦条件等对半焦气化反应特性的影响,得到废轮胎热解半焦与CO2气化反应的动力学参数。建立了废轮胎半焦CO2气化反应一级动力学模型,模型与实验结果吻合良好。  相似文献   

5.
850℃下,利用管式炉制备了不同转化率的棕榈壳CO2气化焦,通过热重分析仪研究了气化焦的CO2气化反应性,采用比表面积分析、拉曼光谱、X射线荧光光谱和扫描电镜-能谱等分析手段,考察了气化焦孔隙结构、碳组成、矿物元素含量与分布随转化率的变化。结果表明,在CO2气化过程中,随着转化率的提高,棕榈壳气化焦固定碳的含量逐渐降低,有序化碳的相对含量为0.30~0.33,对气化过程起到一定的抑制作用;灰分含量逐渐增加,但气化反应指数Rs呈现先降低后升高的过程。转化率小于23%时,Rs与气化焦比表面积的变化趋势一致;23%< 转化率< 31%时,Rs基本不变;31%< 转化率< 68%时,比表面积随转化率线性增加,Rs取决于孔隙比表面积、矿物元素催化2个因素的协同作用,当转化率> 56 %时,该催化作用变得明显,同时碳的有序化程度开始降低;转化率> 68%时,Rs主要受矿物元素的催化作用控制。  相似文献   

6.
流化床半焦等温热重CO2气化动力学研究   总被引:6,自引:0,他引:6  
采用等温热重法对400-900℃温度下流化床制得的神木煤半焦进行了CO2气化动力学研究。结果显示,排除反应初始阶段脱挥发分的影响后,不同制焦温度下的半焦的气化反应活性基本相同,这是由于所用热重实验条件下半焦脱挥发分后得到的焦具有相近的孔结构及活性点浓度造成的。实验得到了流化床半焦在950-1050℃范围内的气化动力学参数。  相似文献   

7.
利用热重研究了两种中国西北典型低阶煤半焦的燃烧特性。探究了不同气氛(O2/CO2、O2/N2和O2/Ar)和不同氧气浓度对其燃烧特性的影响。实验结果表明,无论是反应气氛还是氧气浓度都会对低阶煤半焦的燃烧产生影响。相比于N2和Ar,CO2明显有利于燃烧反应进行:当反应气氛由O2/CO2变为O2/Ar时,两种不同低阶煤半焦的燃尽温度分别升高了63.7和68.8℃;而当反应气氛由O2/CO2变为O2/N2时,两种不同低阶煤半焦的燃尽温度分别升高了135.9和129.6℃。在研究范围内,氧气浓度的提高也能明显提高半焦的燃烧性能。与此同时,半焦燃烧特性的动力学分析表明,随着氧气浓度提高,两种半焦燃烧反应的表观活化能E和指前因子A均呈增大趋势。通过对E和A两者关系的分析结果表明,半焦富氧燃烧的活化能和指前因子存在动力学补偿效应。  相似文献   

8.
分别对神华煤和神华煤直接液化残渣的水蒸气和CO2气化反应性进行了研究。结果表明,水蒸气气化反应中,煤半焦的反应性强于残渣半焦;CO2气化反应中,残渣半焦的反应性强于煤半焦。这主要是影响煤和残渣水蒸气和CO2气化反应性的关键因素不同。水蒸气气化反应受煤化程度的影响较大,而CO2气化反应受煤化程度的影响较小,受矿物质催化作用的影响大。  相似文献   

9.
褐煤快速热解半焦的气化特性   总被引:1,自引:2,他引:1  
  相似文献   

10.
以化学组成相近的燃烧煤灰、气化煤灰和混合氧化物为添加剂,分别通过干混法和湿混法加入石油焦中,并借助热重分析仪在1200-1400 ℃下进行CO2气化实验,研究高温下煤灰掺混方式、含量及物相组成对石油焦CO2气化的影响,并使用混合氧化物替代实际煤灰研究其对石油焦的高温气化催化作用。结果表明,石油焦气化反应速率随煤灰添加量的增加而提升;气化温度为1200、1300 ℃时,使用干混法和气化煤灰对石油焦的气化促进作用较弱;但气化温度为1400 ℃时,改变煤灰和石油焦的掺混方式及其中活性金属存在方式,对石油焦气化反应几乎没有影响。这是高温下煤灰熔融,导致液态熔体与石油焦表面接触良好、活性金属自由度高以及传质阻力增加共同作用的结果。此时混合氧化物的催化指数与混合物中铁钙含量具有线性关系,即添加高铁钙含量的煤灰可以促进石油焦CO2气化反应。  相似文献   

11.
在常压和920℃~1050℃下,采用热重方法,进行了六种中国典型无烟煤焦水蒸气与二氧化碳气化活性比较的研究。结果表明,无烟煤焦与水蒸气气化反应的活性与无烟煤的煤化程度相对应,无烟煤煤化程度越高,水蒸气气化反应活性越小。无烟煤焦与二氧化碳气化反应的活性与煤中矿物质的催化作用有密切关系,煤中矿物质的催化作用越大,二氧化碳气化反应活性越大。无烟煤焦与二氧化碳气化反应活性明显小于与水蒸气气化反应活性,后者比前者大10倍左右。初步探讨了无烟煤焦与水蒸气和二氧化碳的气化机理。  相似文献   

12.
采用常压热重分析仪,研究了重油残渣焦的水蒸气气化反应性,主要考察了热解温度、升温速率、停留时间及气化反应温度、气化剂分压对重油残渣焦水蒸气气化反应的影响,并借助XRD对残渣焦进行了分析表征。结果表明,气化温度950℃,60%水蒸气分压条件下,快速热解焦比慢速热解焦的气化反应性高;随制焦温度(500~900℃)的提高及停留时间的延长,焦的气化反应性降低。气化温度是影响重油残渣焦气化反应的主要因素,在900~1 050℃,温度每提高50℃,重油残渣焦气化反应时间几乎减半;随着水蒸气分压的提高,气化反应速率增加,但当气化剂分压高于60% 时,其对气化反应影响较小。采用均相模型和缩核模型对重油残渣焦气化曲线进行模拟,结果发现,缩核模型模拟相关性较好,其活化能为195.0 kJ/mol,指前因子A0为2.6×107min-1。  相似文献   

13.
The knowledge of biomass char gasification kinetics is of considerable importance in the design of advanced biomass gasifiers, some of which operate at high pressures. In the present work the effects of pyrolysis temperature, total pressure and CO2 concentration on the gasification of biomass chars have been studied using the thermogravimetric approach. The chars were obtained by pyrolysis in a drop tube furnace reactor at temperatures of 1000 and 1400 °C. The gasification tests were carried out in a pressurized thermogravimetric analyser (PTGA) at different temperatures, pressures and CO2 concentrations. The reactivity measurements were conducted under the kinetically controlled regime, and three nth-order kinetic models as well as the Langmuir–Hinshelwood model were applied to determine the kinetic parameters.  相似文献   

14.
An equation of state (EOS) applicable for the interfacial properties of CO2-methanol and CO2-ethanol mixtures was established by combining the cross-association EOS and the density gradient theory (DGT). The correlated surface tensions of CO2-ethanol mixtures agreed well with the experimental data. The results illustrated the temperature and pressure dependence of the cross-association between CO2 and alcohol hydroxyls in the whole vapor-liquid surface,and the influence of the cross-association on the calcu...  相似文献   

15.
在交叉缔合的均相状态方程的基础上,结合密度梯度理论(density gradient theory,DGT),建立了适用于CO2-甲醇和CO2-乙醇二元体系界面性质研究的状态方程,对CO2-乙醇体系表面张力的关联结果与实验值吻合良好.阐明了CO2分子与甲醇分子和乙醇分子之间的交叉缔合作用对二元体系表面张力计算结果的影响,以及界面相中CO2与醇羟基之间的交叉缔合与温度和压力之间的关系.  相似文献   

16.
在统计缔合流体理论(statistical associating fluid theory,SAFT)的基础上,将二氧化碳(CO2)处理为似缔合分子,考虑醇羟基之间的自缔合作用,以及CO2分子与醇羟基之间的交叉缔合作用,提出了适用于CO2-醇类体系的交叉缔合模型.应用该模型研究了CO2-甲醇和CO2-乙醇体系从低温低压到高温高压的相平衡性质.p-x和p-ρ相图的计算值与实验值吻合良好.研究表明,考虑CO2与甲醇和乙醇分子之间的交叉缔合对Helmholtz自由能的贡献,可显著改善相平衡性质的计算结果,并避免模型对低温区间中三相平衡和三相点的错误预测.  相似文献   

17.
Comparative study on the gasification reactivity of the three types of Chinese coal chars with steam and CO2 at 850–1050 °C was conducted by isothermal thermogravimetric analysis. The effects of coal rank, pore structure, ash behavior, and gasification temperature on the gasification reactivity of coal chars were investigated. It is found that the gasification reactivity difference between different coal chars changes with reaction degree and gasification temperature, and has no immediate connection with coal rank and initial pore structure. Ash behavior plays an important role in the char reactivity, and changes with gasification temperature and reaction degree due to the variation in the compositions and relative amount. The influence of pore structure is more noticeable during a relatively moderate reaction process. The relative reactivity ratio of steam to CO2 gasification generally decreases with the increasing temperature, and is related with the catalytic effect of inherent minerals. The characteristic parameters of the chars were analyzed, finding that the value of half reaction specific rate is approximate to the average specific rate under the same conditions. The nth-order distributed activation energy model is proposed to describe the coal char gasification process, and the results show that the activation energy increases with the increasing carbon conversion.  相似文献   

18.
《Comptes Rendus Chimie》2016,19(4):457-465
Although the influence of metallic and alkaline elements on biomass char reactivity is well known, a quantitative assessment of this catalytic effect is hard to obtain because of the chemical and textural complexity of biomass. The effect of K and Si on the CO2 gasification reactivity of a biomass char was studied using thermogravimetric analysis. A beech sample was pyrolyzed at 800 °C and then impregnated with known amounts of silicon or potassium allowing to obtain a wide range of K/Si ratios. The reactivity of the impregnated samples was studied under a CO2 (20% vol.) atmosphere. The results show that at low conversion ratios, the char reactivity depends on its textural properties, with strong diffusional limitations. When conversion reaches 60%, the presence of a catalyst (K) and an inhibitor (Si) becomes the major parameter influencing reactivity. From these experiments, a general trend was obtained between K/Si ratio and reactivity as a function of conversion.  相似文献   

19.
The gasification reactivity as well as physical and chemical structure of chars generated from two kinds of agricultural waste (i.e. corn straw and wheat straw) were studied to better understand the role of lower pyrolysis temperatures and lower heating rates on the gasification characteristics of agricultural waste chars. Char samples were generated in a one-stage quartz fixed-bed reactor. The carbon dioxide (CO2) gasification reactivity of chars was measured by thermogravimetric (TGA) analysis. Scanning electron microscopy (SEM) analysis, surface area (BET) analysis, Fourier transform infrared spectroscopy (FTIR) analysis and X-ray diffractometry (XRD) analysis were employed to determine the effect of operating conditions on the char structure. Char gasification reactivities decreased with increasing pyrolysis temperatures. The char particles generated under high pyrolysis temperatures had many smaller pores with thinner cell walls, larger surface areas, and some melting. Results indicated that many functional groups’ bands decreased and even disappeared with an increasing pyrolysis temperature. The chars’ microcrystalline became larger at high pyrolysis temperatures. The reactivity of wheat straw char is higher than corn straw char. The difference in the gasification reactivity of agricultural waste chars generated at different pyrolysis temperatures correlated well with the effect of pyrolysis temperatures on the agricultural waste char structure.  相似文献   

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