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1.
应用TG-FTIR联用研究催化剂对煤热解的影响   总被引:7,自引:3,他引:7  
用TG-FTIR联用技术研究了碱金属、碱土金属和过渡金属对宝日希勒褐煤和包头烟煤热解的催化作用和挥发分析出的影响。结果表明,各种催化剂对褐煤和烟煤热解的催化效果分别为Ni>Fe~Ca>K和Ca~Fe>Ni>K,K2CO3对煤的热解没有明显的催化作用。催化剂使褐煤和烟煤热解转化率增加的最大值分别为10.1%和6.4%。烟煤热解生成的CH4比褐煤的多,不同的催化剂使煤热解挥发产物CO2、H2O、CH4和CO增加的幅度不一样,催化效果与温度和煤的变质程度有关。  相似文献   

2.
应用TG-FTIR技术研究黄土庙煤催化热解特性   总被引:1,自引:0,他引:1  
用浸渍法制备过渡金属氧化物担载型催化剂MOx/USY(M=Co、Mo、Co-Mo),用热重红外联用技术考察了MOx/USY催化剂对黄土庙(HTM)煤热解失重特性和热解产物生成规律的影响。热重实验结果表明,MOx/USY催化剂可使HTM煤热解的二次脱气条件更为温和,热解峰温分别提前14、23和9℃。动力学分析结果表明,MOx/USY催化剂可降低HTM煤样热解的活化能。FT-IR研究表明,MOx/USY催化剂可有效改善HTM煤热解产物的组成和分布,CoOx/USY催化剂能显著提高HTM煤热解产物中高热值气体(CO、CH4)和轻质芳烃以及脂肪烃类化合物的含量;MoOx/USY催化剂没有明显改善HTM煤热解产物组成和分布;MoOx-CoOx/USY催化剂可促进CO、CH4、轻质芳烃和脂肪烃类化合物的生成,却使热解产物的生成向高温区移动,说明USY负载的不同过渡金属氧化物对煤样热解行为和热解产物有较大影响。  相似文献   

3.
4.
印刷线路板废弃物的热解及其产物分析   总被引:41,自引:2,他引:41  
作为一种热固性复合材料 (SMC) ,印刷线路板(printedcircuitboards)广泛应用于自动控制、电子工业等多种工业领域。由于树脂在固化过程中与硬化剂加热成型时发生交联反应 ,使得树脂难于再熔化和溶解 ,热固性聚合物以前被认为是无法回收的。另一方面 ,SMC包含大量玻璃纤维、CaCO3 等无机组分 ,热值较低 ,焚烧也不适于处置此类物质。因此 ,填埋是目前大规模处置印刷线路板废弃物的主要方式。热解是一种适于回收塑料物质的技术 ,同样也适用于无法重铸的热固性复合材料[1] 。在热解过程中 ,有机聚合物分解成油状…  相似文献   

5.
本研究采用热重分析手段,对鱼骨、蟹壳、虾壳三种典型海鲜废弃物的热解特性进行分析,研究不同升温速率(20、40、60℃/min)条件下热解过程的特征参数,分析原料成分组成对于海鲜废弃物热解特性的影响。基于热解特性参数对热解过程进行动力学分析,结合表观动力学参数并在对比多种机理模型的拟合效果基础上,确定了较为适宜的海鲜废弃物热解过程机理模型。结果表明,海鲜废弃物热解过程与其成分组成具有密切关联,TG-DTG曲线对比分析发现,有机质和无机盐含量是影响热解过程的重要因素。随着升温速率的提高,三种海鲜废弃物的热解特性参数具有一致的增长趋势。动力学研究发现,鱼骨主要热解过程符合一级化学反应机理,而蟹壳和虾壳在有机物分解阶段可由一段1.5级化学反应过程描述,分析认为,反应级数的差别与与海鲜废弃物中几丁质含量有关。表观活化能Ea随着升温速率的提高而增大,而活化能增量?Eα逐渐变小,可以推测采用不低于40℃/min的升温速率不会导致三种海鲜废弃物热解过程难度的增大并更具经济性。研究结果为海鲜废弃物热解处理技术的开发提供了基础过程特性数据。  相似文献   

6.
生物质废弃物的热解研究   总被引:1,自引:1,他引:1  
生物质能是可再生能源,在生长过程中通过光合作用将碳和能量固定下来,利用生物质能CO2排放很少.为实现可持续能源生产和减少温室气体排放的目的,中国已于2006年1月开始实施《中华人民共和国可再生能源法》.  相似文献   

7.
基于TG-FTIR的生物质催化热解试验研究   总被引:11,自引:2,他引:11  
运用热重-傅里叶红外光谱联用技术(TG-FTIR),以麦秸为研究对象,探讨催化与非催化条件下生物质的热解挥发分析出特性,分析研究热解温度、催化剂种类对生物质热解主要析出产物的影响。通过热重TG和DTG曲线,获得了相关热解特性参数及动力学参数。结果表明,添加NiO和CaO存在两个失重峰,并促进麦秸热解反应进行,降低表观活化能,其中NiO对提高热解析出产率作用更显著。通过红外光谱对热解产物实时测量的分析表明,CO与CO2的析出与失重峰基本一致,而CH4的析出滞后于前两者。添加NiO和CaO有利于减少热解产物中的CO2的浓度,促进挥发分产物CO、CH4的生成。其中CaO更有利于生物质在温度800℃以下的热解性能改善,而NiO在800℃以上具有更好的催化作用。  相似文献   

8.
以废旧高分子材料—PE塑料,PVC塑料和废轮胎为试验物料,在外热式回转窑内进行了一系列热解试验。考察了热解终温对热解产物的产率及产物特性的影响。随热解终温的提高,热解气体的产率上升而半焦的产率下降;PE和PVC的热解焦油的产率下降,而废轮胎则相反。在试验温度范围内热解气体的平均热值有一最大值;PVC在热解过程中Cl-HCl的转化率为520%~560%;热解终温对焦油的CH原子比、热值及族分均有一定影响;热解终温对热解半焦的热值、C和H残余率以及半焦反应活性也有一定的影响  相似文献   

9.
随着聚氯乙烯的大量使用,聚氯乙烯在总固体废弃物中占的比例愈来愈高,成为固体废弃物中的重要组分.如何科学、合理、有效地妥善解决聚氯乙烯问题是当前一项急待解决的重要课题.……  相似文献   

10.
煤油共液化过程中煤与重油先发生共热解,而后加氢转化为小分子产品。因此,阐明重油对煤热解逸出产物的影响规律是调控共液化产物组成的重要热化学基础。本研究采用TG-FTIR对比研究塔河渣油(AR)和淖毛湖煤(NMH)单独热解及其共热解过程,结合热解活化能计算,探索共热解过程中塔河渣油(AR)对淖毛湖煤(NMH)热解产物逸出产物的影响。结果表明,单独热解时AR先于NMH发生热解反应。两者1∶1(质量比)混合共热解时,相比于单独热解计算的理论值,最大失重峰温度前移7℃,失重率增加约3%,共热解平均活化能降低23.6 kJ/mol,表明AR率先热解会诱发NMH热解,降低热解反应能垒。TG-FTIR结果显示,AR产生的烷烃类自由基会与NMH热解产生的含氧自由基结合,形成醇、醚等烷基类含氧有机化合物,从而抑制煤中羧基转化为CO2的过程。研究结果有助于揭示共液化反应过程中重油对煤液化产物组成的影响。  相似文献   

11.
钾元素对生物质主要组分热解特性的影响   总被引:1,自引:0,他引:1  
采用热重-红外联用仪对松木及生物质主要化学组分半纤维素、纤维素、木质素的热解特性及钾元素对其热解特性的影响进行了研究.结果表明,半纤维素、纤维素、木质素发生热解的主要温度分别为200~350 ℃、300~365 ℃和200~600 ℃;半纤维热解产物中CO、CO2较多;纤维素热解产物中LG和醛酮类化合物最多;木质素热解主要形成固体产物,气体中CH4相对含量较高.三种组分共热解过程中发生相互作用使热解温度提高、固体产物增加,气体中CO增加而CH4减少.添加K2CO3后半纤维素和纤维素热解温度区间向低温方向移动,固体产率提高.K对纤维素作用最明显,CO、CO2气体与固体产物产率明显增加,醛酮类和酸类物质的产率降低;木质素受K影响相对较小,热解固体产物略有增加,挥发分中H2O和羰基物质增加;三组分共热解减弱了钾元素的催化作用.  相似文献   

12.
Switchgrass is a high yielding perennial grass that has been designated as a potential energy crop. One method of converting switchgrass to energy is by thermochemical conversion to syngas. This requires that the rate of thermal decomposition of switchgrass and the rate of production of components of the syngas be quantified. Ground switchgrass was pyrolyzed at heating rates of 10–40 °C/min in a thermogravimetric analyzer coupled to a Fourier Transform infrared spectrometer. The amount of gases (ppm) that were volatilized during the duration of experiment was quantified. The pyrolysis process was found to compose of four stages: moisture evaporation, hemicellulose decomposition, cellulose decomposition and lignin degradation. The peak temperature for hemicellulose (288–315 °C) and cellulose degradation (340–369 °C) increased with heating rate. FTIR analysis showed that the following gases were given off during the pyrolysis of switchgrass: carbon dioxide, carbon monoxide, acetic acid, ethanol, and methane.  相似文献   

13.
The combined thermogravimetric (TG) Fourier transform infrared (FTIR) techniques were used for studying the gaseous compounds evolved at thermooxidation of oil shale samples from different deposits (Estonia, Jordan, Israel). In addition to H2O and CO2as the major species, the formation and emission of CO, SO2, HCl and a number of organic species as methane, ethane, ethylene, methanol, formic acid, formaldehyde, chlorobenzene, etc. was determined. Differences in the absorbance of respective bands in FTIR spectra depending on the origin of oil shale and on the heating rate used were established. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

14.
Evolved Gas Analysis of Some Solid Fuels by TG-FTIR   总被引:1,自引:0,他引:1  
FTIR spectrometry combined with TG provides information regarding mass changes in a sample and permits qualitative identification of the gases evolved during thermal degradation. Various fuels were studied: coal, peat, wood chips, bark, reed canary grass and municipal solid waste. The gases evolved in a TG analyser were transferred to the FTIR via a heated teflon line. The spectra and thermoanalytical curves indicated that the major gases evolved were carbon dioxide and water, while there were many minor gases, e.g. carbon monoxide, methane, ethane, methanol, ethanol, formic acid, acetic acid and formaldehyde. Separate evolved gas spectra also revealed the release of ammonia from biomasses and peat. Sulphur dioxide and nitric oxide were found in some cases. The evolution of the minor gases and water parallelled the first step in the TG curve. Solid fuels dried at 100°C mainly lost water and a little ammonia. This revised version was published online in August 2006 with corrections to the Cover Date.  相似文献   

15.
Thermogravimetry (TG), thermogravimetry coupled with mass spectroscopy (TG-MS) and thermogravimetry coupled with Fourier transform infrared spectroscopy (TG-FTIR) were used to characterise the thermo-oxidative behaviour of two intumescent coating materials. The temperature dependence, the corresponding volatile products and the amount of residue of the different processes were determined. Using both TG-MS and TG-FTIR results in an unambiguous interpretation of the volatile products. Characteristics such as the influence of endothermic reactions, the release of non-flammable gases, the dehydrogenation enhancing the char formation and the stability of the cellular char were discussed in detail. It was demonstrated, that TG, TG-MS and TG-FTIR are powerful methods to investigate mechanisms in intumescent coatings and that they are suitable methods in respect to quality assurance and unambiguous identification of such materials. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

16.
TG-FTIR studies on lignin-based polycaprolactones   总被引:1,自引:0,他引:1  
Thermal degradation behaviour of alcoholysis lignin-based polycaprolactones (ALPCL's) with various molar ratios of β-caprolactone monomer to each hydroxyl group of lignin (CL/OH ratios) was studied by TG-FTIR. The temperature was varied from 20 to 800°C. Thermal degradation temperatures (Td's) of alcoholysis lignin (AL) and ALPCL's were determined using TG curves. Td increased with increasing CL/OH ratio, suggesting that AL becomes thermally stable after the derivatization with PCL chains. Mass residue (MR) at 500°C was also determined using TG curves. MR values decreased with increasing CL/OH ratios. The evolved gases formed by thermal degradation of ALPCL's at various temperatures were simultaneously analyzed by FTIR. The main peaks observed for the samples are as follows: wavenumber (assignment): 1160 cm-1 (vC-O-), 1260 cm-1(-C(=O)-O-C-), 1517 and 1617 cm-1 (vC=C), 1770 cm-1 (vC=O), 2345 cm-1 (vCO2), 2945 cm-1 (vC-H) and 3700 cm-1 (vOH). It was found that the peak intensities for C=O, CH, C-O-C, OH peaks, which were observed for evolved gases at 430°C, increased with increasing CL/OH ratios, suggesting that the evolved gases at 430°C are mainly formed by thermal degradation of PCL chains in ALPCL's. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

17.
采用~(13)C-NMR技术表征出汪清三个矿区油页岩的碳原子化学结构,并获得碳骨架结构的12个重要参数。利用热重和傅里叶红外联用技术(TG-FTIR)得出了在50℃/min升温速率和热解终温600℃下油页岩热解时轻质气体的生成规律。采用基于燃料化学结构的FLASHCHAIN模型对热解产物的析出进行了模拟,并与实验结果相比较。结果表明,FLASHCHAIN模型用来模拟汪清油页岩热解时,在520℃之前有较好的效果,当温度高于520℃时,由于二次热解反应及页岩中矿物质分解对热解过程的影响,导致模型的预测值与实验值存在一定的误差,且随着温度的升高两者之间的误差也随之加大。  相似文献   

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