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1.
钾基CO2吸收剂的碳酸化反应特性   总被引:8,自引:2,他引:6  
对钾基CO2吸收剂的碳酸化反应机理进行研究.利用热重分析、XRD、扫描电镜和氮吸附仪进行试验.结果表明:分析纯碳酸钾的组分为K2CO3·1.5H2O,碳酸化反应速率缓慢;先将分析纯碳酸钾样品脱除结晶水后再进行碳酸化反应时,K2CO3与气氛中的水蒸气迅速生成K2CO3·1.5H2O,不利于碳酸化反应的进行;由KHCO3分解产生的K2CO3却表现出优越的碳酸化反应性能,20 min内转化率高达85%以上,经过多次循环试验后吸收剂仍保持很高的活性.从微观角度分析了两种改性钾基CO2吸收剂碳酸化反应机理差异的原因,通过拟合计算得到了这3种钾基吸收剂的碳酸化反应速率常数,为干法K2CO3/KHCO3循环脱除CO2的研究提供了一定的基础数据.  相似文献   

2.
陈光文  袁权 《化工学报》2002,53(2):111-115
对在由硅橡胶 /陶瓷复合膜所构成的膜反应器中进行的CO2 加氢合成甲醇的复杂反应体系CO2 +3H2=CH3 OH +H2 O与CO2 +H2=CO +H2 O开展实验研究 .考察了硅橡胶 /陶瓷复合膜在合成含氧化合物反应过程中的作用 ,并讨论了CO2 与H2 合成甲醇反应的膜反应过程参数对反应行为的影响 ,对部分理论分析结果进行验证 .在实验条件下 ,CO2 合成甲醇复杂反应体系中的主反应转化率较传统的固定床反应器提高了 2 2 %  相似文献   

3.
运用活性评价、XRD、TPR、CO2-TPD、CO-TPD等手段,分析了K2O影响Cu/ZnO催化剂CO2加氢反应性能的原因。试验结果表明,甲醇收率大幅度降低的原因是CuO-ZnO催化剂经K2O改性后,催化剂还原难度增加;提高了金属Cu的电子密度,促进了CO的歧化反应;催化剂还原后,对CO2的吸附量大为减少。  相似文献   

4.
烟气气相组分及Ca(OH)2对KMnO4氧化NO的影响机理   总被引:2,自引:0,他引:2       下载免费PDF全文
在固定床反应器中考察了KMnO4氧化烟气中NO的过程,分析了烟气组分H2O、O2及SO2对NO氧化过程的影响规律,得到了Ca(OH)2对KMnO4氧化NO的影响机理。实验结果表明,H2O是KMnO4氧化NO的必要条件;在含H2O条件下,O2可以提高NO氧化率。SO2与氧化剂反应生成无水钾镁钒类复盐K2Mn2(SO43对NO氧化具有负面作用;Ca(OH)2的加入提高了氧化剂表面的固体碱度从而促进氧化过程进行;通过添加Ca(OH)2可以降低SO2对NO氧化过程的负面影响。根据气体成分和产物分析可知,KMnO4在钙基吸收剂表面氧化烟气中NO的机理可能是KMnO4以离子态将吸附在氧化剂表面的NO和SO2氧化为NO2和SO3,生成的NO2、SO3再传递到氧化位临近的碱性位被吸收。  相似文献   

5.
烟气气相组分及Ca(OH)_2对KMnO_4氧化NO的影响机理   总被引:2,自引:1,他引:1  
在固定床反应器中考察了KMnO4氧化烟气中NO的过程,分析了烟气组分H2O、O2及SO2对NO氧化过程的影响规律,得到了Ca(OH)2对KMnO4氧化NO的影响机理。实验结果表明,H2O是KMnO4氧化NO的必要条件;在含H2O条件下,O2可以提高NO氧化率。SO2与氧化剂反应生成无水钾镁钒类复盐K2Mn2(SO43对NO氧化具有负面作用;Ca(OH)2的加入提高了氧化剂表面的固体碱度从而促进氧化过程进行;通过添加Ca(OH)2可以降低SO2对NO氧化过程的负面影响。根据气体成分和产物分析可知,KMnO4在钙基吸收剂表面氧化烟气中NO的机理可能是KMnO4以离子态将吸附在氧化剂表面的NO和SO2氧化为NO2和SO3,生成的NO2、SO3再传递到氧化位临近的碱性位被吸收。  相似文献   

6.
采用三氯氧磷法合成了一种新型五取代有机胍 N,N,N′,N′-四甲基-N″-苯基胍(PhTMG),利用IR、1H NMR、ESI-MS等方法对其结构进行了表征。考察了PhTMG对以二甘醇(DEG)、氯丙烯(ACH)和CO2为原料合成二甘醇双烯丙基碳酸酯(ADC)反应的催化性能,ADC的最高收率为95.3%。采用GC-MS、XRD、IR等分析手段结合实验验证对ADC合成反应机理进行了研究,推测出该反应分4步进行:第1步,CO2、DEG和Na2CO3反应生成二甘醇单碳酸钠盐;第2步,二甘醇单碳酸钠盐和ACH反应生成二甘醇单烯丙基碳酸酯(DGAC);第3步,DGAC、CO2和Na2CO3反应生成二甘醇单烯丙基碳酸酯单碳酸钠盐;第4步,二甘醇单烯丙基碳酸酯单碳酸钠盐与ACH反应生成目的产物ADC。并推测了反应体系中的主要副反应。  相似文献   

7.
阳绍军  徐祥  田文栋 《化工学报》2007,58(9):2363-2368
建立了基于化学链燃烧供能的吸收剂引导的焦炉煤气水蒸气重整制氢系统,该系统包含吸收剂引导的焦炉煤气重整反应器(SECOGSR)、燃料反应器和空气反应器。该系统能产生高纯H2[93.23%(mol)],仅通过冷凝即可实现CO2的捕获,分离能耗低。采用Aspen Plus软件对吸收剂引导的焦炉煤气重整制氢过程进行了模拟,得到优化的反应条件为:温度650℃,压力1.5 MPa,Ca/C=1,H2O/C=4。并对系统进行了模拟,以NiO/Y2O3/ZrO2(0.73/0.022/0.248,摩尔比)为化学链燃烧的载氧体和载能体,在满足反应器自热平衡和系统吸放热平衡的基础上,重整1mol焦炉煤气,燃料反应器和空气反应器所需的焦炉煤气、空气及载氧体NiO/Y2O3/ZrO2的量分别为0.139、0.648、3.11 mol。该系统消耗1 mol焦炉煤气的产H2量为1.30 mol,捕获的CO2的量为0.355 mol。  相似文献   

8.
余奇  曾克思  张振伟  余刚 《化工学报》2008,59(1):195-200
建立了数学模型,把所考虑的NO/N2/O2/H2O脉冲放电体系中的主要化学反应,归结为各物种浓度的刚性常微分方程组的初值问题来求解,计算方法选用Rosenbrock法,得到了物种浓度随停留时间的演化规律。结果表明:NO还原和氧化在其脱除过程中同时共存,当NO,N2,O2,H2O和CO2的体积浓度分别为200×10-6,80%, 5%,6%和9%时,NO氧化所占的比例比NO还原的大很多;脉冲频率增大导致NO还原率和氧化率均增大;H2O浓度增大导致HNO3浓度增大,表明NO氧化所占的比例随H2O浓度增大而增大。  相似文献   

9.
烟气中水蒸气对钙基吸收剂碳酸化的影响特性   总被引:4,自引:4,他引:0       下载免费PDF全文
陈惠超  赵长遂  沈鹏 《化工学报》2013,64(4):1364-1372
在循环煅烧/碳酸化反应系统上考察煅烧气氛和碳酸化气氛中水蒸气含量以及CO2分压对钙基吸收剂成型颗粒碳酸化的影响,通过对钙基吸收剂微观结构分析(扫描电镜、氮吸附分析)以理解水蒸气影响碳酸化特性的机理。结果表明,煅烧气氛和碳酸化气氛中的水蒸气均可提高钙基吸收剂的碳酸化转化率,水蒸气含量分别为10%和5%时,吸收剂的碳酸化性能较好;水蒸气在碳酸化气氛中对高铝水泥改性吸收剂的改善作用较石灰石显著。煅烧气氛中的CO2分压越高,烧结现象越严重,降低钙基吸收剂的捕集效率;碳酸化气氛CO2分压提高,有利于提高钙基吸收剂的碳酸化转化率。烟气中水蒸气丰富了吸收剂的微观孔隙,使得吸收剂捕集CO2性能得到改善。  相似文献   

10.
基于NiO载氧体的煤化学链燃烧实验   总被引:4,自引:2,他引:2  
高正平  沈来宏  肖军 《化工学报》2008,59(5):1242-1250
采用流化床反应器并以水蒸气作为气化-流化介质,研究了以NiO为载氧体在800~960℃内的煤化学链燃烧反应特性。实验结果表明,载氧体与煤气化产物在反应器温度高于900℃体现了高的反应活性。随着流化床反应器温度的提高,气体产物中CO2的体积浓度(干基)呈单调递增;CO、H2、CH4的体积浓度(干基)呈单调递减;煤中碳转化为CO2的比率逐渐递增,碳的残余率逐渐递减。反应器出口气体CO2、CO、H2、CH4的生成率随反应时间呈单峰特性,H2生成率的峰值远小于CO的峰值;且随反应器温度升高,CO2生成率升高,CO、H2、CH4的生成率降低。反应温度高于900℃时,流化床反应器NiO载氧体煤化学链燃烧在9 min之内就基本完成,CO2含量高于92%。  相似文献   

11.
负载型K2CO3/Al2O3二氧化碳吸收剂的碳酸化反应特性   总被引:2,自引:0,他引:2  
赵传文  陈晓平  赵长遂 《化工学报》2009,60(4):1022-1027
The carbonation characteristics of K2CO3/Al2O3 supported sorbent for CO2 capture was investigated with thermogravimetric apparatus(TGA),X-ray diffraction(XRD),scanning electron microscopy analysis(SEM)and N2 adsorption.The results showed that the carbonation rate of K2CO3 before being loaded on Al2O3 was slow.However,the K2CO3/Al2O3 upported sorbent showed excellent carbonation performance.The difference in carbonation behavior between K2CO3 nd K2CO3/Al2O3 supported sorbent was analyzed from the microscopic view.The analytical reagent K2CO3 sample was of monoclinic crystal structure and could react quickly with H2O in the experimental carbonation environment to produce K2CO3•1.5H2O,which was unfavorable to carbonation reaction.When K2CO3was loaded on Al2O3,the surface area and porosity of the sorbent was improved greatly.So the carbonation properties of the K2CO3/Al2O3 supported sorbent was also improved.  相似文献   

12.
赵传文  陈晓平  赵长遂 《化工学报》2009,60(7):1800-1805
The structure identification and carbonation characteristics of several potassium-based supported sorbents for CO2 capture were investigated with TGA,XRD,XRF,SEM and N2 adsorption method.Potassium-based sorbents were prepared by impregnation with potassium carbonate on supports,such as cocoanut activated charcoal(AC1),coal active carbon(AC2),silica gel(SG)and diatomite(DT)using the iso-volume impregnation method.The results showed that the K2CO3 loading amounts of AC1,AC2,SG and DT were 24.1%,22.5%,21.7% and 19.1% respectively.The surface area and pore volume of K2CO3/AC1 and K2CO3/AC2 were larger than others.In contrast,those of K2CO3/DT were small.For K2CO3/SG,pore volume was large but surface area was small.K2CO3/AC1 and K2CO3/AC2 showed excellent carbonation capacity.However,the carbonation capacities of K2CO3/SG and K2CO3/DT were low.The difference in carbonation capacity of those sorbents were attributed to the difference in pore structure,leading to different supported sorbents.  相似文献   

13.
纳米钙基CO2吸附剂反应吸附与分解动力学   总被引:1,自引:0,他引:1       下载免费PDF全文
采用TGA测定纳米钙基CO2吸附剂在500~650℃温度范围内,CO2分压0.015~0.025 MPa氮气气氛中的吸附反应动力学。针对纳米钙基CO2吸附剂吸附CO2反应特征,提出以两倍最大吸附速率对应的时间点前后分别为快速反应段与慢速反应段。分别采用Boltzmann方程与Avrami-Erofeev方程拟合快速反应段与慢速反应段吸附反应动力学方程,得到纳米钙基CO2吸附剂在快速反应段与慢速反应段的活化能分别为27.52、70.25 kJ·mol-1。吸附率拟合与实验值平均相对误差分别为10.29%、4. 17%。研究测试了纳米钙基CO2吸附剂在650~800℃温度范围内,N2,0.02、0.04 MPa CO2分压氮气气氛中的分解反应动力学。忽略反应过程中传热、传质影响,采用收缩核模型,分别求得吸附剂在N2,0.02、0.04 MPa CO2分压氮气气氛中的活化能为141.9、34.7、113.2 kJ·mol-1。碳酸钙分解率与实验值比较平均相对误差分别小于5.66% 、7.82%、5.01%。  相似文献   

14.
288 K下Li+,K+//CO2-3,B4O2-7-H2O四元体系的相平衡   总被引:1,自引:0,他引:1       下载免费PDF全文
Solubilities and properties (density, conductivity and pH value) of solutions in the quaternary system Li+,K+//CO2-3,B4O2-7-H2O at 288 K were experimentally studied with the isothermal equilibrium method. The phase diagram of the system consisted of two invariant points E and F, five univariant curves, and four crystallization fields that belonged to K2CO3·3/2H2O,Li2B4O7·3H2O,K2B4O7·4H2O and Li2CO3. The composition of the solution corresponding to E was w(CO2-3)=2.27 %,w(B4O2-7)=6.05 %,w(K+ )=4.30%,w(Li+)=0.30 % and the equilibrium solids were Li2B4O7· 3H2O+K 2B4O7·4H2O+Li2CO3;The composition of the solution for F was w(CO2-3)=22.45%,w(B4O2-7)=1.88%,w(K+ )=29.96%,w(Li+ )=0.03% and the equilibrium solids were K2CO3·3/2H2O+K 2B4O7·4H2O+Li2CO3. K2CO3 possesses strong salting-out effect on K2B4O7,Li2CO3 and Li2B4O7.  相似文献   

15.
A bubbling fluidized bed reactor was used to study CO2 capture from flue gas by using a potassium-based solid sorbent, sorbKX35 which was manufactured by the Korea Electric Power Research Institute. A dry sorbent, sorbKX35, consists of K2CO3 for absorption and supporters for mechanical strength. To increase initial CO2 removal, some amount of H2O was absorbed in the sorbent before injecting simulated flue gas. It was possible to achieve 100% CO2 removal for more than 10 minutes at 60°C and a residence time of 2 s with H2O pretreatment. When H2O pretreatment time was long enough to convert K2CO3 of sorbKX35 into K2CO3 · 1.5H2O, CO2 removal was excellent. The results obtained in this study can be used as basic data for designing and operating a large scale CO2 capture process with two fluidized bed reactors. This work was presented at the 6 th Korea-China Workshop on Clean Energy Technology held at Busan, Korea, July 4–7, 2006.  相似文献   

16.
Potassium-based sorbent was prepared by impregnation with potassium carbonate on activated carbon. The role of water and its effects on pretreatment and CO2 absorption was investigated in a fixed bed reactor. K2CO3 could be easily converted into K2CO3·1.5H2O working as an active species by the absorption of water vapor as the following reaction: K2CO3+3/2 H2O→K2CO3·1.5H2O. One mole of K2CO3·1.5H2O absorbed one mole of CO2 as the following reaction: K2CO3·1.5H2O+CO2ai2KHCO3+0.5 H2O. The K2CO3·1.5H2O phase, however, was easily transformed to the K2CO3 phase by thermal desorption even at low temperature under low relative humidity. To enhance CO2 capture capacity and CO2 absorption rate, it is very important to maintain the K2CO3·1.5H2O phase worked as an active species, as well as to convert the entire K2CO3 to the K2CO3·1.5H2O phase during CO2 absorption at a temperature range between 50 °C and 70 °C. As a result, the relative humidity plays a very important role in preventing the transformation from K2CO3·1.5H2O to the original phase (K2CO3) as well as in producing the K2CO3·1.5H2O from K2CO3, during CO2 absorption between 50 °C and 70 °C.  相似文献   

17.
研究了铜电极上间硝基苯磺酸钠在含有四丁基高氯酸铵(TBAP)电解质的质子惰性介质(DMF)、质子介质(H2O)及混合介质(DMF/H2O)中的电化学行为。结果表明:在质子惰性介质中,间硝基苯磺酸钠分步连续地被还原为ArNO-2·和[ArNO22-·阴离子自由基;其中ArNO2/ArNO-2·为扩散控制的单电子转移可逆氧化还原反应。在水溶液中,间硝基苯磺酸钠经历了ArNO2/ArNO和ArNO/ArNHOH反应。而在混合溶剂中,由于DMF的存在阻碍了硝基的质子化进程,间硝基苯磺酸钠经历了ArNO2/ArNO-2·和ArNO-2·/ArNHOH反应。通过量化计算进一步证实了上述实验结果。  相似文献   

18.
Alkali metal-based sorbents were prepared by the impregnation either of potassium carbonate (K2CO3) or of sodium carbonate (Na2CO3) on the supports (activated carbon (AC) and Al2O3). The CO2 absorption and regeneration properties were measured in a fixed bed reactor at the low temperature conditions (CO2 absorption at 60 ‡C and regeneration at 150 °C). The potassium carbonate which was supported on the activated carbon (K2CO3/AC) was clarified as a leading sorbent, of which the total CO2 capture capacity was higher than those of other sorbents. This sorbent was completely regenerated and transformed to its original phase by heating the used sorbent. The activation process before CO2 absorption needed moisture nitrogen containing 1.3–52 vol% H2O for 2 hours either at 60 ‡C or at 90 °C. The activation process played an important role in CO2 absorption, in order to form new active species defined as K2CO3· 1.5 H2O, by X-ray diffraction. It was suggested that the new active species (K2CO3·1.5H2O) could be formed by drying the K4H2(CO3)3·1.5H2O phase formed after pre-treatment with excess water.  相似文献   

19.
师琦  吴素芳 《化工学报》2009,60(2):507-513
以CO2为沉淀剂,Na2SiO3为硅源,制备了SiO2包覆纳米CaCO3吸附剂。TEM测试证实纳米CaCO3表面包覆一层SiO2膜, 用SEM & EDX 测试5个包硅样品Si含量为0.67%~4.93%。采用TGA考察吸附剂的分解温度及600℃、20% CO2条件下的吸附性能。结果表明:采用CO2沉淀法包覆SiO2后,与未包硅的纳米CaCO3相比,分解温度降低9~42℃。纳米SiO2/CaCO3吸附剂的循环吸附率、吸附容量、吸附速率均随Si含量的减小先增加后降低。Si含量为1.05%的纳米SiO2/CaCO3吸附剂显示最佳吸附性能,第1、5次循环吸附容量分别为8.9、6.0 mol·kg-1,与未包覆SiO2的纳米CaCO3相比,分别提高11%、50%,同时在第5次循环快反应段吸附速率较纳米CaCO3提高10%。与纳米CaCO3相比,包硅后的吸附剂具有较高的吸附容量和循环吸附率,循环稳定性较好。  相似文献   

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