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11.
Au-supported 13X-type zeolite (Au/13X) was synthesized using a common deposition–precipitation (DP) method with a solution of sodium carbonate as a precipitate agent. Further testing was conducted to test for catalytic oxidation of CO. A study was conducted on the effects of different preparation conditions (i.e., chloroauric acid concentration, solution temperature, pH of solution, and calcinations temperature) on Au/13X for CO oxidation. In respect to the catalytic activity, the relationship between different the preparation conditions and gold particles in 13X zeolite was analyzed using X-ray diffraction, TEM and XPS. The activity of Au/13X catalysts in CO oxidation was dependent on the chloroauric acid concentration. From XRD results, a higher chloroauric acid concentration induced larger gold nanoparticles, which resulted in lower catalytic activity. Results revealed that higher temperatures induced higher Au loading, homogeneous deposit, and smaller gold clusters on the support of 13X, resulting in higher CO activity. Furthermore, a pH of 5 or 6 generated greater amounts of Au loading and smaller Au particles on 13X than at a pH of 8 or 9. This may be a result of an effective exchange between Au(OH)2Cl2- and Au(OH)3Cl- on specific surface sites of zeolite under the pH’s 5 and 6. The sample calcined at 300°C showed the highest activity, which may be due to the sample’s calcined at 200°C inability to decompose completely to metallic gold while the sample calcined at 400°C had larger particles of gold deposited on the support. It can be concluded from this study that Au/13X prepared from a gold solution with an initial chloroauric acid solution concentration of 1.5 × 10-3 mol·L-1 gold solution pH of 6, solution temperature of around 90°C, and a calcination temperature of 300°C provides optimum catalytic activity for CO oxidation.  相似文献   
12.
制备条件对Fe/AC脱硫活性的影响   总被引:1,自引:1,他引:1  
考察了Fe/AC脱硫剂的煅烧温度和载铁量对脱硫活性的影响,并对脱硫剂进行了X-射线衍射(XRD)和EXAFS表征,结果表明:经250℃煅烧的Fe/AC脱硫剂具有最高的脱硫活性,200℃煅烧,前驱体未完全分解,高于250℃煅烧,会使活性组分聚集,二者均导致脱硫活性降低。Fe/AC脱硫剂适宜的载铁量为3.5-14%,大于14%担载量使脱硫剂微孔堵塞严重,致使其脱硫活性下降。  相似文献   
13.
为使水洗焚烧飞灰的稳定化处理进一步优化,探讨了热处理的加热过程、气氛条件等对水洗焚烧飞灰晶体成分演变的影响.同时也探讨了3种飞灰:锅炉飞灰(RFA)、CaO/Ca(OH)2和NaHCO3分别作为中和剂得到的两种飞灰(CaFA和NaFA)水洗后(RFA-II#、CaFA-II#和NaFA-II#)进行热处理比较.结果发现700℃是个转折点,从这个温度点开始3种水洗飞灰中的晶体成分发生明显变化;原位连续加热模式更容易形成固体溶液因而更适合重金属的稳定;NaFA-II#较之CaFA-II#更易于稳定重金属成分.Factsage的模拟结果与XRD结果一致,而且发现飞灰中氯化物在加热过程中首先释放的是HCl.  相似文献   
14.
杨晓彤  何汉兵 《化工环保》2016,36(6):686-691
采用湿化学氧化和高温煅烧相结合的方法对含硫量6.28%(w)的石油焦进行二段脱硫处理,并利用FTIR、SEM和XRD技术对脱硫机理进行了探讨。实验结果表明:氧化工段的优化条件为硝酸与30%(w)双氧水的体积比1∶2、氧化时间10 h、氧化温度80℃、液固比35 m L/g、石油焦粒径106μm以下,优化条件下的氧化脱硫率为26.91%;煅烧工段的优化条件为1 280℃下煅烧6 h,优化条件下的煅烧脱硫率为79.43%,总脱硫率为83.95%。表征结果显示:经处理后石油焦中的黄铁矿类无机硫以及硫醇类和大部分噻吩类有机硫得到有效脱除,剩余噻吩硫转变为更稳定的形式;处理后的石油焦微观形貌轮廓变得清晰和圆润;处理前后石油焦的石墨雏晶结构基本未发生变化。  相似文献   
15.
Influence of catalyst calcination temperature on the catalyst characteristics and catalytic transesterification of Jatropha curcas oil for biodiesel production was studied by using sodium zirconate (Na2ZrO3) solid base catalyst. Na2ZrO3 catalysts were prepared by impregnation method followed by calcination at temperatures of 700, 800, and 900°C. The prepared catalysts were characterized by X-ray diffraction analysis, Fourier transform infrared spectroscopy, and field emission scanning electron microscopy. Important parameters influencing the catalytic activity and fatty acid methyl ester yield were investigated. It was found that the increase in calcination temperature showed marked increase in activity due to the increased porosity and presence of tetragonal zirconia. Investigation of the reusability of the catalysts showed that the catalytic activity was retained even after five cycles of reaction.  相似文献   
16.
采用沉淀-微波热解法,以Fe SO4·7H2O为铁源制备环境友好的γ-Fe2O3催化剂,结合XRD(X射线衍射)、N2等温吸附-脱附、SEM(扫描电子显微镜)、EDS(能谱仪)等手段对催化剂样品的晶相、孔结构、表面形貌、表面元素组成等进行表征,并考察其NH3-SCR(选择性催化还原)脱硝性能,研究煅烧温度对γ-Fe2O3催化剂物性及NH3-SCR脱硝性能的影响规律.结果表明:300、350和450℃下煅烧制备的催化剂中生成的杂质α-Fe2O3对SCR反应不利,而400℃煅烧制备的γ-Fe2O3催化剂脱硝性能最优,NOx转化率最高可达95%以上,XRD结果表明其纯度高,并且在60~100 nm孔径区间具有发达的孔隙结构,有利于SCR反应进行;随着煅烧温度升高,γ-Fe2O3催化剂表面晶格氧逐渐增加,颗粒形貌经历了片状颗粒(300、350℃)→球状颗粒(400℃)→针状颗粒(450℃)的变化过程,均匀的球状颗粒形貌及其表面丰富的晶格氧是400℃煅烧制得催化剂具备最优脱硝性能的重要因素.  相似文献   
17.
污泥灰渣中重金属煅烧脱除规律研究及安全性评价   总被引:2,自引:1,他引:1  
污泥目前被认为是磷酸盐矿的二次资源,焚烧处理可实现污泥中磷资源的浓缩富集,但其中重金属毒性问题尚待解决.该文以污泥焚烧灰渣为研究对象,利用马弗炉进行煅烧实验,通过改变反应时间(从10 min到60 min)、温度(从900℃到1200℃)及CaCl2的添加量(以Cl计,从1.5%到8.0%)研究重金属(Pb、Zn和Cu)的去除率及在煅烧灰渣中的赋存形态.结果表明:Pb有较高的去除率,且其去除率均随温度、时间及Cl含量的升高而升高,在1200℃、Cl含量为5.0%的时候有最大值为82.4%;Zn的去除率受温度的影响较大,高温时Zn有较高的去除率,且在1100℃时有最大值为83.9%;Cu的去除率较低,而在温度为1100℃时有最大的去除率为68.2%.就煅烧灰渣中重金属的赋存形态而言,各种工况下Pb在煅烧灰渣中均以残渣态存在;Zn在煅烧灰渣中主要也是以残渣态存在;Cu在煅烧后还存在一定的酸溶态,在900℃、煅烧10min时煅烧灰渣中酸溶态可达29.2%.增加CaCl2的添加量可以促进重金属的去除,同时使煅烧底渣中的重金属更稳定.地累积指数(Igeo)评价结果显示,煅烧底渣中的这3种重金属的污染程度都降低了.  相似文献   
18.
Ordered mesoporous carbon supported iron catalysts(Fe/OMC) were prepared by the incipient wetness impregnation method and investigated in Fenton-like degradation of 4-chlorophenol(4CP) in this work. XRD and TEM characterization showed that the iron oxides were well dispersed on the OMC support and grew bigger with the increasing calcination temperature. The catalyst prepared with a lower calcination temperature showed higher decomposition efficiency towards 4CP and H2O2, but more metals were leached. The effect of different operational parameters such as initial pH, H2O2 dosage, and reaction temperature on the catalytic activity was evaluated. The results showed that 96.1% of 4CP and 47.4% of TOC was removed after 270 min at 30°C, initial pH of 3 and 6.6 mmol/L H2O2. 88% of 4CP removal efficiency was retained after three successive runs, indicating Fe/OMC a stable catalyst for Fenton reaction. 4CP was degraded predominately by the attack of hydroxyl radical formed on the catalyst surface and in the bulk solution due to iron leaching. Based on the degradation intermediates detected by high performance liquid chromatography, possible oxidation pathways were proposed during the 4CP degradation.  相似文献   
19.
O2/CO2气氛下石灰石煅烧分解的动力学和热力学研究   总被引:1,自引:0,他引:1  
富氧燃烧是一种能够综合控制燃煤污染物排放的新型洁净燃烧技术。针对O2/CO2气氛下石灰石煅烧分解特性进行了热力学分析和热重试验结果的动力学分析,将热力学分析结果与热重试验结果进行了对比,得出石灰石的起始分解温度随CO2分压比的增大而增高。  相似文献   
20.
用Na_2CO_3催化焙烧法将CuS转化为Cu。最佳的转化条件;反应温度为750℃,CuS:Na_2CO_3(摩尔比)为1:2,在空气中反应90min。CuS的转化率可达到99%。  相似文献   
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