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1.
用玻璃外循环无梯度反应器研究了在Pt/Al_2O_3催化剂上甲醇深度氧化稳态动力学,甲醇深度氧化稳态动力学服从L-H机理模型。用正交设计法估计了动力学方程中的参数。用脉冲法测定了甲醇、氧及CO_2的吸附热。用脉冲法研究了甲醇在催化剂上吸附量与停留时间的关系,实验中观察到在Pt/Al_2O_3催化剂上甲醇深度氧化的振荡现象。  相似文献   

2.
在Pt/Al_2O_3催化剂用玻璃外循环无梯度反应器研究了丁烷、反-丁烯-2及顺-丁烯-2深度氧化动力学。深度氧化服从L-H机理模型。用正交设计法估计了动力学方程中的参数值。用脉冲色谱法研究深度氧化的L-H机理,并测定了吸附热。求出了深度氧化的CO_2生成速度。  相似文献   

3.
在化学链燃烧(CLC)过程中,载氧体表面的原子结构和电子特性决定了其化学反应活性.本文以Fe_2O_3为载氧体,探讨了其自然条件下主要裸露的高米勒数指表面(1-1 2)的结构性质,研究发现表面不同配位数的氧和铁原子(包括O2f、O3f、O4f、Fe4f和Fe5f)的键参数、电子态密度及电荷布居等存在明显差异.为探究这种差异对Fe_2O_3反应活性的影响,对比分析了CO在表面5种氧和铁原子位生成CO_2的吸附-反应机理.CO在表面低配位O原子O2f和O3f首先形成物理吸附,然后被晶格氧氧化生成CO_2,反应需要克服能垒分别为3.657 e V和3.401 e V;然而,CO在O4f位吸附时,首先克服1.864 e V能垒形成二齿形碳酸盐物种,之后克服1.097 e V的能垒形成CO_2.当CO在Fe4f和Fe5f位吸附时,CO与Fe原子成键,后经过活化与表面O原子成键,形成二齿形碳酸盐物种,能垒分别为0.416和0.219 e V,最终碳酸盐物种分别克服0.500和1.462e V的能垒生成CO_2.因此,可以推断表面高配位数的O4f、Fe4f和Fe5f原子,由于其较高的氧化态,在化学链燃烧过程中充当活性位的作用.本研究有助于了解铁基载氧体表面化学链燃烧反应的微观机理,并为载氧体表面结构性能调控制备提供理论借鉴.  相似文献   

4.
研究了经巯基乙酸改性的橘子皮吸附剂对Cu2+的吸附性能,并考察了溶液pH值、吸附时间、Cu2+初始浓度及温度对吸附性能的影响.结果表明,吸附过程可以很好地用准二级动力学方程描述,吸附等温线用Langmuir方程的拟合效果优于Freundlich方程;;在pH=5.3、25℃条件下的最大吸附容量为70.671mg·g-1;;吸附过程为化学吸附,且经巯基乙酸改性的橘子皮可重复使用5次以上.  相似文献   

5.
用放射示踪法研究~(14)CS_2和OH的光化学反应,指出氧对反应有促进作用,在反应体系中(~(14)CS_2-H_2O_2-C_3H_8-N_2-O_2)主要产物为O~(14)CS,~(14)CO及少量~(14)CO_2。O~(14)CS和~(14)CO有相似的动力学曲线,~(14)CO_2则是另一种情况。总反应速率常数随氧压增加而增大,在氧压为33330Pa时,~(14)CS_2消失的总速率常数可高达3.4×10~(-12)cm~3mol~(-1)S~(-1)。在实验中观察到~(14)CS_2能在室温下转变为~(14)CO_2的现象。讨论了光化学反应的历程。  相似文献   

6.
TiO_2/AC催化臭氧氧化处理水中的苯酚   总被引:5,自引:0,他引:5  
研究了单独臭氧氧化及以活性炭(AC)和负载二氧化钛的活性碳(TiO2/AC)为催化剂催化臭氧氧化处理水中苯酚的效果。考察了AC、TiO2/AC对苯酚的吸附特性及三种方法对苯酚的转化率及矿化率效果及其臭氧利用效率,并对氧化过程进行了动力学分析。实验结果表明:AC、TiO2/AC对苯酚的吸附均较好地符合Freundlich方程;催化臭氧氧化转化苯酚的效果高于单独臭氧氧化;TiO2/AC作催化剂有利于苯酚的最终矿化,同时提高了臭氧的利用效率;3种氧化反应均较好的符合二级动力学方程,TiO2/AC催化臭氧氧化苯酚的二级动力学常数为0.0001L/(mg.min),高于单独臭氧氧化0.00004L/(mg.min)和AC催化臭氧氧化0.00006L/(mg.min)。  相似文献   

7.
基于密度泛函理论计算了NO和As2O3在Cu-ZSM-5表面的吸附性能.通过确立As2O3在Cu-ZSM-5表面的最佳吸附位点,对As3+在其活性位点吸附的反应路径进行研究,计算As在催化剂上的吸附反应活化能垒和决速步骤,揭示As2O3与活性位点Cu-O-Cu的成键机制和相互作用机理.结果表明,NO和As2O3都以非氧端吸附在Cu-ZSM-5活性位点Cu-O-Cu的晶格氧位,吸附能分别为-218.515kJ/mol和-206.422kJ/mol,吸附过程中有电荷转移且发生了强烈的相互作用.As2O3在Cu-ZSM-5活性位点Cu-O-Cu的晶格氧上的氧化过程分两步进行,As3+作为Lewis碱与Lewis酸中心的Cu-O-Cu发生非均相氧化反应,第一阶段的氧化产物As2O4在相邻的活...  相似文献   

8.
原水砷污染问题严重威胁饮用水水质安全,随着生活饮用水标准的提高,致使多地饮用水中砷超标问题突显.本研究利用CeO_2半导体的光催化活性及CeO_2和Fe_3O_4对As(Ⅴ)的强亲和力,合成了双组份磁性CeO_2-Fe_3O_4复合材料,并采用SEM、XRD、BET和VSM等手段进行表征,考察复合材料的光催化/吸附除砷效果;研究了初始p H值、共存离子等因素对吸附除砷效果的影响;采用等温吸附模型、吸附动力学模型等手段进行吸附特性研究.实验结果表明,在光催化过程中,·OH和·O_2~-为主要的活性氧化物种.在紫外照射下,As(Ⅲ)能完全被氧化为毒性较低的As(Ⅴ),同时将As(Ⅴ)高效吸附于CeO_2-Fe_3O_4粒子表面.在中性条件下,CeO_2-Fe_3O_4粒子对砷的饱和吸附量为122.19 mg·g~(-1).共存离子Cl~-和SO_4~(2-)对As(Ⅴ)的吸附没有显著影响,而CO_3~(2-)、SiO_3~(2-)和PO_4~(3-)与As(Ⅴ)存在明显的竞争吸附,使As(Ⅴ)的吸附去除效果明显降低.吸附动力学和吸附等温线模拟分别符合准二级动力学方程和Freundlich吸附等温线,表明As(Ⅴ)的吸附以化学吸附为主导.CeO_2-Fe_3O_4复合吸附剂可快速实现固液分离,容易再生且重复利用性较好,具有广泛的应用前景.  相似文献   

9.
采用生物材料酵母作为基质材料,纳米四氧化三铁为磁敏源,3-氯丙基三甲氧基硅烷(CP)作为硅源与偶联剂,聚乙烯亚胺(PEI)为功能单体,利用两步溶液聚合法制备磁性复合生物材料(MY@SiO2-PEI).同时,采用FT-IR、SEM、VSM、等电位点测定及接触角测定等方法对材料的理化性能进行了表征,并考察其对二元体系(Ce3+/Sr2+)混合液的吸附性能及机理.结果表明,MY@SiO2-PEI实现了PEI的成功嫁接,材料的表面变得粗糙,等电位点pHzpc变大,材料的接触角由疏水变成亲水.吸附实验结果表明,MY@SiO2-PEI具有更好的吸附性能,对二元体系中Ce3+和Sr2+的最大吸附量分别为80.24 mg·g-1和63.51 mg·g-1.准二级动力学方程与Freundlich吸附等温模型的线性回归系数(R2)均大于0.99,准二级动力学模拟的理论吸附容量(Qe,cal)更接近于实验值(Qe,exp),Freundlich等温模型中的吸附强度(1/n)均小于1,吸附为多层,有利于化学吸附过程;pH=5.5~6.0为最适吸附pH范围;MY@SiO2-PEI的磁性强度为10.03 emu·g-1,满足分离富集的要求.  相似文献   

10.
壳聚糖吸附酸性大红及Cu2+对吸附的增强作用   总被引:2,自引:1,他引:1  
李克斌  张涛  魏红  陈经涛  刘飞 《环境科学》2009,30(9):2586-2591
采用壳聚糖去除水中酸性大红,对壳聚糖吸附酸性大红的动力学、热力学以及溶液pH、盐浓度、外来Cu2+对吸附的影响进行了研究.准二级吸附动力模型、Langmuir、Freundlich及Dubinin-Radushkevich (D-R)方程分别用来对吸附动力学和等温线进行分析.结果表明,酸性大红在壳聚糖上的吸附是一个化学吸附控制的准二级动力学过程.Langmuir、Freundlich和D-R方程都能较好地描述吸附等温线.溶液pH和温度对吸附有较大影响,而氯化钠浓度对吸附的影响较小.对吸附热力函数的计算结果显示ΔH0<0,表明吸附是一个放热过程.由D-R方程计算的吸附自由能E为9.5~10.7 kJ.mol-1,表明吸附过程为离子交换化学吸附.Cu2+对吸附的影响结果显示Cu2+能显著提高壳聚糖对酸性大红的吸附容量,另外建立了Cu2+浓度与吸附量增加之间的数学模型.  相似文献   

11.
The steady-state kinetics for complete oxidation of benzene over Pt/Al2O3 has been investigated by the external recycling reactor. The kinetics equation was described by the L-H model of adsorption of benzene and oxygen with the inhibition of carbon dioxide. The parameters of the kinetics model were estimated by the method of orthogonal design. The heats of adsorption of benzene, oxygen and carbon dioxide were determined by the method of gas-adsorption chromatography. The details of oscillations of complete oxidation of benzene were investigated.  相似文献   

12.
The steady-state kinetics for complete oxidation of benzene over has been investigated by the external recycling reactor. The kinetics equation was described by the L-H model of adsorption of benzene and oxygen with the inhibition of carbon dioxide. The parameters of the kinetics model were estimated by the method of orthogonal design. The heats of adsorption of benzene, oxygen and carbon dioxide were determined by the method of gas-adsorption chromatography. The details of oscillations of complete oxidation of benzene were investigated.  相似文献   

13.
La-EDTA-Fe3O4 was prepared by a chemical co-precipitation method. The magnetic composite was characterized by transmission electron microscopy (TEM), X-ray diffraction (XRD) and Fourier transform infrared spectroscopy (FT-IR). Furthermore, the adsorption properties of La-EDTA-Fe3O4 toward phosphate in water were investigated. The uptake rate of phosphate in water by La-EDTA-Fe3O4 was 3-1000 times than that of EDTA-Fe3O4 , and reached 97.8% at 7 hr. The adsorption process agreed well with the Freundlich model and kinetics studies showed that the adsorption of phosphate proceeds according to pseudo second-order adsorption kinetics. The maximum removal rate was achieved at pH 6.0-7.0. The La-EDTA-Fe3O4 had good adsorption properties and could be separated well from aqueous solution by a permanent magnet. Therefore, this nanomaterial has potential application for the removal of phosphate from large water bodies.  相似文献   

14.
The occurrence of antibiotics in the environment has recently raised serious concerns regarding their potential threat to human health and aquatic ecosystem. A new magnetic nanocomposite, Fe304@C (Fe304 coated with carbon), was synthesized, characterized, and then applied to remove five commonly-used sulfonamides (SAs) from water. Due to its combinational merits of the outer functionalized carbon shell and the inner magnetite core, Fe3O4@C exhibited a high adsorption affinity for selected SAs and a fast magnetic separability. The adsorption kinetics of SAs on Fe304 @ C could be expressed by the pseudo second-order model. The adsorption isotherms were fitted well with the Dual-mode model, revealing that the adsorption process consisted of an initial partitioning stage and a subsequent hole-filling stage. Solution pH exerted a strong impact on the adsorption process with the maximum removal efficiencies (74% to 96%) obtained at pH 4.8 for all selected SAs. Electrostatic force and hydrogen bonding were two major driving forces for adsorption, and electron-donor-acceptor interactions may also make a certain contribution. Because the synthesized Fe304@C showed comprehensive advantages of high adsorptivity, fast magnetic separability, and prominent reusability, it has potential applications in water treatment.  相似文献   

15.
Carbon-modified titanium dioxide(TiO2) was prepared by a sol-gel method using tetrabutyl titanate as precursor, with calcination at various temperatures, and tested for the photocatalytic oxidation(PCO) of gaseous NH3 under visible and UV light. The test results showed that no samples had visible light activity, while the TiO2 calcined at 400℃ had the best UV light activity among the series of catalysts, and was even much better than the commercial catalyst P25. The catalysts were then characterized by X-ray diffractometry, Brunauer-Emmett-Teller adsorption analysis, Raman spectroscopy, thermogravimetry/differential scanning calorimetry coupled with mass spectrometry, ultraviolet-visible diffuse reflectance spectra, photoluminescence spectroscopy and in situ diffuse reflectance infrared Fourier transform spectroscopy. It was shown that the carbon species residuals on the catalyst surfaces induced the visible light adsorption of the samples calcined in the low temperature range( 300℃). However, the surface acid sites played a determining role in the PCO of NH3 under visible and UV light over the series of catalysts. Although the samples calcined at low temperatures had very high SSA, good crystallinity, strong visible light absorption and also low PL emission intensity, they showed very low PCO activity due to their very low number of acid sites for NH3 adsorption and activation. The TiO2 sample calcined at 400℃ contained the highest number of acid sites among the series of catalysts, therefore showing the highest performance for the PCO of NH3 under UV light.  相似文献   

16.
有机磷农药草甘膦(PMG)的广泛使用和环境残留严重威胁人体健康,其去除治理是环境领域面临的一大挑战.本文研究了草甘膦在高指{201}晶面二氧化钛(TiO_2)上的吸附行为,探讨了吸附时间、溶液pH和草甘膦浓度对吸附效率的影响,并通过Zeta电位表征和电荷分布多位点络合(CD-MUSIC)模型考察了草甘膦在二氧化钛上的络合结构.结果表明,{201}TiO_2对草甘膦的吸附在40 min内即可达到吸附平衡,吸附动力学符合准二级动力学方程.吸附等温线符合Langmuir方程,说明其吸附过程主要是近似单分子层的化学吸附.pH对吸附效率影响较大,酸性条件有利于草甘膦的吸附去除.Zeta电位的表征结果表明,草甘膦吸附后TiO_2表面等电点从5.6向左偏移至4.2,说明形成带负电的内层配合物,进一步的红外光谱结果表明草甘膦以P—O—Ti的络合形式与TiO_2表面结合.CD-MUSIC模型拟合结果表明草甘膦与TiO_2表面可能形成单齿单核或双齿双核的内层络合结构.本研究结果对深入理解草甘膦的微观界面行为及去除具有重要意义.  相似文献   

17.
王君  周怡伶  陈勇  吴波 《环境科学学报》2019,39(8):2567-2574
以SiO_2包覆Fe_3O_4,戊二醛为交联剂,交联壳聚糖(Chitosan, CTS),制得Fe_3O_4@SiO_2-Chitosan复合磁性纳米粒子.以Fe_3O_4和Fe_3O_4@SiO_2为对照,采用X射线衍射、透射电镜和傅立叶红外光谱对其进行表征分析,并测定了投加量、pH值、吸附时间和温度等因素对Cu~(2+)吸附效果的影响,从动力学、热力学以及再生回用性能评价等方面对其吸附性能进行了探究.结果表明Fe_3O_4@SiO_2-Chitosan对Cu~(2+)的吸附过程符合准二级吸附动力学模型和Langmuir模型,为自发、放热、优惠型的单分子层化学吸附.在pH为6.0, 298 K下达到最大吸附量154.8 mg·g~(-1),吸附解吸4次后吸附容量变化不大,说明Fe_3O_4@SiO_2-Chitosan具有较高的吸附容量,可作为处理含铜废水和回收铜的高效吸附剂.  相似文献   

18.
二氧化钛(P25)光催化降解二苯砷酸的研究   总被引:3,自引:3,他引:0  
王阿楠  滕应  骆永明 《环境科学》2014,35(10):3800-3806
二苯砷酸(diphenylarsinic acid,DPAA)是经化学武器泄漏而产生的一种含苯基的有机砷化合物,具有较强的生物毒性,严重威胁生态环境的安全.目前关于降解DPAA方法的研究较少.前期研究发现利用光催化剂二氧化钛(P25)能快速降解DPAA,本实验在此基础上主要研究该催化剂对DPAA的吸附特征、光催化降解动力学及其影响因素,并利用活性氧猝灭剂实验进一步了解各活性氧基团在光反应中的贡献.结果表明,P25光催化降解DPAA可以分为表面吸附与光反应两个阶段,并可用Langmuir-Hinshelwood反应动力学模型拟合.溶液中离子强度和酸碱度的变化会引起光催化剂对DPAA吸附量的改变,进而引起反应速率的改变,反应速率随吸附量的减小而下降.溶液中溶解氧也能促进二氧化钛对DPAA的催化降解.活性氧猝灭实验发现羟自由基在催化反应中贡献最大.  相似文献   

19.
Two kinds of activated carbons modified by Na+ impregnation after pre-treatments involving oxidation by nitric acid or acidification by hydrochloric acid (denoted as AC/N-Na and AC/HCl-Na, respectively), were used as adsorbents to remove NH4+-N. The surface features of samples were investigated by BET, SEM, XRD and FT-IR. The adsorption experiments were conducted in equilibrium and kinetic conditions. Influencing factors such as initial solution pH and initial concentration were investigated. A possible mechanism was proposed. Results showed that optimal NH4+-N removal efficiency was achieved at a neutral pH condition for the modified ACs. The Langmuir isotherm adsorption equation provided a better fit than other models for the equilibrium study. The adsorption kinetics followed both the pseudo second-order kinetics model and intra-particle kinetic model. Chemical surface analysis indicated that Na+ ions form ionic bonds with available surface functional groups created by pre-treatment, especially oxidation by nitric acid, thus increasing the removal efficiency of the modified ACs for NH4+-N. Na+-impregnated ACs had a higher removal capability in removing NH4+-N than unmodified AC, possibly resulting from higher numbers of surface functional groups and better intra-particle diffusion. The good fit of Langmuir isotherm adsorption to the data indicated the presence of monolayer NH4+-N adsorption on the active homogenous sites within the adsorbents. The applicability of pseudo second-order and intra-particle kinetic models revealed the complex nature of the adsorption mechanism. The intra-particle diffusion model revealed that the adsorption process consisted not only of surface adsorption but also intra-particle diffusion.  相似文献   

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