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1.
为了选择用于核聚变研究领域中在氢、氦气环境下的低温吸附泵所用的吸附剂,在初步筛选基础上,比对了4种椰基活性炭材料。采用扫描电镜对材料微观结构进行了扫描,用比表面积及孔径分析仪测定了等温吸附性能,最终获得了活性炭样本的比表面积、微孔比表面积份额、不同孔径所对应的孔容等性能数据;通过对实验结果的比对分析,为筛选适用于核聚变研究环境下低温吸附泵使用的吸附剂材料,提供了重要的实验数据。  相似文献   

2.
为了选择用于核聚变研究领域中在氢、氦气环境下的低温吸附泵所用的吸附剂,在初步筛选基础上,比对了4种椰基活性炭材料。采用扫描电镜对材料微观结构进行了扫描,用比表面积及孔径分析仪测定了等温吸附性能,最终获得了活性炭样本的比表面积、微孔比表面积份额、不同孔径所对应的孔容等性能数据;通过对实验结果的比对分析,为筛选适用于核聚变研究环境下低温吸附泵使用的吸附剂材料,提供了重要的实验数据。  相似文献   

3.
本文选用活性炭对苯蒸汽进行了动态、静态吸附性能实验,研究了苯蒸汽在不同系列活性炭上的吸附、脱附性能以及活性炭微孔结构对吸附性能的影响。结果表明:苯蒸汽在活性炭上的吸脱附性能明显与吸附剂的比表面、孔容、孔径与孔径分布直接相关。  相似文献   

4.
在高压吸附仪上研究了硅胶、MCM-41、13X、SBA-15四种固体吸附剂对CO_2的高压吸附性能,考察了温度、压力、结构性质和吸附热对吸附剂吸附量的影响.结果表明,高压下四种吸附剂对CO_2的吸附均属于物理吸附,且随着压力增大吸附剂的吸附性能增强。吸附量的大小变化分为两个阶段,不同阶段影响吸附量的因素不同。四种固体吸附剂的高压吸附实验表明,理想吸附剂的选择需要从吸附量、对温度的敏感性以及孔径大小和分布等综合考虑.  相似文献   

5.
通过KOH活化纸巾制备活性炭纤维, 比表面积高达1388 m2/g. 用制得的活性炭纤维作为吸附剂进行亚甲基蓝吸附实验研究,用Langmuir和Freundlich吸附模型分析实验数据,并研究pH值对活性炭纤维吸附亚甲基蓝影响. 活性炭纤维吸附速率更适于Pseudo-second-order动力学模型,相关系数高达0.998. 整个浓度变化区间Langmuir吸附等温线比Freundlich吸附等温线更适合实验数据. 所制备活性炭纤维对亚甲基蓝最大平衡吸附量为520 mg/g,实验发现,pH值越高活性炭纤维对亚甲基蓝吸附量越大.  相似文献   

6.
回热式低温制冷机在空间探测和地面实验中都有重要应用,但是在液氦温区工质氦气的体积比热容高于目前几乎所有的蓄冷材料,导致回热器效率低下.直接使用活性炭吸附一部分工质氦气作为蓄冷填料是一种潜在的解决方案.基于4~J10 K温度区间内吸附量的实验数据,建立了低温动态吸附计算模型,分析了液氦温区动态吸附特性对回热器性能参数的影...  相似文献   

7.
以海南椰树壳为原料通过复合物理活化方法制备出2162.84m2/g的高比表面积活性炭,所得活性炭孔径分布范围为1.1-2.5nm.选择对曙红Y染料进行吸附研究,采用分光光度法考查吸附剂用量、pH值、初始浓度、温度与吸附时间对单组分体系染料的吸附量与脱除效果的影响.结果表明在曙红Y浓度1600g ·m-3、pH为2.02、吸附时间10min、温度318K和吸附剂用量0.05g时脱除率可达99.9%.  相似文献   

8.
以核桃果皮为原料,以氯化锌为活化剂,采用正交设计,马弗炉加热法制备了核桃果皮基活性炭,并对所得活性炭进行表征,测定了不同实验条件下制备的核桃果皮基活性炭的得率、比表面积和碘吸附值,对最优条件下制备的活性炭进行了孔径分析、红外光谱分析,Boehm法测定其表面酸性基团含量等。实验结果表明:以氯化锌为活化剂制备核桃果皮基活性炭的最佳工艺参数分别为:活化温度600 ℃,活化时间1 h,氯化锌浓度50%,粒径大小为60目。最优条件下制备的活性炭比表面积达到1 258.05 m2·g-1,中孔率为32.18%,说明核桃果皮可以制备出比表面积高的优质活性炭,不但实现了农业废料的资源化,还解决了农业废料污染的问题,同时提供了廉价的吸附剂,对于开辟活性炭原料的新来源具有重要意义。  相似文献   

9.
采用SEM和低温氮吸附方法研究了碳纳米管和活性炭的表面微观形貌及孔隙结构,通过固定床研究了炭材料SO2吸附机理。研究结果表明:活性炭大孔直接暴露于表面,中孔和微孔分布于大孔内部,"聚合"是碳纳米管的重要特征;椰壳活性炭是微孔型吸附剂,煤基活性炭孔隙主要由微孔和大孔组成,碳纳米管氮吸附有明显的毛细凝聚现象,中孔和大孔是其孔隙主要组成;活性炭SO2吸附过程受物理吸附控制,碳纳米管SO2吸附不同于活性炭,同时受到物理吸附和化学吸附控制;孔径小于0.7 mm的微孔是炭材料SO2吸附的主要场所。  相似文献   

10.
本研究以煤基活性炭产品为原料,尿素作为氮源,通过浸渍、高温活化的方法进行改性,开发了一款可用于煤制氢/重整制氢中温变换气中CO2脱除的煤基富氮活性炭,并对其进行结构及性能表征。其中性能最优样品U-80C-N-550,其表面氮含量为9.92%,N/O比1.22,水接触角为137.92°±1.24°。在测试条件为99.99%CO2气氛,200?C温度,1 MPa压力下,CO2吸附容量可以达到1.27 mmol/g,且在进行40次吸附解吸循环过程中CO2吸附量基本保持不变,循环稳定性好。结果表明,不同条件下制备的富氮活性炭样品表面含氮基团含量及种类不同,因此通过改变吸附剂制备工艺条件,可适当调控活性炭表面含氮基团的种类及含量,从而提高其CO2吸附性能的同时增强其疏水性,得到了适合于含水蒸气富氢气体中脱除CO2的吸附剂。  相似文献   

11.
《Current Applied Physics》2014,14(4):603-607
Carbon aerogel (CA) was prepared by a carbonization of resorcinol–formaldehyde (RF) polymer gels, and it was chemically activated with KOH to obtain activated carbon aerogel (ACA) for electrode material for EDLC in organic electrolyte. Coin-type EDLC cells with two symmetrical carbon electrode were assembled using the prepared carbon materials. Electrochemical performance of the carbon electrodes was measured by galvanostatic charge/discharge and cyclic voltammetry methods. Activated carbon aerogel (20.9 F/g) showed much higher specific capacitance than carbon aerogel (7.9 F/g) and commercial activated carbon (8.5 F/g) at a scan rate of 100 mV/s. This indicates that chemical activation with KOH served as an efficient method to improve electrochemical performance of carbon aerogel for EDLC electrode in organic electrolyte. The enhanced electrochemical performance of activated carbon aerogel was attributed to the high effective surface area and the well-developed pore structure with appropriate pore size obtained from activation with KOH.  相似文献   

12.
利用木材、竹子、等其他生物资源制备具有发达多孔结构与丰富比表面积的活性炭,存在生产成本较高、不利于生态环境的可持续发展、使用寿命短和失效后容易造成室内环境二次污染的问题。冶金固体废弃物与生物质废弃物是工业生产与农业生产主要的副产品,因利用难度大、附加值低且成本高,导致大量堆放和填埋,不仅造成生态环境的污染,而且极大的浪费潜在资源。面对上述问题,利用冶金固体废弃物与生物质废弃物开发一种价格低廉且性能优越的生态活性炭,既是冶金固体废弃物与生物质废弃物的高附加值利用与资源可持续发展的重要途径之一,也是大幅降低改性活性炭生产成本与提高经济效益的重要途径之一。以核桃壳与电炉渣为研究对象,利用电炉渣中含有的金属氧化物对生物质废弃物进行改性处理制备用于甲醛降解的生态活性炭,依据《室内装饰装修材料人造板及其制品中甲醛释放限量》(GB18580-2017)对生态活性炭性能进行测试。利用X-射线光电子能谱(XPS)对元素含量进行测试与分析,X-射线荧光光谱仪(XRF)对化学成分进行测试与分析,傅里叶变换红外光谱仪(FTIR)对结构组成进行测试与分析,X-射线衍射仪(XRD)对矿物组成进行测试与分析,扫描电子显微镜(SEM)对微观结构进行测试与分析,激光粒度仪(LPSA)对粒度分布进行测试与分析和比表面积及孔径测定仪(BET)对孔结构进行测试与分析,以揭示核桃壳与电炉渣制备生态活性炭的机理,以及生态活性炭对甲醛的降解机理。结果表明:核桃壳超微粉与电炉渣超微粉进行复合制备具有良好降解甲醛性能的生态活性炭,不仅实现了冶金固体废弃物与生物质废弃物的高附加值的利用,而且提出了"以废治危"的新室内空气甲醛治理理念。电炉渣超微粉较好的被包裹于生态活性炭层状结构中,提高生态活性炭的粉化率,形成粒径较小的颗粒,有利于提高生态活性炭与甲醛的降解作用面积。电炉渣超微粉中含有Fe元素、Mn元素与Ti元素,Fe元素具有磁性促使大量甲醛在生物质活性炭孔结构表面形成富集,Mn元素与Ti元素对已经富集的甲醛进行催化降解,实现吸附降解与催化降解的协同作用。  相似文献   

13.
For Li-S batteries, commercial application was hindered by the insulating nature of S and the solubility of polysulfide. Porous carbon materials had proven themselves to be an ideal immobilizer host for S impregnation. Herein, carbon aerogels (CAs) with tunable pore microstructure were synthesized from resorcinol-formaldehyde reaction with increasing catalyst concentration and pyrolysis under high temperature. The results demonstrated that the catalyst concentration played a key role in tuning the porous microstructure of the CAs. In addition, potassium hydroxide (KOH) was introduced to activate the obtained CAs. The activated carbon aerogels (A-CAs) with hierarchical porous structure exhibited the highest specific surface area (1837.4 m2 g?1) and the largest total pore volume (2.276 cm3 g?1), which combined the advantages of both mesoporous and microporous. The effects of porous microstructure, specific surface area, and pore volume of the CAs and A-CAs on S incorporation were studied. The S/A-CAs exhibited significantly improved reversible capacity (1260 mAh g?1 at a rate of 0.1 C), enhanced high-rate property, and excellent cycling performance (229 mAh g?1 after 500 cycles at 1 C) as a cathode for Li-S batteries.  相似文献   

14.
The carbon modified silica adsorbents were prepared by synthesizing and modifying zeolite Y type with activated carbon. This paper reports on effects of activated carbon loadings on the methane and nitrogen adsorption, structure and properties of carbon modified zeolite Y. With the increase in activated carbon loadings, the surface area, pore size and pore volume of the activated carbon loaded zeolite Y adsorbent decreased. The intensity of the diffraction patterns of zeolite Y decreased after the activated carbon was loaded. With increasing activated carbon loadings, the intensity of diffraction peaks decreased. Adsorption capacity of nitrogen (N2) was smaller than adsorption capacity of methane (CH4) by using activated carbon modified silica. When activated carbon loadings 30% wt.%, adsorption capacity of methane and nitrogen was 12.9317 wt.% and 12.6115 wt.%, these were caused by difference in molecular weight. The molecular weight of nitrogen is bigger than molecular weight of methane.  相似文献   

15.
Activated carbons were prepared from cattle manure compost (CMC) using zinc chloride activation. The structural and surface chemical characteristics of CMC-based activated carbons were determined by N2 adsorption-desorption and Boehm titration, respectively. The water vapor adsorption properties of the prepared activated carbons with various pore structure and surface nature were examined, and the mechanism of water adsorbed onto activated carbon was also discussed. The results show that the adsorption of water vapor on carbons begins at specific active sites at low relative humidity (RH), followed by micropore filling at medium RH through the formation of pentamer cluster of water molecules in the narrow micropores. The water vapor adsorption capacity of activated carbon is predominantly dependent on its pore volume and surface area. Although capillary condensation is not the mechanism for water adsorption onto activated carbon, water can adsorb on narrow mesopore to some extent.  相似文献   

16.
In this paper, we attempted to narrow the pore size of Pitch-based activated carbon fiber (Pitch-ACF) by chemical vapor deposition (CVD) of propylene at 700 °C. The BET equation was used to estimate the specific surface areas. The micropore volumes were determined using DR equation, t-plot and s-plot, and mesopore surface areas were determined by t-plot and s-plot. The pore size distribution (PSD) of micropores and mesopore was investigated by micropore analysis method (MP method) and MK method, respectively. The relation between the graphite-like crystal interlayer distance and pore size was analyzed by X-ray diffraction (XRD). The results showed that the pore size of Pitch-ACF was gradually narrowed with increasing deposition time. The catalytic activation of Ni was attempted when Pitch-ACF was modified simultaneously by pyrolysis of propylene. The results obtained from the analysis of PSD of micropores, mesopores and macropores in Ni–P-ACF by density function theory (DFT) showed that the pore structure and surface chemistry were greatly changed due to introducing nickel catalyst.  相似文献   

17.
钢渣是冶金工业中产生的主要固体废弃物,其产量约为每年粗钢产量的15%~20%。由于技术的局限,导致我国钢渣利用率较低,仅为年钢渣产量的10%,同时加之管理制度的不健全,导致钢渣大量露天堆放,对土地资源、地下水源,以及空气质量形成严重影响。固体废弃物再利用是资源可持续发展的重要途径之一,钢渣的主要化学成分为CaO, SiO2, Al2O3, MgO, Fe2O3, MnO, f-CaO等。面对上述问题,利用冶金固体废弃物与活性炭开发一种价格低廉且性能优越的活性炭混合钢渣复合材料,既是冶金固体废弃物的高附加值利用与资源可持续发展的重要途径之一,也是大幅降低改性活性炭生产成本与提高经济效益的重要途径之一。该研究创新性以活性炭与钢渣为研究对象,利用钢渣中含有的金属氧化物对活性炭进行改性处理制备用于烧结烟气脱硫脱硝的活性炭混合钢渣复合材料,通过搭建实验反应装置对活性炭混合钢渣复合材料的脱硫脱硝性能进行测试。利用X射线荧光光谱仪(XRF)对钢渣的化学成分进行测试与分析,比表面积及孔径测定仪(BET)对活性炭混合钢渣复合材料的孔结构进行测试与分析,傅里叶变换红外光谱仪(FTIR)对钢渣的结构组成进行测试与分析,扫描电子显微镜(SEM)对活性炭混合钢渣复合材料的微观结构进行测试与分析,以揭示活性炭与钢渣制备活性炭混合钢渣复合材料的机理,以及活性炭混合钢渣复合材料对烧结烟气脱硫脱硝的机理。结果表明:当钢渣为电炉热泼渣、钢渣与活性炭质量比为2∶4、钢渣与活性炭细度为400目时,活性炭混合钢渣复合材料具有良好的脱硫脱硝性能与合理的经济性,即脱硫效率为100%、脱硝效率为58%。活性炭混合钢渣复合材料具有的多孔结构对SO2和NO进行有作用,钢渣中Fe2O3与MnO2促使活性炭官能团进行催化还原反应提高脱硫脱硝性能,其中吸附作用是主导与前提,催化还原反应是辅助与协同。以期为高附加值的钢渣利用提供新途径,实现钢铁企业以废治废、以废增效的目的。  相似文献   

18.
Hybrid carbon-polymeric composite membranes were synthesized by an immersion-precipitation method using polysulfone as polymer precusor and activated carbon dissolved in dimethyl formamide as casting solution. Surface analysis by scanning electron microscopy (SEM) allowed studying the morphology of membranes as a function of synthesis conditions (carbon loading and particle size). Membrane porosity distribution and mean pore size were obtained numerically using IFME® program.Effect of casting conditions over carbon was also investigated by SEM.Hybrid membrane performances were characterized in terms of water and oligomeric flux in a continuous operation mode. Selective rejection of dextranes of high molecular weight was obtained. Results showed that permeability for composite membranes is influenced basically by loading and activated carbon particle size, giving rise to materials with a better performance than non-hybrid ones for this application.  相似文献   

19.
Glucose-sensing electrodes were constructed from carbon fibers by electrospinning and heat treatment. By controlling the pore size, the specific surface area and pore volume of the electrospun carbon fibers were increased for efficient immobilization of the glucose oxidase. Carbon nanotubes were embedded as an electrically conductive additive to improve the electrical property of the porous carbon fibers. In addition, the surface of the porous carbon fibers was modified with hydrophilic functional groups by direct oxyfluorination to increase the affinity between the hydrophobic carbon surface and the hydrophilic glucose oxidase molecules. The porosity of the carbon fibers was improved significantly with approximately 28- and 35-fold increases in the specific surface area and pore volume, respectively. The number of chemical bonds between carbon and oxygen were increased with higher oxygen content during oxyfluorination based on the X-ray photoelectron spectroscopy results. Glucose sensing was carried out by current voltagram and amperometric methods. A high-performance glucose sensor was obtained with high sensitivity and rapid response time as a result of carbon nanotube addition, physical activation and surface modification. The mechanism of the highly sensitive prepared glucose sensor was modeled by an enzyme kinetics study using the Michaelis-Menten equation.  相似文献   

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