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1.
李坤权  郑正  罗兴章 《环境科学》2010,31(8):1877-1883
以互花米草与棉秆为原料,以KOH为活化剂,制备了2种低成本高比表面微孔植物基活性炭SA-AC和CS-AC,通过静态实验研究了其对水溶液中对硝基苯胺的吸附特性,测定了溶液pH值、吸附剂剂量、溶液温度对吸附的影响,并探讨了等温吸附行为及其热力学性质.结果表明,在KOH与炭化料的质量比(剂料质量比)为3∶1、活化温度为800℃、活化时间为1.5 h条件下,活化制备的互花米草活性炭SA-AC和棉秆活性炭CS-AC的比表面积分别为2 825 m2.g-1和2 135 m2.g-1,微孔容积分别为1.192 cm3.g-1和1.011 cm3.g-1,对水溶液中对硝基苯胺的Langmuir最大吸附量分别为719和716 mg.g-1,远高于商业活性炭ST1300.溶液pH值和温度对吸附有较大影响,在低温及中性条件下有利于制备活性炭对水溶液中对硝基苯胺的吸附.Freundlich与Redlich-Peterson模型能很好地描述对硝基苯胺在2种活性炭上的吸附行为;热力学研究表明,吸附标准吉布斯自由能变ΔG0与标准焓变ΔH0均为负值,表明对硝基苯胺在这2种活性炭上的吸附属于自发的放热吸附过程;吸附标准熵变ΔS00,说明对硝基苯胺在活性炭表面上的迁移比在溶液中受到了更大的限制.  相似文献   

2.
To decrease the operating cost of flue gas purification technologies based on carbon-based materials, the adsorption and regeneration performance of low-price semi-coke and activated coke were compared for SO2 and NO removal in a simulated flue gas. The functional groups of the two adsorbents before and after regeneration were characterized by a Fourier transform infrared (FTIR) spectrometer, and were quantitatively assessed using temperature programmed desorption (TPD) coupled with FTIR and acid–base titration. The results show that semi-coke had higher adsorption capacity (16.2% for SO2 and 38.6% for NO) than activated coke because of its higher content of basic functional groups and lactones. After regeneration, the adsorption performance of semi-coke decreased because the number of active functional groups decreased and the micropores increased. Semi-coke had better regeneration performance than activated coke. Semi-coke had a larger SO2 recovery of 7.2% and smaller carbon consumption of 12% compared to activated coke. The semi-coke carbon-based adsorbent could be regenerated at lower temperatures to depress the carbon consumption, because the SO2 recovery was only reduced a small amount.  相似文献   

3.
In this work, the effects of different methods of activation on CO2 adsorption performance of activated carbon were studied. Activated carbons were prepared from biochar, obtained from fast pyrolysis of white wood, using three different activation methods of steam activation, CO2 activation and Potassium hydroxide (KOH) activation. CO2 adsorption behavior of the produced activated carbons was studied in a fixed-bed reactor set-up at atmospheric pressure, temperature range of 25–65°C and inlet CO2 concentration range of 10–30 mol% in He to determine the effects of the surface area, porosity and surface chemistry on adsorption capacity of the samples. Characterization of the micropore and mesopore texture was carried out using N2 and CO2 adsorption at 77 and 273 K, respectively. Central composite design was used to evaluate the combined effects of temperature and concentration of CO2 on the adsorption behavior of the adsorbents. The KOH activated carbon with a total micropore volume of 0.62 cm3/g and surface area of 1400 m2/g had the highest CO2 adsorption capacity of 1.8 mol/kg due to its microporous structure and high surface area under the optimized experimental conditions of 30 mol% CO2 and 25°C. The performance of the adsorbents in multi-cyclic adsorption process was also assessed and the adsorption capacity of KOH and CO2 activated carbons remained remarkably stable after 50 cycles with low temperature (160°C) regeneration.  相似文献   

4.
利用ZnCl_2溶液对褐煤进行浸渍后在700℃条件下热解制备改性半焦,采用N2吸附/脱附、傅里叶变换红外光谱、X射线光电子能谱等手段对ZnCl_2处理前后两种半焦表面物化性质进行了表征,在小型固定床反应器上研究了ZnCl_2溶液浸渍处理前后褐煤半焦对气态单质汞(Hg~0)的脱除性能.结果表明,经过ZnCl_2处理得到的半焦(ZSC)具有发达的孔隙结构,其表面含氧官能团含量和数量有所提高,并出现了新的C-Cl基团;在100~360℃温度范围内,制备的改性半焦ZSC的脱汞效率随温度升高而降低,但在中高温条件下仍表现出良好的脱汞性能;在化学吸附过程中,气态Hg0被C-Cl基团氧化为HgCl或HgCl_2,同时Hg~0与半焦表面含氧官能团结合生成HgO,Hg~0最终以HgCl_2或HgO的形式附着在半焦表面.  相似文献   

5.
杨欢  杨森  申展  戴文俊 《装备环境工程》2023,20(10):139-146
目的 以不同浓度的双氧水溶液对活性炭纤维进行氧化改性,制备SO2、NOx腐蚀气氛吸附材料。方法采用红外光谱、X射线衍射仪、X射线光电子能谱仪等表征方式,揭示双氧水改性对活性炭纤维孔隙结构、表面物理化学性质、吸附性能的影响,并将装有吸附材料的防护包装贮存于湿热海洋气候环境中,验证腐蚀气氛控制效果。结果 双氧水改性活性炭纤维后,其表面官能团未发生变化,比表面积先减小、后增大。改性后,活性炭纤维表面活性位点有所增加,对应的吸附性能显著增加,30%双氧水改性活性炭纤维对SO2、NO2、NO的饱和吸附量分别为100、153、128 mg/g,与改性前相比,分别提高了67%、180%、137%。应用吸附材料的防护包装内部腐蚀气氛浓度在3个月内几乎为0。结论 双氧水改性活性炭纤维具有良好的腐蚀气氛吸附性能,在长贮微环境中具有良好应用前景。  相似文献   

6.
研究了活性炭在酸(HNO3,H2SO4,HCI)和碱(NaOH,氨水)处理后对苯酚吸附性能的影响,测定了活性炭的亚甲基蓝值、碘值扣表面官能团等基本物理化学参数。研究发现:碱改性使活性炭上酸性官能团数量减少。碱性官能团增加,增强了活性炭对苯酚类疏水性物质的吸附客量。NaOH、氨水改性活性炭对苯酚的吸附值比未改性活性炭分别提高了56,70%和47.40%。  相似文献   

7.
以锯末为原材料,采用磷酸水热预处理后活化的工艺制备高介孔率活性炭,以比表面积和孔容为评价标准,通过单因素实验探究了酸料比、活化温度、活化时间对活性炭比表面积及总孔容的影响规律,验证了该工艺的可行性.最优条件下所制备的活性炭比表面积为2579 m~2·g~(-1),介孔率达到96.6%,充分说明磷酸水热预处理工艺能够显著提高活性炭介孔孔容占比.亚甲基蓝(MB)吸附实验数据与Redlich-Peterson模型拟合度较好,样本活性炭对MB的吸附为单分子层吸附,最大单层吸附量为618.35 mg·g~(-1),接近于实验测试值632.79 mg·g~(-1),表明该方法制备的活性炭具有良好的MB吸附性能.  相似文献   

8.
为探讨葡萄树基活性炭在碳捕集与封存领域中的潜力,分别以葡萄树枝和树皮为原料采用CO2活化法在800℃下制备了葡萄树枝基活性炭和葡萄树皮基活性炭,根据N2物理吸附法计算了比表面积,用二维非定域密度函数理论(2D-NLDFT)分析了孔径分布特性,并使用热重分析法表征了两种活性炭的热解特性以及30℃的CO2吸附特性.结果表明:①葡萄树枝基活性炭具有微孔结构,微孔孔径在0.36~1.6 nm之间,孔径为0.66 nm的微孔最多;葡萄树皮基活性炭具有大量微孔和少量中孔,孔径主要集中在0.36~1.9 nm之间.②葡萄树枝基和葡萄树皮基活性炭的CO2吸附容量分别为1.096和0.247 mmol/g.③两种活性炭的CO2吸附以物理吸附为主,其CO2饱和产物在45℃前释放全部CO2,葡萄树枝基活性炭的CO2饱和产物较葡萄树皮基活性炭的CO2饱和产物难于释放CO2.④两种活性炭吸附CO2后,在热重特性上出现的微量变化表明活性炭物质结构上的变化.研究显示,葡萄树枝基活性炭是一种良好的CO2捕集材料,但其CO2吸附容量比其他同类活性炭低,CO2吸附量较高的葡萄树基活性炭的制备条件和改性方法需要进一步研究.   相似文献   

9.
活性焦脱硫脱硝的机理研究   总被引:1,自引:0,他引:1  
采用质谱仪在线检测的方法,研究了不同组成的模拟烟气在活性焦上的吸附行为;并应用SEM、FT-IR、XPS、BET等手段表征了活性焦的结构性质。结果表明,活性焦脱硫脱硝性能与活性焦的孔隙结构和表面化学特性密切相关,孔容是决定污染物初期脱除率的主要因素;表面官能团则在污染物的化学吸附上发挥着重要作用,是吸附、催化的活化中心;二氧化硫较一氧化氮优先吸附在活性焦上;烟气中氧气或水蒸汽的单独存在对脱硫脱硝均不会有明显的影响,当烟气中同时存在氧气和水蒸汽时,活性焦的脱硫脱硝效果可明显改善;氨的存在既可将一氧化氮还原为氮气,又能增强活性焦脱除二氧化硫的效果。  相似文献   

10.
城市污水处理厂污泥对水中硫化物的吸附特性   总被引:1,自引:0,他引:1       下载免费PDF全文
为研究城市污水厂污泥对水中硫化物的吸附特性,从3座城市污水处理厂采集回流污泥,考察了硫化物浓度、温度、pH值和其他离子对污泥吸附硫化物的影响.结果表明,污水厂回流污泥对硫化物的吸附等温线可以用Langmuir方程很好地描述,其最大硫化物吸附量为15~27mg/g-干污泥.在温度为5~35℃条件下,吸附量随温度上升而增加,表明该吸附为吸热过程.pH值在2~7范围内,pH值对污泥吸附硫化物的影响不大,当pH值低于2时,污泥对硫化物的吸附量随pH降低显著减小.硫化物可能以离子形式被污泥吸附,该过程为化学吸附过程.水中存在0~25mg/L Cl-或0~12mg/L SO2- 4不影响污泥对硫化物的吸附量.  相似文献   

11.
高分子固体废物基活性炭对有机染料的吸附解吸行为研究   总被引:7,自引:4,他引:3  
分别以3种高分子固体废物,即轮胎橡胶、聚氯乙烯(PVC)和聚对苯二甲酸乙二酯(PET)为原料,利用KOH活化法制备高比表面积活性炭.通过吸附实验研究了活性炭对2种有机染料(亚甲基蓝和甲基橙)的吸附、解吸行为,同时探讨了溶液pH值、离子强度和表面活性剂对吸附的影响.结果表明,PVC和PET基活性炭比表面积分别为2 666和2 831 m2.g-1,中孔容积分别为1.06和1.30 cm3.g-1,15 min内对亚甲基蓝和甲基橙的去除率分别高达98.5%和97.0%、99.5%和95.0%,且Langmuir模型拟合的染料最大吸附量均超过2 mmol.g-1,显著高于商业活性炭F400.Langmuir模型比Freundlich模型能更好地描述2种染料的吸附行为,说明吸附以表面单层覆盖为主.溶液pH值、离子强度和表面活性剂对染料吸附均有较大影响.制备的高分子基活性炭对亚甲基蓝的吸附强于甲基橙,2种染料均不容易发生解吸.实验结果可为高分子固体废物的资源化利用、制备经济高效的碳质吸附材料提供科学依据.  相似文献   

12.
为减少燃煤烟气中零价汞的排放,利用HCl和HNO3溶液对褐煤半焦改性研制了一种高效、低成本的吸附剂.运用酸碱滴定、Boehm滴定、BET、SEM和FTIR等技术对半焦吸附剂的表面特性进行表征与分析,利用固定床吸附实验装置及烟气测汞仪在线考察了半焦吸附剂对气态Hg0的吸附特性.结果表明,酸改性使半焦灰分含量降低,增加了半焦比表面积和羧基、酚羟基等官能团含量.酸改性处理可提高半焦对元素态单质汞的脱除效率,特别是盐酸溶液改性褐煤半焦可使吸附温度为140℃时的脱汞效率显著提高,这与改性半焦表面羧基、酚羟基和C-Cl官能团的含量及性质有关,半焦表面这些官能团能为Hg0的化学吸附提供活性位.  相似文献   

13.
表面憎水性活性炭的制造和表征   总被引:1,自引:0,他引:1  
活性炭是一种应用广泛的吸附催化剂,具有发达的空隙结构和巨大的比表面积,在环境污染处理,尤其是去除废水中有机污染物等方面,具有广泛的应用。但是,通常在活性炭的活化过程中,活性炭表面产生一些亲水性的基团,使其吸附废水中有机污染物量减少。文章通过活性炭表面改性,赋予活性炭表面一个合适的憎水性,从而增强其在废水中吸附有机污染物的能力。  相似文献   

14.
水中高氯酸根的颗粒活性炭吸附过程及影响因素分析   总被引:5,自引:1,他引:4  
卢宁  高乃云  黄鑫 《环境科学》2008,29(6):1572-1577
通过批量实验研究了颗粒活性炭(GAC)对水中高氯酸根(ClO-4)的吸附特性,考察了pH、ClO-4初始浓度和共存阴离子对吸附作用的影响,并分析了吸附动力学和等温吸附模型.结果表明, GAC对ClO-4的吸附容量在碱性条件下减小,随初始浓度升高而增大,共存阴离子与ClO-4在GAC上存在竞争吸附,其影响顺序为SO2-4 > NO-3 > CO2-3 > H2PO-4 > BrO-3≈Cl-. ClO-4在GAC上的吸附最符合准二级动力学模型,吸附中存在大孔扩散过程,且孔扩散可能为GAC吸附ClO-4的主要速率控制步骤.试验浓度范围内吸附过程符合Langmuir、Freundlich和Tempkin 3种等温吸附模型,吸附过程是自发且放热的,温度升高不利于GAC对ClO-4的吸附,温度为288、298和308K时的饱和吸附容量分别为13.00、11.21和8.04 mg'g-1.说明GAC虽较易吸附水中ClO-4,但必须控制反应条件,如温度、pH和共存阴离子浓度等,以取得最佳吸附效果.  相似文献   

15.
The study was attempted to produce activated carbons from palm oil mill effluent (POME) sludge. The adsorption capacity of the activated carbons produced was evaluated in aqueous solution of phenol. Two types of activation were followed, namely, thermal activation at 300, 500 and 800%, and physical activation at 150% (boiling treatment). A control (raw POME sludge) was used to compare the adsorption capacity of the activated carbons produced. The results indicated that the activation temperature of 800℃ showed maximum absorption capacity by the activated carbon (POME 800) in aqueous solution of phenol. Batch adsorption studies showed an equilibrium time of 6 h for the activated carbon of POME 800. It was observed that the adsorption capacity was higher at lower values ofpH (2--3) and higher value of initial concentration of phenol (200--300 mg/L), The equilibrium data were fitted by the Langmuir and Freundlich adsorption isotherms. The adsorption of phenol onto the activated carbon POME 800 was studied in terms of pseudo-first and second order kinetics to predict the rate constant and equilibrium capacity with the effect of initial phenol concentrations. The rate of adsorption was found to be better correlation for the pseudo-second order kinetics compared to the first order kinetics.  相似文献   

16.
Adsorption of the hydrophobic organic compounds (HOCs) trichloroethylene (TCE), 1,3-dichlorobenzene (DCB), 1,3-dinitrobenzene (DNB) and γ-hexachlorocyclohexane (HCH) on five different carbonaceous materials was compared. The adsorbents included three polymer-based activated carbons, one coal-based activated carbon (F400) and multiwalled carbon nanotubes (MWNT). The polymerbased activated carbons were prepared using KOH activation from waste polymers: polyvinyl chloride (PVC), polyethyleneterephthalate (PET) and tire rubber (TR). Compared with F400 and MWNT, activated carbons derived from PVC and PET exhibited fast adsorption kinetics and high adsorption capacity toward the HOCs, attributed to their extremely large hydrophobic surface area (2700 m2/g) and highly mesoporous structures. Adsorption of small-sized TCE was stronger on the tire-rubber-based carbon and F400 resulting from the pore-filling effect. In contrast, due to the molecular sieving effect, their adsorption on HCH was lower. MWNT exhibited the lowest adsorption capacity toward HOCs because of its low surface area and characteristic of aggregating in aqueous solution.  相似文献   

17.
Activated carbon foam was successfully prepared from phenolic resin synthesized with phenol and formaldehyde under alkali condition. The influence of process variables, such as steam rate, carbonization temperature, carbonization time, activation temperature and activation time on the adsorption capacities of the activated carbon foam was studied. Under the optimum experimental conditions, the activated carbon foam with a specific surface area 727.62 m2/g was obtained. Moreover, the iodine value and carbon tetrachloride value of the activated carbon foam was 1050.28 mg/g and 401.37 mg/g, respectively. The pore size of the activated carbon foam was in the range of 3.5–5 nm which was determined through the N2 adsorption test. In addition, the yield of the activated carbon foam was 36.24%. The result of scanning electron microscopy (SEM) showed that the activated carbon foam became honeycomb structure, and its pore wall was thinner and smoother compared to the unactivated carbon foam.  相似文献   

18.
微波改性活性炭脱硫性能的初步研究   总被引:5,自引:0,他引:5  
在此提出了一种利用微波等离子技术对活性炭进行改性以提高活性炭的SO2 吸附性能的新方法。通过正交实验法 ,探讨了微波功率、辐照时间及样品粒径 3种因素对改性后的活性炭脱硫效果的影响。结果表明 ,微波改性后的活性炭大大提高了对SO2 的吸附能力 ,最高硫吸附量可达 10 9 4mg g ,微波功率和样品粒径是决定改性活性炭硫容量的关键因素 ,并通过元素分析和扫描电镜等手段对其机理进行了讨论  相似文献   

19.
Phosphate removal from aqueous waste streams is an important approach to control the eutrophication downstream bodies of water. A Fe(III) coordinated amino-functionalized silicate adsorbent for phosphate adsorption was synthesized by a post-grafting and metal cation incorporation process. The surface structure of the adsorbent was characterized by X-ray di raction, N2 adsoropion/desoprotion technique, and Fourier transform infrared spectroscopy. The experimental results showed that the adsorption equilibrium data were well fitted to the Langmuir equation. The maximum adsorption capacity of the modified silicate material was 51.8 mg/g. The kinetic data from the adsorption of phosphate were fitted to pseudo second-order model. The phosphate adsorption was highly pH dependent and the relatively high removal of phosphate fell within the pH range 3.0–6.0. The coexistence of other anions in solutions has an adverse e ect on phosphate adsorption; a decrease in adsorption capacity followed the order of exogenous anions: F?? > SO2?? 4 > NO??3 > Cl??. In addition, the adsorbed phosphate could be desorbed by NaOH solutions. This silicate adsorbent with a large adsorption capacity and relatively high selectivity could be utilized for the removal of phosphate from aqueous waste streams or in aquatic environment.  相似文献   

20.
Activated carbon was prepared from cattail by H3PO4 activation. The effects influencing the surface area of the resulting activated carbon followed the sequence of activated temperature activated time impregnation ratio impregnation time. The optimum condition was found at an impregnation ratio of 2.5, an impregnation time of 9 hr, an activated temperature of 500°C, and an activated time of 80 min. The Brunauer-Emmett-Teller surface area and average pore size of the activated carbon were 1279 m2/g and 5.585 nm, respectively. A heterogeneous structure in terms of both size and shape was highly developed and widely distributed on the carbon surface. Some groups containing oxygen and phosphorus were formed, and the carboxyl group was the major oxygen-containing functional group. An isotherm equilibrium study was carried out to investigate the adsorption capacity of the activated carbon. The data fit the Langmuir isotherm equation, with maximum monolayer adsorption capacities of 192.30 mg/g for Neutral Red and 196.08 mg/g for Malachite Green. Dye-exhausted carbon could be regenerated effectively by thermal treatment. The results indicated that cattail-derived activated carbon was a promising adsorbent for the removal of cationic dyes from aqueous solutions.  相似文献   

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